A separator for a high energy rechargeable lithium battery and a high energy rechargeable lithium battery are disclosed herein.
A high energy rechargeable lithium battery has an anode with an energy capacity of at least 372 milliampere-hours/gram (mAh/g). Such anodes include, for example, lithium metal, lithium alloys (e.g. lithium aluminum), and mixtures of lithium metal or lithium alloys and materials such as carbon, nickel, and copper. Such anodes exclude anodes solely with lithium intercalation or lithium insertion compounds.
The commercial success of lithium metal or lithium alloy batteries has eluded all but primary cells due to persistent safety problems.
The difficulties associated with the use of the foregoing anodes stem mainly from lithium dendrite growth that occurs after repetitive charge-discharge cycling. (While dendrite growth is a potential problem with any lithium battery, the severity of the problem with the above-mentioned high energy anodes is much greater than with other lithium anodes (e.g. pure carbon intercalation anodes) as is well known in the art.) When lithium dendrites grow and penetrate the separator, an internal short circuit of the battery occurs (any direct contact between anode and cathode is referred to as “electronic” shorting, and contact made by dendrites is a type of electronic shorting). Some shorting (i.e., a soft short), caused by very small dendrites, may only reduce the cycling efficiency of the battery. Other shorting may result in thermal runaway of the lithium battery, a serious safety problem for lithium rechargeable battery.
The failure to control the dendrite growth from such anodes remains a problem, limiting the commercialization of cells with those anodes, particularly those cells with liquid organic electrolytes.
Accordingly, there is a need to improve high energy rechargeable lithium batteries.
The instant invention is directed to a separator for a high energy rechargeable lithium battery and the corresponding battery. The separator includes at least one ceramic composite layer and at least one polymeric microporous layer. The ceramic composite layer includes a mixture of inorganic particles and a matrix material. The ceramic composite layer is adapted, at least, to block dendrite growth and to prevent electronic shorting. The polymeric layer is adapted, at least, to block ionic flow between the anode and the cathode in the event of thermal runaway.
For the purpose of illustrating the invention, there is shown in the drawings a form which is presently preferred; it being understood, however, that this invention is not limited to the precise arrangements and instrumentalities shown.
Referring to the figures, wherein like numerals indicate like elements, there is shown in
The anode 12 should have an energy capacity greater than or equal to 372 mAh/g, preferably ≥700 mAh/g, and most preferably ≥1000 mAH/g. Anode 12 may be constructed from a lithium metal foil or a lithium alloy foil (e.g. lithium aluminum alloys), or a mixture of a lithium metal and/or lithium alloy and materials such as carbon (e.g. coke, graphite), nickel, copper. The anode 12 is not made solely from intercalation compounds containing lithium or insertion compounds containing lithium.
The cathode 14 may be any cathode compatible with the anode and may include an intercalation compound, an insertion compound, or an electrochemically active polymer. Suitable intercalation materials includes, for example, MoS2, FeS2, MnO2, TiS2, NbSe3, LiCoO2, LiNiO2, LiMn2O4, V6O13, V2O5, and CuCl2. Suitable polymers include, for example, polyacetylene, polypyrrole, polyaniline, and polythiopene.
The electrolyte may be liquid or gel (or polymer). Typically, the electrolyte primarily consists of a salt and a medium (e.g. in a liquid electrolyte, the medium may be referred to as a solvent; in a gel electrolyte, the medium may be a polymer matrix). The salt may be a lithium salt. The lithium salt may include, for example, LiPF6, LiAsF6, LiCF3SO3, LiN(CF3SO3)3, LiBF6, and LiClO4, BETTE electrolyte (commercially available from 3M Corp. of Minneapolis, MN) and combinations thereof. Solvents may include, for example, ethylene carbonate (EC), propylene carbonate (PC), EC/PC, 2-MeTHF(2-methyltetrahydrofuran)/EC/PC, EC/DMC (dimethyl carbonate), EC/DME (dimethyl ethane), EC/DEC (diethyl carbonate), EC/EMC (ethylmethyl carbonate), EC/EMC/DMC/DEC, EC/EMC/DMC/DEC/PE, PC/DME, and DME/PC. Polymer matrices may include, for example, PVDF (polyvinylidene fluoride), PVDF:THF (PVDF:tetrahydrofuran), PVDF:CTFE (PVDF: chlorotrifluoro ethylene) PAN (polyacrylonitrile), and PEO (polyethylene oxide).
Referring to
Ceramic composite layer 22 comprises a matrix material 26 having inorganic particles 28 dispersed therethrough. Ceramic composite layer 22 is nonporous (it being understood that some pores are likely to be formed once in contact with an electrolyte, but ion conductivity of layer 22 is primarily dependent upon choice of the matrix material 26 and particles 28). The matrix material 26 of layer 22 differs from the foregoing polymer matrix (i.e., that discussed above in regard to the medium of the electrolyte) in, at least, function. Namely, matrix material 26 is that component of a separator which, in part, prevents electronic shorting by preventing dendrite growth; whereas, the polymer matrix is limited to the medium that carries the dissociated salt by which current is conducted within the cell. The matrix material 26 may, in addition, also perform the same function as the foregoing polymer matrix (e.g. carry the electrolyte salt). The matrix material 26 comprises about 5-80% by weight of the ceramic composite layer 22, and the inorganic particles 28 form approximately 20-95% by weight of the layer 22. Preferably, composite layer 22 contains inorganic particles 30%-75% by weight. Most preferably, composite layer 22 contains inorganic particles 40%-60% by weight.
The matrix material 26 may be ionically conductive or non-conductive, so any gel forming polymer suggested for use in lithium polymer batteries or in solid electrolyte batteries may be used. The matrix material 26 may be selected from, for example, polyethylene oxide (PEO), polyvinylidene fluoride (PVDF), polytetrafluoroethylene (PTFE), polyurethane, polyacrylonitrile (PAN), polymethylmethacrylate (PMMA), polytetraethylene glycol diacrylate, copolymers thereof, and mixtures thereof. The preferred matrix material is PVDF and/or PEO and their copolymers. The PVDF copolymers include PVDF:HFP (polyvinylidene fluoride:hexafluoropropylene) and PVDF:CTFE (polyvinylidene fluoride:chlorotrifluoroethylene). Most preferred matrix materials include PVDF:CTFE with less than 23% by weight CTFE, PVDH:HFP with less than 28% by weight HFP, any type of PEO, and mixtures thereof.
The inorganic particles 28 are normally considered nonconductive, however, these particles, when in contact with the electrolyte, appear, the inventor, however, does not wish to be bound hereto, to develop a superconductive surface which improves the conductivity (reduces resistance) of the separator 16. The inorganic particles 28 may be selected from, for example, silicon dioxide (SiO2), aluminum oxide (Al2O3), calcium carbonate (CaCO3), titanium dioxide (TiO2), SiS2, SiPO4 and the like, or mixtures thereof. The preferred inorganic particle is SiO2, Al2O3, and CaCO3. The particles may have an average particle size in the range of 0.001 micron to 25 microns, most preferably in the range of 0.01 micron to 2 microns.
The microporous polymeric layer 24 consists of any commercially available microporous membranes (e.g. single ply or multi-ply), for example, those products produced by Celgard Inc. of Charlotte, North Carolina, Asahi Chemical of Tokyo, Japan, and Tonen of Tokyo, Japan. The layer 24 has a porosity in the range of 20-80%, preferably in the range of 28-60%. The layer 24 has an average pore size in the range of 0.02 to 2 microns, preferably in the range of 0.08 to 0.5 micron. The layer 24 has a Gurley Number in the range of 15 to 150 sec, preferably 30 to 80 sec. (Gurley Number refers to the time it takes for 10 cc of air at 12.2 inches of water to pass through one square inch of membrane.) The layer 24 is preferably polyolefinic. Preferred polyolefins include polyethylene and polypropylene. Polyethylene is most preferred.
The foregoing separator, while primarily designed for use in high energy rechargeable lithium batteries, may be used in other battery systems in which dendrite growth may be a problem.
The foregoing shall be further illustrated with regard to the following non-limiting examples.
Sixty (60) parts of fine particle calcium carbonate, 40 parts of PVDF:HFP (Kynar 2801), are dissolved in 100 parts of acetone at 35° C. for 3 hours under high shear mixing. The solution is cast into a 15 micron film. After vaporization of the actone at room temperature, the composite film was thermally laminated with 2 layers (8 microns) of Celgard 2801 membrane. The resulting composite shutdown separator has a structure of PE/composite/PE and a thickness of 30 microns.
Thirty (30) parts of silicon dioxide, 30 parts of calcium carbonate, 40 parts of PVDF:HFP (Kynar 2801) are dissolved in 100 parts of acetone at 35° C. for 3 hours under high shear mixing. This solution was cast or coated onto a 23 micron layer of a polyethylene microporous layer made by Celgard Inc. After vaporization of the acetone at room temperature, the polyethylene/composite membrane had a thickness of 38 microns.
The present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof and, accordingly, reference should be made to the appended claims, rather than to the foregoing specification, as indicating the scope of the invention.
Number | Name | Date | Kind |
---|---|---|---|
1673421 | Petrie et al. | Jun 1928 | A |
3228877 | Mahon | Jan 1966 | A |
3287112 | Emil | Nov 1966 | A |
3426754 | Bierenbaum et al. | Feb 1969 | A |
3542596 | Arrance | Nov 1970 | A |
3679538 | Druin et al. | Jul 1972 | A |
3679540 | Zimmerman et al. | Jul 1972 | A |
3694268 | Bergum | Sep 1972 | A |
3703417 | Rosa et al. | Nov 1972 | A |
3709774 | Kimura | Jan 1973 | A |
3749604 | Langer et al. | Jul 1973 | A |
3755034 | Mahon et al. | Aug 1973 | A |
3801404 | Druin et al. | Apr 1974 | A |
3801692 | Zimmerman | Apr 1974 | A |
3843761 | Hay | Oct 1974 | A |
3853601 | Taskier | Dec 1974 | A |
3861963 | Afrance et al. | Jan 1975 | A |
3870593 | Elton et al. | Mar 1975 | A |
3880672 | Megahed et al. | Apr 1975 | A |
4086401 | Sundberg et al. | Apr 1978 | A |
4138459 | Brazinsky et al. | Feb 1979 | A |
4220535 | Leonard | Sep 1980 | A |
4309494 | Stockel | Jan 1982 | A |
4350655 | Hoge | Sep 1982 | A |
4421529 | Revak et al. | Dec 1983 | A |
4464238 | Caldwell et al. | Aug 1984 | A |
4483694 | Takamura et al. | Nov 1984 | A |
4539256 | Shipman | Sep 1985 | A |
4588633 | Kona et al. | May 1986 | A |
4600633 | Kono et al. | Jul 1986 | A |
4620955 | Kono et al. | Nov 1986 | A |
4650680 | Brenner et al. | Mar 1987 | A |
4650730 | Lundquist et al. | Mar 1987 | A |
4664681 | Anazawa et al. | May 1987 | A |
4698372 | Moss | Oct 1987 | A |
4707267 | Johnson | Nov 1987 | A |
4726989 | Mrozinski | Feb 1988 | A |
4731304 | Lundquist et al. | Mar 1988 | A |
4752305 | Johnson | Jun 1988 | A |
4777073 | Sheth | Oct 1988 | A |
4849144 | Mcloughlin | Jul 1989 | A |
4853101 | Hruska et al. | Aug 1989 | A |
4911985 | Jenkins et al. | Mar 1990 | A |
4923650 | Antoon et al. | May 1990 | A |
4940617 | Baurmeister | Jul 1990 | A |
4975469 | Jacoby et al. | Dec 1990 | A |
4994335 | Kamaei et al. | Feb 1991 | A |
5011751 | Yoneyama et al. | Apr 1991 | A |
5071686 | Genske et al. | Dec 1991 | A |
5091272 | Treger | Feb 1992 | A |
5130342 | McAllister et al. | Jul 1992 | A |
5154988 | Choi et al. | Oct 1992 | A |
5176968 | Blasi et al. | Jan 1993 | A |
5240655 | Troffkin et al. | Aug 1993 | A |
5256351 | Lustig et al. | Oct 1993 | A |
5264171 | Prasad et al. | Nov 1993 | A |
5266391 | Donato et al. | Nov 1993 | A |
5270137 | Kubota | Dec 1993 | A |
5281491 | Rein et al. | Jan 1994 | A |
5284584 | Huang et al. | Feb 1994 | A |
5336573 | Zuckerbrod et al. | Aug 1994 | A |
5427872 | Shen et al. | Jun 1995 | A |
5449457 | Prasad | Sep 1995 | A |
5460896 | Takada et al. | Oct 1995 | A |
5480745 | Nishiyama et al. | Jan 1996 | A |
5514461 | Meguro et al. | May 1996 | A |
5529707 | Kejha | Jun 1996 | A |
5565281 | Yu et al. | Oct 1996 | A |
5620807 | Mussell et al. | Apr 1997 | A |
5631103 | Eschbach et al. | May 1997 | A |
5635262 | Best et al. | Jun 1997 | A |
5654114 | Kubota et al. | Aug 1997 | A |
5667911 | Yu et al. | Sep 1997 | A |
5681357 | Eschbach et al. | Oct 1997 | A |
5691047 | Kurauchi et al. | Nov 1997 | A |
5691077 | Yu | Nov 1997 | A |
5705084 | Kejha | Jan 1998 | A |
5731074 | Nishiyama et al. | Mar 1998 | A |
5741608 | Kojima et al. | Apr 1998 | A |
5776637 | Kashio et al. | Jul 1998 | A |
5824430 | Higuchi et al. | Oct 1998 | A |
5824434 | Kawakami et al. | Oct 1998 | A |
5849433 | Venugopal et al. | Dec 1998 | A |
5853916 | Venugopal et al. | Dec 1998 | A |
5910225 | Mcamish et al. | Jun 1999 | A |
5922492 | Takita et al. | Jul 1999 | A |
5938874 | Palomo et al. | Aug 1999 | A |
5952120 | Yu et al. | Sep 1999 | A |
5981107 | Hamano et al. | Nov 1999 | A |
6057060 | Yu | May 2000 | A |
6057061 | Callahan et al. | May 2000 | A |
6080507 | Yu | Jun 2000 | A |
6096101 | Liu et al. | Aug 2000 | A |
6096213 | Radovanovic et al. | Aug 2000 | A |
6132654 | Yu | Oct 2000 | A |
6168648 | Ootani et al. | Jan 2001 | B1 |
6180280 | Spotnitz | Jan 2001 | B1 |
6200703 | Kashio et al. | Mar 2001 | B1 |
6235430 | Hoshina et al. | May 2001 | B1 |
6242135 | Mushiake | Jun 2001 | B1 |
6248476 | Sun et al. | Jun 2001 | B1 |
6251540 | Kejha | Jun 2001 | B1 |
6287720 | Yamashita et al. | Sep 2001 | B1 |
6299778 | Penth et al. | Oct 2001 | B1 |
6309545 | Penth et al. | Oct 2001 | B1 |
6346350 | Call et al. | Feb 2002 | B1 |
6348286 | Tanaka et al. | Feb 2002 | B1 |
6368742 | Fisher et al. | Apr 2002 | B2 |
6383386 | Hying et al. | May 2002 | B1 |
6420070 | Kasamatsu et al. | Jul 2002 | B1 |
6423445 | Kato et al. | Jul 2002 | B1 |
6447958 | Shinohara et al. | Sep 2002 | B1 |
6475666 | Takeuchi | Nov 2002 | B1 |
6506524 | Mcmillan et al. | Jan 2003 | B1 |
6509118 | Pavlov et al. | Jan 2003 | B1 |
6511774 | Tsukuda et al. | Jan 2003 | B1 |
6537334 | Dupasquier et al. | Mar 2003 | B1 |
6602593 | Callahan et al. | Aug 2003 | B1 |
6620320 | Hying et al. | Sep 2003 | B1 |
6627346 | Kinouchi et al. | Sep 2003 | B1 |
6632561 | Bauer et al. | Oct 2003 | B1 |
6664007 | Hamano et al. | Dec 2003 | B2 |
6679925 | Tanizaki et al. | Jan 2004 | B1 |
6713217 | Oura et al. | Mar 2004 | B2 |
6749961 | Nguyen et al. | Jun 2004 | B1 |
7112389 | Arora et al. | Sep 2006 | B1 |
7323274 | Samii et al. | Jan 2008 | B1 |
20010000485 | Ying et al. | Apr 2001 | A1 |
20010008734 | Dupasquier et al. | Jul 2001 | A1 |
20010021421 | Witham et al. | Sep 2001 | A1 |
20020102455 | Daroux | Aug 2002 | A1 |
20020110732 | Coustier et al. | Aug 2002 | A1 |
20020136945 | Call et al. | Sep 2002 | A1 |
20020166802 | Jung et al. | Nov 2002 | A1 |
Number | Date | Country |
---|---|---|
19914272 | Oct 1999 | DE |
2001325951 | Nov 2001 | DE |
259128 | Mar 1988 | EP |
262179 | Apr 1988 | EP |
352802 | Jan 1990 | EP |
259128 | Jan 1992 | EP |
0651455 | May 1995 | EP |
0730316 | Sep 1996 | EP |
872900 | Oct 1998 | EP |
951080 | Oct 1999 | EP |
19914272 | Oct 1999 | EP |
1416552 | May 2004 | EP |
1544807 | Nov 1968 | FR |
2005289 | Apr 1979 | GB |
298817 | Sep 1996 | GB |
08-287897 | Nov 1986 | JP |
02020531 | Jan 1990 | JP |
282457 | Mar 1990 | JP |
05-190208 | Jul 1993 | JP |
05211059 | Aug 1993 | JP |
06163023 | Jun 1994 | JP |
06196199 | Jul 1994 | JP |
06-325747 | Nov 1994 | JP |
07053748 | Feb 1995 | JP |
7173323 | Jul 1995 | JP |
07220759 | Aug 1995 | JP |
7220761 | Aug 1995 | JP |
08138644 | May 1996 | JP |
08250097 | Sep 1996 | JP |
8250127 | Sep 1996 | JP |
08323910 | Dec 1996 | JP |
09082312 | Mar 1997 | JP |
2642206 | Aug 1997 | JP |
09255808 | Sep 1997 | JP |
09283117 | Oct 1997 | JP |
09-289040 | Nov 1997 | JP |
09-306543 | Nov 1997 | JP |
09293518 | Nov 1997 | JP |
10006453 | Jan 1998 | JP |
10007831 | Jan 1998 | JP |
10017694 | Jan 1998 | JP |
10-261437 | Aug 1998 | JP |
10-284039 | Oct 1998 | JP |
11003709 | Jan 1999 | JP |
11-060790 | Mar 1999 | JP |
11-67273 | Mar 1999 | JP |
11-080395 | Mar 1999 | JP |
11-086628 | Mar 1999 | JP |
11102686 | Apr 1999 | JP |
11-213982 | May 1999 | JP |
11250937 | Sep 1999 | JP |
11-283674 | Oct 1999 | JP |
11273726 | Oct 1999 | JP |
11-329395 | Nov 1999 | JP |
2000030686 | Jan 2000 | JP |
2002240215 | Aug 2002 | JP |
2002334689 | Nov 2002 | JP |
200439649 | Feb 2004 | JP |
2004156975 | Jun 2004 | JP |
2004288614 | Oct 2004 | JP |
100745586 | Jul 2007 | KR |
460505 | Oct 2001 | TW |
9420995 | Sep 1994 | WO |
9720885 | Jun 1997 | WO |
9859387 | Dec 1998 | WO |
WO 9859387 | Dec 1998 | WO |
9916138 | Apr 1999 | WO |
9933125 | Jul 1999 | WO |
9944245 | Sep 1999 | WO |
Entry |
---|
Abraham, Directions in Secondary Lithium Battery research and Development, 1993, Electrochimica Acta, vol. 38, 16 Pages. |
Abraham, et al., Characterization of Ether Electrolytes for Rechargeable Lithium Cells, 1982, Journal of the Electrochemical Society, vol. 129, 6 Pages. |
Abraham, et al., Inorganic-Organic Composite Solid Polymer Electrolytes, 2000, Journal of the Electrochemical Society, vol. 147, 6 pages. |
Abraham, et al., Polymer Electrolytes Reinforced by Celgard Membranes, Mar. 3, 1995, J. Electrochem. Soc., vol. 142, 5 Pages. |
Abraham, et al., Rechargeability of the Ambient Temperature Cell Li/2Me-THF, LiAsF6/Cr0.5V0.5S2, 1983, Journal of the Electrochemical Society, vol. 130, 6 pages. |
Claim Chart comparing Claims 1 and 3-6 of the '586 patent to the Disclosure of Kojima, Submitted by Sumitomo in IPR 2013-00637, 2 Pages. |
Claim Chart comparing Claims 1-3, 5-6 and 11 of the '586 patent to the Disclosure of Shinohara, Submitted by Sumitomo in IPR 2013-00637, 2 Pages. |
Claim Chart comparing Claims 1-6 and 11 of the '586 patent to the Disclosure of JP '395, Submitted by Sumitomo in IPR 2013-00637, 3 Pages. |
Claim Chart comparing Claims 1-6 and 11 of the '586 patent to the Disclosure of Lundquist, Submitted by Sumitomo in IPR 2013-00637, 3 Pages. |
File History for EP Application No. 01106513.3, Submitted by Sumitomo in IPR 2013-00637, 92 Pages. |
Geiger, et al., Advanced Separators for Lithium Batteries, 1994, 13 pages. |
Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by Sumitomo in IPR2013-00637, Sep. 30, 2013, 64 pages. |
Allock, et al., Contemporary Polymer Chemistry, 1981, 5 Pages. |
American National Standards Institute, Inc., American National Standard for Portable Rechargeable Cells and Batteries, 1999, 48 Pages. |
Besenhard, et al., Excerpts from the Handbook of Battery Materials, 14 pages. |
Choe, et al., Characterization of Some Polyacrylonitrile-Based Electrolytes, 1997, Chem. Mater., vol. 9, 11 Pages. |
Patent Owner's Motion for Observation on Cross-Examination of Dr. Abraham, Submitted by Celgard, LLC in IPR2014-00524, Jun. 1, 2015, 6 pages. |
Declaration of C. Glen Wensley, Ph.D. Submitted by Celgard, LLC in IPR2014-00524, 13 Pages. |
Declaration of Kuzhikalail M. Abraham, Ph.D. ISO Petitioner's Reply, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 20 Pages. |
Declaration of Kuzhikalail M. Abraham, Ph.D., Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 55 Pages. |
Declaration of Premanand Ramadass, Submitted by Celgard, LLC in IPR2014-00524, 23 Pages. |
Declaration of Premanand Ramadass, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 26 Pages. |
Declaration of Ralph E. White, Ph.D., P.E. ISO Preliminary Injunction, Submitted by Celgard, LLC in IPR2014-00692, 229 Pages. |
Declaration of Ralph E. White, Ph.D., P.E., Submitted by Celgard, LLC in IPR2014-00524, 70 Pages. |
Declaration of William J. Paulus, Submitted by Celgard, LLC in IPR2014-00524, 10 Pages. |
Dias, et al., Trends in Polymer Electrolytes for Secondary Lithium Batteries, 2000, Journal of Power Sources, vol. 88, 23 Pages. |
Doyle, et al., Modeling of Galvanostatic Charge and Discharge of the Lithium/Polymer /Insertion Cell, 1993, J. Electrochem. Soc., vol. 140, 8 Pages. |
Excerpts from Jan. 29, 2015 Deposition of Kuzhikalail M. Abraham, Ph.D., Submitted by Celgard, LLC in IPR2014-00524, 43 Pages. |
Excerpts from May 20, 2015 Deposition of Kuzhikalail M. Abraham, Ph.D., Submitted by Celgard, LLC in IPR2014-00524, 61 Pages. |
File History for EP 1105613, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 92 Pages. |
File History for JP 2001-110899 (partial trans), Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 24 Pages. |
File History for JP 2001-110899, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 106 Pages. |
File History for KR 10-2001-0017994 (partial trans), Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 18 Pages. |
File History for KR 10-2001-0017994, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 92 Pages. |
File History for KR 10-2008-0119658 (partial trans), Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 14 Pages. |
File History for KR 10-2008-0119658, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 99 Pages. |
File History for KR 10-2010-0025257 (partial trans), Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 6 Pages. |
File History for KR 10-2010-0025257, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, 47 Pages. |
Institution Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00524, Sep. 29, 2014, 27 pages. |
Jiang, et al., Studies of Some Poly (vinylidene fluoride) Electrolytes, 1997, Electrochimica Acta, vol. 42, 11 Pages. |
McGraw-Hill, Encyclopedia of Science, 1997, 8th Edition, 15 pages. |
Motion to Submit Supplemental Evidence, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, Oct. 29, 2014, 6 pages. |
Motion to Submit Supplemental Information, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, Nov. 10, 2014, 15 pages. |
Newman, Excerpts from Electrochemical Systems, 1991, 2nd Edition, 3 pages. |
Opposition to Celgard's Motion for Observation on Cross Examination, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, Jun. 8, 2015, 5 pages. |
Patent Owner's Opposition to Petitioner's Motion to Submit Supplemental Information, Submitted by Celgard, LLC in IPR2014-00524, Nov. 17, 2014, 16 pages. |
Patent Owner's Response, Submitted by Celgard, LLC in IPR2014-00524, Feb. 6, 2015, 39 pages. |
Petitioner's Reply in IPR2014-00692, Submitted by Celgard, LLC in IPR2015-01511, 35 pages. |
Declaration of Kuzhikalail M. Abraham, Ph.D., Submitted by Sumitomo in IPR 2013-00637, 32 Pages. |
Periasamy, et al., Studies on PVdF-Based Gel Polymer Electrolytes, 2000, Journal of Power Sources, vol. 88, 5 pages. |
Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, Mar. 20, 2014, 64 pages. |
Petitioner's Reply in IPR2014-00679, Submitted by Celgard, LLC in IPR2015-01511, 31 pages. |
Petitioner's Reply to Patent Owner Response, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, May 4, 2015, 28 pages. |
Petitioner's Request for Rehearing, Submitted by Mitsubishi Plastics, Inc. in IPR2014-00524, Oct. 14, 2014, 20 pages. |
Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by Ube Maxell Co., Ltd. in IPR2015-01511, Jun. 25, 2015, 70 pages. |
Preliminary Response, Submitted by Celgard, LLC in IPR2014-00524, Jul. 2, 2014, 35 pages. |
Song, et al., Review of Gel-Type Polymer Electrolytes for Lithium-Ion Batteries, 1999, Journal of Power Sources, vol. 77, 15 pages. |
Besenhard, et al., Excerpts from the Handbook of Battery Materials, 1999, 1st Edition, 11 pages. |
Besenhard, et al., Excerpts from the Handbook of Battery Materials, 4 pages, 1999. |
Declaration of C. Glen Wensley, Ph.D. Submitted by Celgard, LLC in IPR2014-00679, 23 Pages. |
Declaration of Craig B. Arnold, Submitted by SK Innovation Co., Ltd. in IPR2014-00679, 64 Pages. |
Crowther, et al., Effect of Electrolyte Composition on Lithium Dendrite Growth, 2008, Journal of the Electrochemical Society, vol. 155, 6 Pages. |
Declaration of Ralph E. White, Ph.D., P.E., Submitted by Celgard, LLC in IPR2014-00679, 88 Pages. |
Merriam-Webster, Membrane and Micropore Definitions, Sep. 23, 2013, http://www.merriam-webster.com/dictionary/membrane, http://www.merriam-webster.com/dictionary/microporous, 6 Pages. |
Declaration of William J. Paulus, Submitted by Celgard, LLC in IPR2014-00679, 10 Pages. |
Excerpts from Apr. 17, 2015 Deposition of Ralph E. White, Ph.D., P.E., Submitted by SK Innovation Co., Ltd. in IPR2014-00679, 189 Pages. |
Excerpts from Jan. 28, 2015 Deposition of Craig B. Arnold, Submitted by Celgard, LLC in IPR2014-00679, 71 Pages. |
Final Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00679, Sep. 25, 2015, 57 pages. |
Institution Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00679, Sep. 29, 2014, 26 pages. |
Lewis, et al., Excerpts from Hawley Condensed Chemical Dictionary, 1997, 13th Edition, 6 pages. |
Linden, et al., Excerpts from the Handbook of Batteries, 1995, 2nd Edition, 11 pages. |
McGraw-Hill, Dictionary of Scientific and Technical Terms, 1994, 5th Edition, 3 Pages. |
Merriam-Webster, Incorporated, Merriam-Webster's Collegiate Dictionary, 2000, 10th Edition, 4 Pages. |
Patent Owner's Preliminary Response, Submitted by Celgard, LLC. in IPR2014-00679, May 9, 2014, 38 pages. |
Yasuda Seiki Seisakusho Ltd., No. 323-Auto Automatic Gurley Type Densometer, Apr. 20, 2004, http:/WMN.yasuda-seiki.eo.jp/e/products/323-AUTO.hlrrl, 1 Page. |
Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by SK Innovation Co., Ltd. in IPR2014-00679, May 9, 2014, 69 pages. |
Tappi, Air resistance of Paper (Gurley Method), Test Method TAPPI/ANSI T 460 om-11, 2014, 1 Page. |
Merriam-Webster, Storage Battery, Aug. 17, 2014, http://www.merriam-mbster.com'dictionary/storage%20battery, 2 Pages. |
Wikipedia, Poly(ethylene glycol) diacrylate, http:/twww.sigmaaldrich.com/catalog/producValdrich/455008?1ang=en®ion=US, Jun. 18, 2015, 3 Pages. |
Wikipedia, Aluminium oxide, https://en.wikipedia.org/wiki/Aiuminium_oxide, Jun. 17, 2015, 9 Pages. |
Ceramtac, Oxide Ceramics—Aluminum Oxide (AI203), https:/lwww.ceramtec.com/ceramic-materials/aluminum-oxide/, 5 Pages. |
Random House Webster's College Dictionary, 2000, 2nd Edition, 4 pages. |
Love, et al., Diagnostic Tools for Lithium-ion Battery State-of-Health Monitoring, U.S. Naval Research Laboratory, Code 6113, Alternative Energy Section, 28 Pages. |
Standard Test Method for Resistance of Nonporous Paper to Passage of Air, 1999, 3 pages. |
Yamaki, et al., A Consideration of the Morphology of Electrochemically Deposited Lithium in an Organic Electrolyte, 2000, Journal of Power Sources, vol. 74, 9 pages. |
Declaration of Craig B. Arnold, Submitted by SK Innovation Co., Ltd. In IPR2014-00680, 77 Pages. |
Love, et al., Thermomechanical analysis and durability of commercial micro-porous polymer Li-ion battery separators, 2011, Journal of Power Sources, vol. 196, 8 pages. |
Chaturvedi, et al., Algorithms for Advanced Battery-Management Systems, Digital Object Identifier, Jun. 2010, IEEE Control Systems Magazine, 21 Pages. |
Brian, Marshall, How Lithium-ion Batteries Work, Jun. 17, 2015, HowStuffWorks, http://electronics.howstuffworks.com/everydaytech/lithiumionbattery.htm, 5 pages. |
Declaration of Ralph E. White, Ph.D., P.E., Submitted by Celgard, LLC in IPR2014-00680, 67 Pages. |
Declaration of William J. Paulus, Submitted by Celgard, LLC in IPR2014-00680, 10 Pages. |
Excerpts from Apr. 17, 2015 Deposition of Ralph E. White, Ph.D., P.E., Submitted by SK Innovation Co., Ltd., in IPR2014-00680, 67 Pages. |
Excerpts from Jan. 28, 2015 Deposition of Craig B. Arnold, Submitted by Celgard, LLC in IPR2014-00680, 114 Pages. |
Final Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00680, Sep. 25, 2015, 33 pages. |
Institution Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00680, Sep. 29, 2014, 25 pages. |
Patent Owner's Preliminary Response, Submitted by Celgard, LLC in IPR2014-00680, Aug. 19, 2014, 38 pages. |
Patent Owner's Response, Submitted by Celgard, LLC in IPR2014-00680, Feb. 6, 2015, 40 pages. |
Love, et al., Observation of Lithium Dendrites at Ambient Temperature and Below, 2015, ECS Electrochemistry Letters, vol. 4, 5 Pages. |
Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by SK Innovation Co., Ltd. in IPR2014-00680, May 9, 2014, 70 pages. |
U.S. Naval Research Laboratory, Mechanical Coupling: Dendrite vs. Separator, APG-CWG Safety Panel Meeting, 3 Pages. |
Battery University, Is Lithium-ion the Ideal Battery?, 18 pages. |
Besenhard, et al., Excerpts from the Handbook of Battery Materials, 27 pages. |
Besenhard, et al., Excerpts from the Handbook of Battery Materials, 15 pages. |
Celgards Brief in Opp to Motion to Stay Preliminary Injuction, Submitted by LG Chem, Ltd. in IPR2014-00692, 14 Pages. |
Corrected Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by LG Chem, Ltd. In IPR2014-00692, Apr. 25, 2014, 65 pages. |
Patent Owner's Preliminary Response, Submitted by Celgard, LLC in IPR2015-01511, Oct. 9, 2015, 44 pages. |
Declaration of Jongmoon Chin, Submitted by LG Chem, Ltd. in IPR2014-00692, 3 Pages. |
Declaration of Kuzhikalail Abraham, Ph.D. in Support of Petitioner's Reply Submitted by Celgard, LLC in IPR2014-00692, 20 Pages. |
Declaration of Kuzhikalail M. Abraham, Ph.D., Submitted by LG Chem, Ltd. in IPR2014-00692, 60 pages. |
Zhang, Sheng Shui, A review on the separators of liquid electrolyte Li-ion batteries, 2007, Journal of Power Sources, vol. 164, 14 pages. |
Patent Owner Response in IPR2014-00692, Submitted by Celgard, LLC in IPR2015-01511, 67 pages. |
Declaration of Ralph E. White, Ph.D., P.E. ISO Preliminary Injunction, Submitted by LG Chem, Ltd. in IPR2014-00692, 14 Pages. |
Love, Materials from IAPG-CWG Safety Panel Meeting, 3 Pages. |
Declaration of Ralph E. White, Ph.D., P.E., Submitted by Celgard, LLC in IPR2014-00692, 96 Pages. |
Declaration of Thomas Vander Veen, Ph.D., Submitted by LG Chem, Ltd. in IPR2014-00692, 21 Pages. |
Declaration of William J. Paulus, Submitted by Celgard, LLC in IPR2014-00692, 17 Pages. |
Declaration of William J. Paulus, Submitted by Celgard, LLC in IPR2014-00692, 10 Pages. |
Depo Transcript in SK Innovation v Celgard IPR2014-00680, Submitted by LG Chem, Ltd. in IPR2014-00692, 189 pages. |
Excerpt from Defendants Memo of Law (ECF 136), Submitted by Celgard, LLC in IPR2014-00692, 1 Page. |
Excerpts from Apr. 23, 2015 Deposition of Ralph E. White, Ph.D., P.E., Submitted by LG Chem, Ltd. in IPR2014-00692, 59 pages. |
Excerpts from Jan. 29, 2015 Deposition of Kuzhikalail M. Abraham, Ph.D., Submitted by Celgard, LLC in IPR2014-00692, 43 Pages. |
Final Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00692, Oct. 5, 2015, 52 pages. |
Institution Decision, Submitted by Patent Trial and Appeal Board in IPR2014-00692, Oct. 8, 2014, 32 pages. |
List of Materials Considered by Thomas Vander Veen, Ph.D., Submitted by LG Chem, Ltd. in IPR2014-00692, 1 Page. |
Declaration by Dr. Michael G. Pecht, Submitted by Ube Maxell Co., Ltd., in IPR2015-01511, 168 pages. |
Patent Owner's Preliminary Response, Submitted by Celgard, LLC in IPR2014-00692, Aug. 1, 2014, 58 pages. |
Patent Owner's Response, Submitted by Celgard, LLC in IPR2014-00692, Feb. 6, 2015, 66 pages. |
Patent Owner's Motion for Observation on Cross-Examination of Dr. Kuzhikalail Abraham, Submitted by Celgard, LLC in IPR2014-00692, Jun. 5, 2015, 16 pages. |
Patent Owner's Motion for Observation on Cross-Examination of Dr. Thomas Vander Veen, Submitted by Celgard, LLC in IPR2014-00692, Jun. 5, 2015, 15 pages. |
Patent Owner's Motion for Observation on Cross-Examination of Jongmoon Chin, Submitted by Celgard, LLC in IPR2014-00692, Jun. 5, 2015, 10 pages. |
Decision Denying Institution, Submitted by Patent Trial and Appeal Board in IPR2015-01511, Jan. 7, 2016, 17 pages. |
Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by LG Chem, Ltd. in IPR2014-00692, Apr. 25, 2014, 66 pages. |
Petitioner's Response to Patent Owner's Observations of Testimony of Dr. Abraham, Submitted by LG Chem, Ltd. in IPR2014-00692, Jun. 10, 2015, 19 pages. |
Petitioner's Response to Patent Owner's Observations on Testimony of Chin, Submitted by LG Chem, Ltd. in IPR2014-00692, Jun. 10, 2015, 14 pages. |
Petitioner's Response to Patent Owner's Observations on Testimony of Dr. Vander Veen, Submitted by LG Chem, Ltd. in IPR2014-00692, Jun. 10, 2015, 17 pages. |
Redacted Public Version of Excerpt from Defendants (ECF 136), Submitted by Celgard, LLC in 1PR2014-00692, 1 Page. |
Supplemental Declaration of Kuzhikalail M. Abraham, Ph.D., Submitted by LG Chem, Ltd. in IPR2014-00692, 18 pages. |
Venugopal, et al., Characterization of Microporous Separators for Lithium-Ion Batteries, 1999, Journal of Power Sources, vol. 77, 8 pages. |
Arora, et al., Battery Separators, Submitted by Ube Maxell Co., Ltd. in IPR2015-01511, 2004, 44 pages. |
Corrected Petition for Inter Partes Review of U.S. Pat. No. 6,432,586, Submitted by Ube Maxell Co., Ltd. in IPR2015-01511, Jun. 25, 2015, 70 pages. |
Sigma-Aldrich, Lithium Hexafluorophosphate Solution in DMC, http://www.sigmaaldrich.com/catalog/producValdrich/746754?1ang=en®ion=US. |
Sigma-Aldrich, Lithium Hexafluorophosphate Solution in ECDMC, http://www.sigmaaldrich.com/catalog/producValdrich/7 46711 ?lang=en®ion= US. |
Sigma-Aldrich, Lithium Hexafluorophosphate Solution in ECEMC, http://www.sigmaaldrich.com/catalog/producValdrichl746738?1ang=en®ion=US. |
Sigma-Aldrich, Lithium Hexafluorophosphate Solution in EMC, http://www.sigmaaldrich.com/catalog/producValdrichf746762?1ang=en®ion=US. |
Sigma-Aldrich, Lithium Hexafluorophosphate Solution in PC, http://www.sigmaaldrich.com/catalog/producValdrich/746789?1ang=en®ion=US. |
Corrected Principal Brief of Appellant Celgard, LLC ,2016. |
Brief for Intervenor—Director of the United States Patent and Trademark Office , 2016. |
Reply Brief for Appellant Celgard, LLC, 2016. |
(Corrected) Notice of Entry of Judgment without Opinion , 2016. |
Appellant Celgard, LLC's Combined Petition for Panel Rehearing and Rehearing En Banc, 2017. |
On Petition for Panel Rehearing and Rehearing En Banc Order,2017. |
Application for a 30-Day Extension of Time to File Petition for a Writ of Certiorari , 2017. |
Petition for a Writ of Certiorari, Submitted by Petitioner Celgard, LLC, 115 pages. |
Supplemental Appendix, Submitted by Petitioner Celgard, LLC, 8 pages. |
Brief for the Respondent, 12 pages. |
Reply Brief for Petitioner, 12 pages. |
Giridhar et al, “A Review on Lithium-Ion Polymer Electrolyte Batteries,” Bulletin of Electrochemistry, CECRI, (vol. 14), (p. 414-418), (1999). |
Prosini et al., “A Novel Intrinsically Porous Separator for Self-Standing Lithium-Ion Batteries;” Pergamon, Electrochimica Acta, (vol. 48), (p. 227-233), (2002). |
Kim et al., “Liquid-Liquid Phase Sepraration in Polysulfone/Solvent/Water Systems,” Journal of Applied Polymer Science, John Wiley & Sons, Inc., (vol. 65), (p. 2643-2653), (1997). |
Vogrin et al., “The Wet Phase Separation: The Effect of Cast Solution Thickness on the Appearance of Macrovoids in the Membrane Forming Ternary Cellulose Acetate/Acetone/Water System,” Journal of Membrane Science, Elsevier Science B.V., (vol. 207), (p. 139-141), (2002). |
Cheng et al., “PVDF Membrane Formation by Diffusion-Induced Phase Separation-Morphology Prediction Based on Phase Behavior and Mass Transfer Modeling,” Journal of Polymer Science, John Wiley & Sons, Inc., (vol. 37), (p. 2079-2092), (1999). |
Cheng, “Effect of Temperature on the Formation of Microporous PVDF Membranes by Precipitation from 1-Octanol/DMF/PVDF and Water/DMF/PVDF Systems,” Macromolecules, American Chemical Society, (vol. 32), (p. 6668-6674), (1999). |
Zhang, “Advanced Gel Polymer Electrolyte for Lithium-Ion Polymer Batteries,” Graduate Theses and Dissertations, Paper 13515, Digital Repository @ Iowa State University, (2013). |
Young et al., “Mechanisms of PVDF Membrane Formation by Immersion-Precipitation in Soft (1-Octanol) and Harsh (Water) Nonsolvents,” Polymer, Elsevier Science Ltd., (vol. 40), (p. 5315-5323), (1999). |
Matsuyama et al., “Preparation of Porous Membrane by Combined Use of Thermally Induced Phase Separation and Immersion Precipitation,” Polymer, Elsevier Science Ltd., (vol. 43), (p. 5243-5248), (2002). |
Nichias, “Technical Report,” (2000). |
Order denying Petition for a Writ of Certiorari in Celgard v. Iancu, 9 pages, 2018. |
Petition for a Writ of Certiorari, Submitted by Petitioner Celgard, LLC, 115 pages , 2017. |
Supplemental Appendix, Submitted by Petitioner Celgard, LLC, 8 pages, 2017. |
Brief for the Respondent, 12 pages , 2017. |
Reply Brief for Petitioner, 12 pages, 2017. |
Product Datasheet, “Properties of Celgard 2400 Microporous Film,” Jul. 1983. |
Product Datasheet, “Properties of Celgard 2400 Microporous Film,” Mar. 1985. |
Product Datasheet, “Properties of Celgard 2500 Microporous Film,” Mar. 1985. |
Grady, Eveready Battery Company, The 20th International Seminar & Exhibit on Primary & Secondary Batteries, “New Product Concepts from Energizer”, Fort Lauderdale, FL, Mar. 17-20, 2003. |
Proceedings of the 38th Power Sources Conference, Jun. 8-11, 1998. |
Chen et al., “Structural Characterization of Celgard Microporous Membrane Precursors: Melt-Extruded Polyethylene Fims,” Journal of Applied Polymer Science, vol. 53, 471-483 (1994). |
Sarada et al., “Three Dimensional Structure of Celgard Microporous Membranes,” Journal of Membrane Science, 15 (1983) 97-113, Elsevier Scientific Publishing Company, Amsterdam. |
Wang, et al., Poly(ethylene oxide)-silica hybrid materials for lithium battery application, 1999, Elsevier Science B.V., 39(4), pp. 206-210. |
Number | Date | Country | |
---|---|---|---|
Parent | 09546266 | Apr 2000 | US |
Child | 14875434 | US |