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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of high-molecular-weight poly(L-lactic acid)-based polymers through direct condensation polymerization in bulk state
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Preparation of high-molecular-weight poly(L-lactic acid)-based polymers through direct condensation polymerization in bulk state

机译:本体状态下直接缩聚制备高分子量聚(L-乳酸)基聚合物

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Poly(L-lactic acid-co-succinic acid-co-1,4-butanediol) (PLASB) was synthesized by a direct condensation copolymerization of L-lactic acid, succinic acid (SA), and 1,4-butanediol (BD) in bulk state using titanium(TV) butoxide (TNBT) as a catalyst. Weight average molecular weight (M-w) of PLASB increased from 3.5 X 10(4) to 2.1 X 10(5) as the content of SA and BD went up from 0.01 to 0.5 mol/100 mol Of L-lactic acid (LA). PLASB having M., in the range from 1.8 X 10(5) to 2.1 X 10(5) showed tensile properties comparable to those of commercially available poly(L-lactic acid) (PLLA). In sharp contrast, homopolymerization of LA in bulk state produced PLLA with M-w as low as 4.1 X 10(4), and it was too brittle to prepare specimens for the tensile tests. M-w of PLASB synthesized by using titanium(IV)-2-ethyl(hexoxide), indium acetate, indium hydroxide, antimony acetate, antimony trioxide, dibutyl tin oxide, and stannous-2-ethyl 1-hexanoate was compared with that of PLASB obtained by TNBT. Ethylene glycol oligomers with different chain length were added to LA/SA in place of BD to investigate effect of chain length of ethylene glycol oligomers on the M-w of the resulting copolymers. Biodegradability of PLASB was analyzed by using the modified Sturm test. Toxicity of PLASB was evaluated by counting viable cell number of mouse fibroblast cells that had been in contact with PLASB discs. (c) 2006 Wiley Periodicals, Inc.
机译:聚(L-乳酸-共琥珀酸-co-1,4-丁二醇)(PLASB)是通过L-乳酸,琥珀酸(SA)和1,4-丁二醇(BD)的直接缩聚而合成的),以丁醇(TV)丁氧化物(TNBT)作为催化剂。随着SA和BD含量从0.01 mol / 100 mol L-乳酸(LA)升高,PLASB的重均分子量(M-w)从3.5 X 10(4)增加到2.1 X 10(5)。 M.在1.8×10(5)至2.1×10(5)的范围内的PLASB显示出可与市售聚(L-乳酸)(PLLA)相比的拉伸性能。与之形成鲜明对比的是,本体状态的LA均聚产生的PLLA的M-w低至4.1 X 10(4),而且太脆了,无法为拉伸试验准备试样。将通过使用钛(IV)-2-乙基(己氧基),乙酸铟,氢氧化铟,乙酸锑,三氧化锑,二丁基氧化锡和亚乙基-2-己酸亚锡合成的PLASB的Mw与获得的PLASB进行比较由TNBT。将具有不同链长的乙二醇低聚物代替BD添加到LA / SA中,以研究乙二醇低聚物的链长对所得共聚物的M-w的影响。通过使用改良的Sturm试验分析PLASB的生物降解性。通过计算已经与PLASB椎间盘接触的小鼠成纤维细胞的活细胞数来评估PLASB的毒性。 (c)2006年Wiley Periodicals,Inc.

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