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脂肪酸聚合物:聚(ω-羟基十四烷酸)的合成及物理机械性能研究。

Polymers from fatty acids: poly(ω-hydroxyl tetradecanoic acid) synthesis and physico-mechanical studies.

机构信息

NSF I/UCRC for Biocatalysis and Bioprocessing of Macromolecules, Department of Chemical and Biological Sciences, Polytechnic Institute of NYU, Six Metrotech Center, Brooklyn, New York 11201, United States.

出版信息

Biomacromolecules. 2011 Sep 12;12(9):3291-8. doi: 10.1021/bm2007554. Epub 2011 Aug 9.

Abstract

This Article describes the synthesis and physicomechanical properties of bioplastics prepared from methyl ω-hydroxytetradecanoic acid (Me-ω-OHC14), a new monomer available by a fermentation process using an engineered Candida tropicalis strain. Melt-condensation experiments were conducted using titanium tetraisopropoxide (TiOiPr) as a catalyst in a two-stage polymerization (2 h at 200 °C under N(2), 4 h at 220 °C under 0.1 mmHg). Poly(ω-hydroxytetradecanoate), P(ω-OHC14), M(w), determined by SEC-MALLS, increased from 53K to 110K as the Ti(OiPr)(4) concentration increased from 50 to 300 ppm. By varying the polymerization conditions (catalyst concentration, reaction time, second-stage reaction temperature) a series of P(ω-OHC14) samples were prepared with M(w) values from 53K to 140K. The synthesized polyesters with M(w) ranging from 53K to 140K were subjected to characterization by DSC, TGA, DMTA, and tensile testing. Influences of P(ω-OHC14) molecular weight, melting point, and enthalpies of melting/crystallization on material tensile properties were explored. Cold-drawing tensile tests at room temperature for P(ω-OHC14) with M(w) 53K-78K showed a brittle-to-ductile transition. In contrast, P(ω-OHC14) with M(w) 53K undergoes brittle fracture. Increasing P(ω-OHC14) M(w) above 78K resulted in a strain-hardening phenomena and tough properties with elongation at break ~700% and true tensile strength of ~50 MPa. Comparisons between high density polyethylene and P(ω-OHC14) mechanical and thermal properties as a function of their respective molecular weights are discussed.

摘要

本文描述了通过发酵工程利用工程化热带假丝酵母(Candida tropicalis)菌株获得的新型单体甲基 ω-羟基十四烷酸(Me-ω-OHC14)制备生物塑料的合成及物理机械性能。使用钛四异丙醇酯(TiOiPr)作为催化剂,在两段聚合反应(2 h 在 200°C 下通氮气,4 h 在 220°C 下 0.1 mmHg 下)中进行熔体缩聚实验。通过 SEC-MALLS 测定的聚(ω-羟基十四烷酸酯),P(ω-OHC14),重均分子量 M(w),随着 Ti(OiPr)(4)浓度从 50 ppm 增加到 300 ppm,从 53K 增加到 110K。通过改变聚合条件(催化剂浓度、反应时间、第二阶段反应温度),可以制备一系列 M(w)值从 53K 到 140K 的 P(ω-OHC14)样品。将 M(w)值范围从 53K 到 140K 的合成聚酯进行 DSC、TGA、DMTA 和拉伸测试。探讨了 P(ω-OHC14)分子量、熔点和熔融/结晶焓对材料拉伸性能的影响。对于 M(w)为 53K-78K 的 P(ω-OHC14),在室温下进行冷拉伸拉伸测试,显示出从脆性到韧性的转变。相比之下,M(w)为 53K 的 P(ω-OHC14)发生脆性断裂。将 P(ω-OHC14)的 M(w)提高到 78K 以上,会导致应变硬化现象和韧性,断裂伸长率为700%,真实拉伸强度为50 MPa。讨论了高密度聚乙烯和 P(ω-OHC14)机械和热性能与各自分子量的关系。

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