Silicone isethionate polymers

Information

  • Patent Grant
  • 5300666
  • Patent Number
    5,300,666
  • Date Filed
    Tuesday, October 12, 1993
    31 years ago
  • Date Issued
    Tuesday, April 5, 1994
    30 years ago
Abstract
The present invention relates to a series of novel silicone isethionate polymers, useful as detergents and softeners for hair, and fiber and conditioners skin. The compounds of the present invention are prepared by the reaction of a carboxy silicone with an isethionate to produce novel surface active materials useful in personal care applications like soap bars.
Description

BACKGROUND OF THE INVENTION:
(1) Field of Invention
The present invention relates to a series of novel silicone isethionate polymers. These materials are surface active silicone compounds which are useful in a personal care and related applications, Specifically in the formulation of synthetic detergent bars, the so called syndet bars.
Since the compounds of the present invention are high molecular weight silicone polymers, they have a high degree of oxidative stability, even at elevated temperatures. In addition, these compounds are non volatile and non irritating to eyes and skin.
The compounds of the present invention are prepared by the reaction of the hydroxyl group on sodium isethionate with a carboxy silicone.
(2) Object of the Invention
It is the object of the present invention to provide a series of novel silicone isethionate polymers, which are exceptionally mild detergents and which are substantive to skin and hair. This substantivity results in superior softening, conditioning and antistatic properties.
It is another objective of the current invention to provide silicone isethionate derivatives which are nonirritating surface active agents. The compounds of the present invention have very low irritation values when applied to skin and eyes. Irritation is a major problem with traditional surfactants.
Application of the compounds of the invention can be from solvent, aqueous dispersion or solution, or applied neat in these process. It is anticipated that the effective conditioning concentration of the compound of this invention ranges from 0.1% to 25% by weight.
(3) Description of the Arts and Practices
Silicone oils (polydimethylsiloxane) have been known to be active at the surface of plastic, cellulosic and synthetic fibers as well as paper. Despite the fact that they are lubricants that are stable to oxidation, their high cost and lack of durability has made them cost prohibitive in most application areas. Silicone oils need to be emulsified prior to application. This requires high pressure equipment, surface active agents and generally results in a milky emulsion. Emulsions have experienced stability problems both in terms of freeze thaw instability and upon heating. This has resulted in minimal acceptance of them in commercial products.
The low efficiency of silicone oils is due to the fact that the oil is very water insoluble. Emulsions are generally prepared which contain silicone dispersed in micelles. While this method of application is easier for processing, much of the oil stays in the surfactant micelle and never gets deposited on the fiber. That which does deposit on the fiber surface remains there by hydrophobic binding, not ionic bonding. Since the polydimethylsiloxane is not bonded the effect is very transient. The product is removed with one washing. Fatty sodium Isethionate derivatives known to those skilled in the art. Sodium isethionate conforms to the following structure:
HO--(CH.sub.2).sub.2 --SO3M
wherein M is a metal ion preferably an alkali metal such as sodium, potassium, ammonium or lithium.
U.S. Pat. No. 4,515,721 issued to Login in May of 1985 teaches one method of producing fatty isethionates. While this patent discloses a new process for preparation of fatty products, there was no attempt to incorporate silicone into compound. Consequently, the unique softening and substantivity properties achieved using the compounds of the present invention are not realized with the above technologies.
THE INVENTION
1) Summary of the Invention
The present invention relates to a series of novel silicone based isethionate surfactants. These silicone polymers have a pendant isethionate functional group present. The polymers by virtue of the pendent group are very mild detergents which also deposit on hair, skin and fiber surfaces forming effective nonvolatile nonirritating, surface modifying finishes. The compounds of the present invention are excellent conditioners, antistats and non-yellowing, softeners.
The compounds of this invention are represented by the following formula;
R--(CH.sub.2).sub.2 --SO.sub.3 M
wherein
R is ##STR1## wherein Me is methyl;
R.sup.2 is selected from the group consisting of methyl and phenyl;
Q is (CH.sub.2).sub.c ;
c is an integer from 3 to 17;
A is selected from the group consisting of methyl and
Q--C(O)--O--
m is an integer from 0 to 200;
n is an integer from 1 to 10 when A is methyl;
n is an integer from 0 to 10 when A is --Q--C(O)--O--;
M is selected from the group consisting of Na, K, Li, and NH.sub.4.
The products of the present invention are prepared by reaction of a carboxy containing silicone intermediate conforming to the following structure: ##STR2## wherein Me is methyl;
Q is (CH.sub.2).sub.c ;
c is an integer from 3 to 17;
A is selected from the group consisting of methyl and
--Q--C(O)--O--;
m is an integer from 0 to 200;
n is an integer from 1 to 10;
with a an isethionate derivative conforming to the following structure:
HO--(CH.sub.2).sub.2 --SO.sub.3 M
wherein M is selected from the group consisting of Na, K, Li, and NH.sub.4.





PREFERRED EMBODIMENTS
In a preferred embodiment n is 1.
In another preferred embodiment n is 2.
In another preferred embodiment n is 3.
In another preferred embodiment n is 4.
In the most preferred embodiment n is 10.
In a preferred embodiment R is alkyl having 12-18 carbon atoms.
In a preferred embodiment M is Na.
In another preferred embodiment M is K.
EXAMPLES
Carboxy Silicone Reactants
Many manufacturers offer a series of carboxy functional silicone compounds suitable for use as raw materials in the preparation of the esters of the present invention. These materials are marketed under the many trade names. Two companies making them are Siltech Inc, and Dow Corning.
The preferred method of placing this type of reactive carboxy group into the silicone polymer is by the reaction of silanic hydrogen containing polymer with a terminal unsaturated carboxylate. This technology is well known to those skilled in the art. ##STR3## wherein R is methyl; R' is hydrogen;
Q is (CH.sub.2).sub.c ;
c is an integer from 3 to 17;
m is an integer from 0 to 200;
n is an integer from 1 to 10;
A is methyl;
______________________________________Example Name c n m______________________________________1 Siltech C 1000 10 3 152 Siltech C 1000 10 1 203 Siltech C 1200 3 4 504 Siltech C 1300 3 2 2005 Siltech C 1400 4 1 296 Siltech C 1500 17 3 17 Siltech C 1600 17 4 1508 Siltech C 1700 4 10 55______________________________________
Terminal Substituted Carboxy Silicone
Terminal substituted carboxy silicone compounds are well known and are marketed in the trade under many names.
The preferred method of placing this type of carboxyl group into the silicone polymer is by the reaction of terminal silanic hydrogen containing polymer with a terminal vinyl containing carboxy compound. ##STR4## wherein: R is methyl;
R' is hydrogen;
Q is (CH.sub.2).sub.c ;
c is an integer from 3 to 17;
n is 0
A is --Q--C(O)OR'
m is an integer from 0 to 200;
______________________________________Example Name c m______________________________________ 9 Siltech CT 701 10 110 Siltech CT 706 3 20011 Siltech CT 710 17 5012 Siltech CT 750 10 10013 Siltech CT 790 3 150______________________________________
Isethionate Reactants
Isethionate derivatives are commercially available from many sources. Rhone Poulenc Cranbury, N.J. is one source.
These materials are prepared by the condensation of sodium sulfite and ethylene oxide. The reaction is conducted in water and in a subsequent step the water is evaporated off to produce an essentially anhydrous powder.
The reaction sequence is as follows:
______________________________________ ##STR5##Example M Group Structure______________________________________14 Sodium HO(CH.sub.2).sub.2SO.sub.3 Na15 Potassium HO(CH.sub.2).sub.2SO.sub.3 K16 Lithium HO(CH.sub.2).sub.2SO.sub.3 Li17 Ammonium HO(CH.sub.2).sub.2SO.sub.3 NH.sub.4______________________________________
COMPOUNDS OF THE PRESENT INVENTION
General Reaction Procedure
The products of the present invention are generally prepared as follows:
To a suitable flask, equipped with a thermometer and agitator is added the specified amount and type of carboxy silicone. Next add the specified amount of the type of isethionate reactant. Next add 5.0 grams of zinc oxide. The reaction mass blanketed with nitrogen and heated to 220-240 C. and held from between 5 and 15 hours. Water is distilled off which approaches 98% of theoretical before reaction is terminated.
The product can be used as prepared or washed with isopropanol and dried in vacuo.
EXAMPLE 18
To a suitable flask, equipped with a thermometer and agitator is added 609.0 grams type of carboxy silicone example 1. Next add 148.0 grams of sodium isethionate reactant example 14. Next add 5.0 grams of zinc oxide. The reaction mass blanketed with nitrogen and heated to 220-240 C. and held from between 5 and 15 hours. Water is distilled off which approaches 98% of theoretical before reaction is terminated.
EXAMPLES 19-35
Example 18 is repeated only this time the specified amounts and types of silicone reactant and isethionate derivative is added replacing the taurine and silicone reactant used in example 18.
______________________________________ Isethionate Reactant Silicone ReactantsExample Example Grams Example Grams______________________________________19 14 148.0 1 609.020 15 164.0 2 1827.021 16 132.0 3 1051.022 17 143.0 4 7570.023 14 148.0 5 2409.028 14 148.0 6 361.029 14 100.0 7 3100.030 14 125.0 8 524.231 14 148.0 9 290.032 14 148.0 10 7553.033 14 148.0 11 2200.034 14 75.0 12 4000.035 14 148.0 13 5700.0______________________________________
Applications Examples
Several of the compounds of the present invention were milled into soap bars at 4%. The soap bar was found to have outstanding slip, lubrication and softening properties, without interfering with the bar's degree of solidness. The bars were rated on a scale of 1-5 for lubrications and softness. The results were as follows:
______________________________________1 (worst) .fwdarw. 5 (best)Material Rating______________________________________Soap Bar (no additive) 1Example 25 4Example 19 4Example 35 5______________________________________
As can be readily seen the addition of the compounds of the present invention to soap bars improves the soft hand and lubrication of the soap.
Claims
  • 1. A silicone polymer which conforms to the following structure:
  • R--(CH.sub.2).sub.2 --SO.sub.3 M
  • wherein:
  • R is ##STR6## wherein Me is methyl;
  • R.sup.2 is selected from the group consisting of methyl and phenyl;
  • Q is (CH.sub.2).sub.c ;
  • c is an integer from 3 to 17;
  • A is selected from the group consisting of methyl and
  • --Q--C(O)--O--
  • m is an integer from 0 to 200;
  • n is an integer from 1 to 10 when A is methyl;
  • n is an integer from 0 to 10 when A is --Q--C(O)--O--;
  • M is selected from the group consisting of Na, K, Li, and NH.sub.4.
  • 2. A compound of claim 1 wherein M is Na.
  • 3. A compound of claim 1 wherein M is K.
  • 4. A compound of claim 1 wherein M is Li.
  • 5. A compound of claim 1 wherein M is NH.sub.4.
  • 6. A compound of claim 1 wherein A is methyl.
  • 7. A compound of claim 1 wherein A is --Q--C(O)--O--.
  • 8. A compound of claim 1 wherein c is 9.
  • 9. A compound of claim 1 wherein c is 3.
  • 10. A compound prepared the esterification reaction of a carboxy containing silicone compound conforming to the following structure: ##STR7## wherein Me is methyl;
  • Q is (CH.sub.2).sub.c ;
  • c is an integer from 3 to 17;
  • A is selected from the group consisting of methyl and
  • --Q--C(O)--O--
  • n is an integer from 1 to 10 when A is methyl;
  • n is an integer from 0 to 10 when A is --Q--C(O)--O--
  • with an isethionate derivative conforming to the following structure:
  • H--O--(CH.sub.2).sub.2 --SO.sub.3 M
  • wherein
  • M is selected from the group consisting of Na, K, Li, and NH.sub.4.
  • 11. A compound of claim 10 wherein M is Na.
  • 12. A compound of claim 10 wherein M is K.
  • 13. A compound of claim 10 wherein M is Li.
  • 14. A compound of claim 10 wherein M is NH.sub.4.
  • 15. A compound of claim 10 wherein A is methyl.
  • 16. A compound of claim 10 wherein A is --Q--C(O)--O--.
  • 17. A compound of claim 10 wherein c is 9.
  • 18. A compound of claim 10 wherein c is 3.
US Referenced Citations (7)
Number Name Date Kind
3507897 Kanner et al. Apr 1970
3513183 Morehouse May 1970
3531417 Morehouse Sep 1970
3531507 Morehouse Sep 1970
3997580 Morehouse Dec 1976
4039562 Bloch et al. Aug 1977
5068380 Meguriya et al. Nov 1991