Maiorana Anthony, Spinella Stephen, Gross Richard A
New York State Center for Polymer Synthesis, Department of Chemistry and Chemical Biology, Rensselaer Polytechnic Institute , 110 Eighth Street, Troy, New York 12180, United States.
Biomacromolecules. 2015 Mar 9;16(3):1021-31. doi: 10.1021/acs.biomac.5b00014. Epub 2015 Feb 12.
A series of biobased epoxy monomers were prepared from diphenolic acid (DPA) by transforming the free acid into n-alkyl esters and the phenolic hydroxyl groups into diglycidyl ethers. NMR experiments confirmed that the diglycidyl ethers of diphenolates (DGEDP) with methyl and ethyl esters have 6 and 3 mol % of glycidyl ester. Increasing the chain length of DGEDP n-alkyl esters from methyl to n-pentyl resulted in large decreases in epoxy resin viscosity (700-to-11 Pa·s). Storage modulus of DPA epoxy resins, cured with isophorone diamine, also varied with n-alkyl ester chain length (e.g., 3300 and 2100 MPa for the methyl and n-pentyl esters). The alpha transition temperature of the cured materials showed a linear decrease from 158 to 86 °C as the ester length increases. The Young's modulus and tensile strengths were about 1150 and 40 MPa, respectively, for all the cured resins tested (including DGEBA) and varied little as a function of ester length. Degree of cure for the different epoxy resins, determined by FTIR and DSC, closely approached the theoretical maximum. The result of this work demonstrates that diglycidyl ethers of n-alkyl diphenolates represent a new family of biobased liquid epoxy resins that, when cured, have similar properties to those from DGEBA.
通过将二酚酸(DPA)中的游离酸转化为正烷基酯,并将酚羟基转化为二缩水甘油醚,制备了一系列生物基环氧单体。核磁共振实验证实,二酚酸酯(DGEDP)的甲基酯和乙酯的二缩水甘油醚含有6摩尔%和3摩尔%的缩水甘油酯。将DGEDP正烷基酯的链长从甲基增加到正戊基,导致环氧树脂粘度大幅降低(从700降至11 Pa·s)。用异佛尔酮二胺固化的DPA环氧树脂的储能模量也随正烷基酯链长而变化(例如,甲基酯和正戊基酯分别为3300和2100 MPa)。随着酯长度的增加,固化材料的α转变温度从158℃线性下降至86℃。所有测试的固化树脂(包括DGEBA)的杨氏模量和拉伸强度分别约为1150和40 MPa,并且随酯长度的变化很小。通过FTIR和DSC测定的不同环氧树脂的固化程度非常接近理论最大值。这项工作的结果表明,正烷基二酚酸酯的二缩水甘油醚代表了一类新型的生物基液体环氧树脂,固化后具有与DGEBA类似的性能。