Renewably Derived Polyesters and Methods of Making and Using the Same
US-2017313811-A1 · Nov 2, 2017 · US
US9598618B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9598618-B2 |
| Application number | US-201214358575-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 15, 2012 |
| Priority date | Nov 18, 2011 |
| Publication date | Mar 21, 2017 |
| Grant date | Mar 21, 2017 |
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The invention relates to a process for preparing an amine adduct, in which a polyamine component (A), a polyester component (B) and a hydrocarbon component (C) are reacted. The amine adduct is of particularly good suitability as a wetting agent and dispersant, especially for coatings and plastics applications.
Opening claim text (preview).
The invention claimed is: 1. A process for preparing an amine adduct, in which a polyamine component (A), a polyester component (B) and a hydrocarbon component (C) are reacted in weight ratios of (A):(B)=1:1000 to 1:1 (A):(C)=1:100 to 100:1 and (B):(C)=2:1 to 50:1 in that according to reaction variant i) first a reaction intermediate (A-B) is produced from the polyamine component (A) and the polyester component (B), which is subsequently reacted with the hydrocarbon component (C) or according to reaction variant ii) first a reaction intermediate (A-C) is formed from the polyamine component (A) and the hydrocarbon component (C) and this is subsequently reacted with the polyester component (B) or according to reaction variant iii) the polyamine component (A) is reacted simultaneously with the polyester component (B) and the hydrocarbon component (C) wherein the polyamine component (A) is present in the form of at least one organic polyamine compound (A′), which in each case has at least three amino groups (A′+) selected from primary and secondary amino groups, in each case reactive with both the polyester component (B) and the hydrocarbon component (C), the polyester component (B) is present in the form of at least one polyester compound (B′), which in each case contains no primary amino groups and no secondary amino groups, in each case has at least three ester groups, and in each case contains a coupling group (B′+) present as a carboxyl group or carboxylic acid anhydride group, reactive with primary and/or secondary amino groups, and the hydrocarbon component (C) is present in the form of at least one branched or unbranched, saturated or unsaturated hydrocarbon compound (C′) each having a linking group (C′+), in each case (C′) having no primary amino groups, in each case having no secondary amino groups, in each case having no carboxyl groups and in each case having no carboxylic acid anhydride groups, and in each case (C′) having an overall ratio of carbon atoms to hetero atoms of at least 2:1, wherein the hetero atoms are selected from the group of elements consisting of at least one of O, N, P, S, and Si, wherein the linking groups (C′+) in each case have the characteristic of reacting with primary amino groups with formation of secondary amino groups and/or with secondary amino groups with formation of tertiary amino groups, and also in each case are present in the form of an epoxy function of formula (I) with R 1 , R 2 , and R 3 in each case the same or different and each independently of one another is represented by H or by a saturated, branched or unbranched C 1 -C 12 hydrocarbon moiety, wherein the amine adduct is obtained in solid form at room temperature in each case and has a melting range of 30 to 200° C. and the reaction of the polyamine component (A), the polyester component (B) and the hydrocarbon component (C) takes place in that for each weight unit of polyester component (B), a maximum of 0.8 weight units of other components that do not belong to any of the components (A), (B) or (C) are optionally present. 2. The process according to claim 1 , wherein the reaction of (A), (B) and (C) is performed in weight ratios of (A):(B)=1:100 to 1:4 and (A):(C)=1:10 to 10:1. 3. The process according to claim 1 , wherein the reaction of the polyamine component (A), the polyester component (B) and the hydrocarbon component (C) takes place in such a manner that for each weight unit of polyester component (B), a maximum of 0.2 units by weight of other components are optionally present, which do not belong to any of the components (A), (B) or (C). 4. The process according to claim 1 , wherein the reaction of the polyamine component (A), the polyester component (B) and the hydrocarbon component (C) takes place in the absence of organic solvents. 5. The process according to claim 1 , wherein at least 50% by weight of the polyester compounds (B′) used is present in the form of linear, monocarboxy-functional caprolactone polyesters. 6. The process according to claim 5 , wherein the at least 50% by weight of the polyester compounds (B′) used is present in the form of linear, monocarboxy-functional caprolactone polyesters, which in each case have a weight-average molecular weight of 500 to 10,000. 7. The process according to claim 1 , wherein the hydrocarbon component (C) contains at least 30% by weight of unsaturated C 6 -C 50 hydrocarbon compounds (C′), which in each case contain at least one aryl and/or one alkylaryl group. 8. The process according to claim 1 , wherein the hydrocarbon component (C) contains at least 30% by weight of C 10 -C 70 hydrocarbon compounds (C′), which in each case contain at least one branched alkyl and/or one branched alkenyl moiety. 9. The process according to claim 1 , wherein components (A), (B) and (C) are used respectively in stoichiometric ratios such that altogether at least 50 mol % of the totality of the reactive amino groups (A′+) of the polyamine compounds (A′) used are reacted with the polyester compounds (B′) and/or with the hydrocarbon compounds (C′). 10. The process according to claim 1 , wherein the polyester component (B) and the hydrocarbon component (C) do not react with one another under the reaction conditions of the reaction. 11. The process according to claim 1 , wherein the reaction of (A), (B) and (C) is performed in weight ratios of (A):(B)=1:25 to 1:7 and (A):(C)=1:2 to 2:1. 12. The process according to claim 1 , wherein 70 to 100% by weight of the polyester compounds (B′) used is present in the form of linear, monocarboxy-functional caprolactone polyesters. 13. The process according to claim 12 , wherein the 70 to 100% by weight of the polyester compounds (B′) used is present in the form of linear, monocarboxy-functional caprolactone polyesters, which in each case have a weight-average molecular weight of 500 to 10,000. 14. The process according to claim 1 , wherein the hydrocarbon component (C) contains 50 to 100% by weight of unsaturated C 6 -C 50 hydrocarbon compounds (C′), which in each case contain at least one aryl and/or one alkylaryl group. 15. The process according to claim 1 , wherein the hydrocarbon component (C) contains 50 to 100% by weight of C 10 -C 70 hydrocarbon compounds (C′), which in each case contain at least one branched alkyl and/or one branched alkenyl moiety. 16. The process according to claim 1 , wherein components (A), (B) and (C) are used respectively in stoichiometric ratios such that altogether 70 to 100 mol % of the totality of the reactive amino groups (A′+) of the polyamine compounds (A′) used are reacted with the polyester compounds (B′) and/or with the hydrocarbon compounds (C′).
Compositions of polyesters obtained by reactions forming a carboxylic ester link in the main chain (of polyester-amides C08L77/12; of polyester-imides C08L79/08); Compositions of derivatives of such polymers · CPC title
derived from polycarboxylic acids and polyhydroxy compounds · CPC title
Pigment pastes, e.g. for mixing in paints (artists' paints C09D5/06) · CPC title
derived from polycarboxylic acids and polyhydroxy compounds · CPC title
Oxygen-containing compounds, including ammonium and metal salts · CPC title
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