WO 00/51936 Zhou et al, 2000.* |
Science, vol. 270, Oct. 27, 1995, “Mechanism for Lithium Insertion in Carbonaceous Materials” J.R. Dahn et al., pp. 590-593. |
Science, vol. 263, Mar. 25, 1994, “Defects in Carbon Nanostructures”, O.Zhou et al., pp. 1744-1747. |
Nature, vol. 388, Jul. 17, 1997, “Conductivity Enhancement in single-walled carbon nanotube bundles doped with K and Br”, R.S. Lee et al., pp. 255-257. |
Appl. Phys. A 67, 1998, “Synthesis and structure of pristine and alkali-metal-intercalated single-walled carbon nanotubes”, C. Bower et al., pp. 47-52. |
Carbon 37, 1999, “Electrochemical storage of lithium multiwalled carbon nanotubes”, E.Frackowiak, et al., pp. 61-69. |
Scientific American, Oct. 1991, “Fullerenes”, Robert F. Curl et al., pp. 53-63. |
Science News, vol. 140, “Scientists ponder the surprising properties of C60 and its siblings”, Elizabeth Pennisi, pp. 120-123. |
Technology Review, Jan. 1994, “The Third Coming of Carbon”, Hugh Aldersey-Williams, pp. 51-62. |
Chemistry, 1992, “More fun with buckyballs”, (2 pages). |
Materials & Electrochemical Research Corporation, “Buckytubes”, (5 pages). |
Popular Science, Aug. 1991, “Buckyball, The Magic Molecule”, Edward Edelson, pp. 52-57 & 87. |
Mar. 30, 1991, “Profile emerges of well-rounded molecule”, I. Peterson, pp. 197. |
The Electrochemical Society Interface, vol. 3, No. 1, Spring 1994, “Fullerenes, The Society forms a new Group”, Rodney S. Ruoff, pp. 29-33. |
Apr. 10, 1993, “Synthesis in Soot: The New Molecular Cages”. |
1991 Atomic Tech, Jan. 1992, “Better Living through Buckyballs”, pp. 74-75. |
Industry Week, Nov. 4, 1991, “Buckminsterfullerenes” John Teresko, pp. 38-44. |
Nature, vol. 388, Jul. 17, 1997, “Evidence for charge transfer in doped carbon nanotube bundles from Raman scattering” A.M. Rao et al., pp. 257-259. |
J. Appl. Phys, 79 (7), Apr. 1, 1996, “Observation of potassium-intercalated carbon nanotubes and their valence-band excitation spectra”, S. Suzuki et al., pp. 3739-3743. |
Science, vol. 273, Jul. 26, 1996, “Crystalline Ropes of Metallic Carbon Nanotubes”, Andreas Thess et al., pp. 483-487. |
Chemical Physics Letters, 285 (1998), “In-situ Tem and Eels studies of alkali-metal intercalation with single-walled carbon nanotubes”, S. Suzuki et al., pp. 230-234. |
Physical Review Letters, vol. 80, No. 25, Jun. 22, 1998, “Reversible Intercalation of Charged Iodine Chains into Carbon Nanotube Ropes”, L. Grigorian et al., pp. 5560-5563. |
Chemical Physics Letters 288 (1998), “Intercalation and partial exfoliation of single-walled carbon nanotubes by nitric acid”, C. Bower et al., pp. 481-486. |
Chemical Physics Letters 282 (1998), “Purification of single-wall carbon nanotubes by ultrasonically assisted filtration”, Konstantine B. Shelimov et al., pp. 429-434. |
Nature, vol. 358, Jul. 16, 1992, “Large-scale synthesis of carbon nanotubes”, T.W. Ebbesen et al., pp. 220-222. |
J. Electrochem Soc., vol. 139, No. 4, Apr. 1992, “Li Metal-Free Rechargeable LiMn2O4/Carbon Cells: Their Understanding and Optimization”, D. Guyomard et al., pp. 937-948. |
J. Electroanal Chem., 219 (1987), “The Cathodic Decomposition of Propylene Carbonate in Lithium Batteries”, Masayasu Arakawa et al., pp. 273-280. |
J. Electrochem. Soc. vol. 143, No. 12, Dec. 1996, “Effect of Mechanical Grinding on the Lithium Intercalation Process in Graphites and Soft Carbons”, F. Disma et al., pp. 3959-3972. |
“Elastic and Mechanical Properties of Carbon Nanotubes” L. Vaccarini et al., pp. 406. |
Physical Review Letters, vol. 80, No. 25, Jun. 22, 1998, “Position of K Atoms in Doped Single-Walled Carbon Nanotube Crystals”, Guanghua Gao et al., pp. 5556-5559. |
“Mechanical Damage of Carbon Nanotubes by Ultrasound”, Apr. 1996, K.L. Lu et al., pp. 814-816. |
J. Am. Chem. Soc., 1992, 114, “Electrochemical Intercalation of Lithium into Solid C60”, Yves Chabre et al., pp. 764-766. |
Science, vol. 264, Apr. 22, 1994, “A Mechanism of Lithium Storage in Disordered Carbons”, Kenji Sato et al., pp. 556-558. |
J. Mater, Res., vol. 5, No. 2, Feb 1990, “Hydrogen-alkali-metal-graphite ternary intercalation compounds”, Toshiaki Enoki et al., pp. 435-465. |