Free radical polymers based on meadowfoam esters

Organic compounds -- part of the class 532-570 series – Organic compounds – Fatty compounds having an acid moiety which contains the...

Reexamination Certificate

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C554S052000, C554S224000, C554S227000, C554S229000

Reexamination Certificate

active

06201143

ABSTRACT:

BACKGROUND OF THE INVENTION
Field of the Invention
The present invention deals with the composition, and application of novel meadowfoam containing polymers, useful as softening, anti-tangle, and conditioning agents for use in personal care, textile and related applications. The properties of these novel compounds containing a meadowfoam ester moiety in the polymer backbone which makes them well suited for these applications is the fact that they are substantive to fibers, hair and skin and also very mild to the skin and eyes and provide protection from environmental factors like acid rain and other pollutions which come in contact with hair and skin. The incorporation of a the meadowfoam component into the molecule results in several additional desirable properties heretofore unattainable. The polymers are more elastomeric, are resistant to mal-odor formation and provide outstanding gloss and protection of the hair from environmental factors which can be damaging to the hair.
The recent availability of meadowfoam oil, with it's 20 to 22 carbon atoms and the specific location of it's double bonds, and it's reaction to make polymers results in the preparation liquid stable polymers, having outstanding emulsifying properties and are very acceptable for use in personal care applications.
Arts and Practices
The prior practices for providing softening, anti-tangle, and conditioning properties for use in personal care, textile and related applications has been incorporation of quaternary compounds. These materials have been used for many years despite some significant drawbacks including irritation, negative impact on the aquatic environment, build up and yellowing of the substrate upon which they are applied.
U.S. Pat. No. 5,162,472 to O'Lenick discloses free radical polymers which incorporate silicone into the backbone. While these materials have desirable properties, they do not form monolayers on the hair nor do they provide the protection to the hair offered by incorporating meadowfoam into the molecule.
The references cited herein are incorporated by reference to the extent applicable. Ratios and percentages are by weight and temperatures are Celsius unless otherwise stated.
THE INVENTION
Object of the Invention
It is the object of the current invention to provide a novel series of meadowfoam containing polymers. The incorporation of the critical meadowfoam group gives increased elastomeric properties, increased resistance to odor formation, lowers irritation and provides excellent antistatic, comb out properties and softening to hair and skin.
It is another object of the current invention to provide a novel vinyl meadowfoam monomer used as an intermediate in the preparation of the compounds of the present invention.
It is still another objective of the current invention to provide personal care compositions which contain an effective conditioning amount of the compounds of the current invention. That effective conditioning concentration will vary from 0.1 to 20% of the composition. The compounds of the present invention have outstanding compatibility with anionic, nonionic and cationic surfactant systems.
SUMMARY OF THE INVENTION
The present invention is directed to free radical polymers which contain a meadowfoam ester group as one of the functional groups polymerized. The compounds of the invention are prepared by the free radical polymerization of a novel meadowfoam monomer having a reactive vinyl group.
The unique structure of the meadowfoam results in these polymers with oxidative stability heretofore unattainable. The fatty distribution of the oil ranges from 20 to 22 carbons and has unsaturation in specific locations. The oil contains 97% by weight higher unsaturated alkyl groups. Typically, meadowfoam oil contains 60-65% of a twenty carbon mono-carboxy acid having one unsaturation between carbon
5
and
6
. Additionally, it contains 12-20% of a twenty two carbon mono-carboxy acid having one unsaturation between either carbon
5
and
6
, or carbon
13
and
14
and 15-28% of a twenty two carbon mono-carboxy acid having one unsaturation between both carbon
5
and
6
, or carbon
13
and
14
. The combination of the fact that there are 20 to 22 carbon atoms in the group leads to lack of volatility, the presence of unsaturation leads to liquidity and the fact that the di-unsaturated moieties are not conjugated leads to outstanding oxidative stability.
Meadowfoam has a unique distribution of acyl groups. That distribution is;
60-65% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
13
—CH
3
12-20% by weight a mixture of
—(CH
2
)
3
—CH═CH—(CH
2
)
15
—CH
3
and
—(CH
2
)
11
—CH═CH—(CH
2
)
7
—CH
3
and
15-28% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
6
—CH═CH—(C
2
)
6
—CH
3
;
R
2
and R
3
are methyl or ethyl.
The compounds of the current invention conform to the following generic structure;
wherein;
R is selected from the group consisting of CH3 and H;
a is an integer from 1 to 100;
b, c, and d are integers ranging from 0 to 100;
R
1
is
—(CH
2
)
3
—O—(CH
2
CH
2
—O)
x
—(CH
2
CH(CH
3
)—O)
y
—(CH
2
CH
2
—O)
z
—C(O)—R
7
x, y and z are independently integers ranging from 0 to 20;
R
7
is derived from meadowfoam and is 60-65% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
13
—CH
3
12-20% by weight a mixture of
—(CH
2
)
3
—CH═CH—(CH
2
)
15
—CH
3
and
—(CH
2
)
11
—CH═CH—(CH
2
)
7
—CH
3
and
15-28% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
6
—CH═CH—(CH
2
)
6
—CH
3
;
R
2
is —C(O)—O

M
+
M is selected from H, Na, K, Li, and NH 4;
R
3
is
R
4
is
R
10
, R
11
and R
12
are selected from H, methyl and ethyl;
R
5
is —C(O)—NH
2
R
6
is
—C(O)—N(H)—(CH
2
)
q
—SO
3

M
+
q is an integer ranging from 1 to 5.
The compounds of the current invention are prepared by the free radical reaction of a meadowfoam ester containing monomer and other monomers selected from the following;
R
1
is derived from a meadowfoam ester monomer conforming to the following structure;
 CH
2
═CH—CH
2
—O—(CH
2
CH
2
—O)
x
—(CH
2
CH(CH
3
)—O)
y
—(CH
2
CH
2
—O)
z
—C(O)—R
7
x, y and z are independently integers ranging from 0 to 20;
R
7
is derived from meadowfoam and is 60-65% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
13
—CH
3
12-20% by weight a mixture of
—(CH
2
)
3
—CH═CH—(CH
2
)
15
—CH
3
and
—(CH
2
)
11
—CH═CH—(CH
2
)
7
—CH
3
and
15-28% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
6
—CH═CH—(CH
2
)
6
—CH
3
;
R
2
is derived from the following monomer CH
2
═CH—C(O)—O

M
+
Acrylic acid and methacrylic acid is available from Dow.
R
3
is derived from the following monomer;
Vinyl pyrrolidone is available commercially from BASF.
R
4
is derived from the following monomer;
R
10
, R
11
and R
12
are selected from H, methyl and ethyl;
These monomers are available from CPS Corporation.
R
5
is derived from the following monomer CH
2
═CH—C(O)—NH
2
Acrylamide is available from Dow Chemical.
R
6
is derived from the following monomer;
CH
2
═CH—C(O)—N(H)—(CH
2
)
q
—SO
3

M
+
These materials are available from Lubrizol Inc.
These materials are reacted in a solvent, typically water under the influence of a free radical catalyst. Free radical polymerization is well known to those skilled in the art.
The meadowfoam derivative is prepared by the reaction of meadowfoam seed oil, or meadowfoam fatty acid with a allyl alcohol or allyl alcohol alkoxylate to obtain a vinyl meadowfoam ester which in a subsequent step is reacted either with itself or with the other monomers listed above.
A novel aspect of the present invention is the vinyl containing meadowfoam ester. Specifically, the meadowfoam ester of allyl alcohol alkoxylate is made by esterifying meadowfoam fatty acid with allyl alcohol or allyl alcohol alkoxylate in the presence of a suitable catalyst. The reaction is as follows:
wherein:
x, y and z are independently integers ranging from 0 to 20;
R
7
is derived from meadowfoam and is 60-65% by weight
—(CH
2
)
3
—CH═CH—(CH
2
)
13
—CH
3
12-20% by weight a mixture of
—(CH
2
)
3
—CH═CH—(CH
2
)
15
—CH
3
and

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