Alkyl phenolic resin and method of preparation thereof
Described herein are alkyl phenolic resins and methods of producing them. The content of residual phenol in the alkyl phenolic resin may be less than about 2% w/w, the softening point of the alkyl phenolic resin may be about 85° C. to about 105° C., the tackiness of the alkyl phenolic resin may be about 8 N to about 25 N, the alkyl group of the alkyl phenol may have 6-12 carbon atoms, and the content of 4-(1,1,3,3-tetramethylbutyl) phenol in the alkyl phenol may be from about 0% to about 85% w/w. The invention also relates to a use of the alkyl phenolic resin as rubber tackifier.
1. A method, comprising:
reacting phenol with a monoalkene, wherein the molar ratio of monoalkene-to-phenol is from about 2:1 to about 1.2:1, thereby forming an alkyl phenol mixture comprising an alkyl phenol and a second phenol;
contacting the alkyl phenol mixture with an aldehyde at a first temperature for a first amount of time, thereby forming an alkyl phenolic resin,
wherein the second phenol is different from the alkyl phenol; and
the second phenol is present in a concentration from about 0% to about 10% by weight of the alkyl phenol mixture.
2. The method of claim 1 , wherein the alkyl phenol and the second phenol are contacted with the aldehyde in the presence of acidic catalyst.
3. The method of claim 2 , wherein the acidic catalyst is selected from the group consisting of sulfuric acid, hydrochloric acid, phosphoric acid, toluenesulfonic acid, xylenesulfonic acid, benzenesulfonic acid, benzene disulfonic acid, phenol sulfonic acid, C1-C15 alkyl benzene sulfonic acid (such as p-methylbenzene sulfonic acid), naphthalene sulfonic acid, and oxalic acid, or their mixture.
4. The method of claim 1 , wherein the molar ratio of aldehyde-to-(alkyl phenol and second phenol) is from about 0.8:1 to about 1.2:1.
5. The method of claim 1 , wherein the aldehyde is selected from RCHO; and R is hydrogen or C1-C8 alkyl.
6. The method of claim 1 , wherein the second phenol is selected from the group consisting of phenol, m-dihydroxybenzene, and xylenol.
7. The method of claim 1 , wherein the reaction between phenol and the monoalkene is carried out in the presence of an alkylation catalyst; and the alkylation catalyst is an ion exchange resin or an activated clay-phosphoric acid.
8. The method of claim 1 , wherein the monoalkene is a monoalkene mixture.
9. The method of claim 1 , wherein the monoalkene consists essentially of C6-C12 monoalkenes.
10. The method of claim 1 , wherein the content of 2,4,4-trimethyl-1-pentene or 2,4,4-trimethyl-2-pentene in the monoalkene is from about 0% to about 85% w/w.
11. The method of claim 1 , further comprising the step of synthesizing the monoalkene.
12. The method of claim 11 , wherein the monoalkene is synthesized by nonselective polymerization.
13. The method of claim 12 , wherein the monoalkene comprises 2,2-dimethyl-3-hexene, 2,4,4-trimethyl-1-pentene, 2,4,4-trimethyl-2-pentene, 3-isopropyl-1-pentene, 4,4-dimethyl-2-hexene, 2-isopropyl-1-pentene, 3,4,4-trimethyl-2-pentene, 2,3-dimethyl-3-hexene, 3-isopropyl-2-pentene, cis-2,3-dimethyl-2-hexene, 2-ethyl-3-hexene, 2,3,4-trimethyl-2-pentene, 2-ethyl-1-hexene, 3-methyl-3-heptylene, cis-2,3-dimethyl-3-hexene, 3-ethyl-2-hexene, or trans-2,3-dimethyl-3-hexene.
14. The method of claim 1 , wherein the molar ratio of monoalkene-to-phenol is from about 2:1 to about 1.3:1.
15. The method of claim 1 , wherein the second phenol is present in a concentration from about 3.2% to about 10% by weight of the alkyl phenol mixture.