详细信息

多支化聚乳酸的制备及其对聚乳酸结晶效果的影响    

Preparation of Multi-Branched Poly(L-Lactic Acid) as Nucleating Agent and Its Effect on Crystallization of Poly(Lactic Acid)

文献类型:期刊文献

中文题名:多支化聚乳酸的制备及其对聚乳酸结晶效果的影响

英文题名:Preparation of Multi-Branched Poly(L-Lactic Acid) as Nucleating Agent and Its Effect on Crystallization of Poly(Lactic Acid)

作者:韩婷[1];辛忠[2];石尧麒[1,3];蒋晓峰[1];孟鑫[1];赵世成[1]

机构:[1]上海市多相结构材料化学工程重点实验室华东理工大学化工学院,上海200237;[2]化学工程联合国家重点实验室华东理工大学,上海200237;[3]上海市聚烯烃催化技术重点实验室上海化工研究院,上海200062

年份:2015

卷号:44

期号:10

起止页码:1205

中文期刊名:石油化工

外文期刊名:Petrochemical Technology

收录:CSTPCD;;Scopus;北大核心:【北大核心2014】;CSCD:【CSCD2015_2016】;

基金:国家自然科学基金项目(U1162110;21306047;21476085);中央高校基础研究基金项目(WA1314051;WA121405)

语种:中文

中文关键词:聚环氧基倍半硅氧烷;丙交酯;多支化聚乳酸;聚乳酸;成核剂;结晶

外文关键词:poly(epoxypropoxy) silsesquioxane; lactide; multi-branched poly(L-lactic acid); poly(lactic acid); nucleating agent; crystallization

摘要:采用水解-缩聚两步法制备聚环氧基倍半硅氧烷微球(PESQ),以其为支化核心,通过辛酸亚锡催化丙交酯在熔融态开环形成支链制备多支化聚乳酸(m-PLLA),利用FTIR,1H NMR,GPC等方法表征m-PLLA的结构。表征结果表明,聚乳酸(PLA)成功接枝到PESQ上,且随丙交酯添加量的增加,m-PLLA先增加支链长度,后增加支链数目,最后支链长度和数目同时增加。考察了m-PLLA作为成核剂对PLA结晶过程的影响。实验结果表明,添加1.0%(w)的m-PLLA10时,PLA的冷结晶温度从121.2℃降至113.4℃,结晶度从15.7%升至31.1%,平均球晶直径从100μm细化至15μm,优于添加等量滑石粉的PLA。
Poly(epoxypropoxy) silsesquioxane(PESQ) particles with reactive groups was prepared through hydrolysis-polycondensation, and then multi-branched poly(L-lactic acid)(m-PLLA) was prepared by melting ring-opening of lactide with PESQ as the branching core and stannous octanoate as the catalyst, m-PLLA was characterized by means of FTIR, ^1H NMR and GPC. The results showed that poly(lactic acid)(PLA) was grafted to PESQ successfully. With increasing the lactide dosage, the length of the branched chains of m-PLLA first increased, and then their number increased, finally both the length and the number increased at the same time. The effects of m-PLLA as a nucleating agent on the crystallization of PLA were investigated. Compared to neat PLA, when 1.0%(w) m-PLLA10 was added, the cold crystallization temperature of PLA decreased from 121.2 ℃ to 113.4 ℃, its crystallinity increased from 15.7% to 31.1%, and its average spherulite diameter decreased from 100 μm to 15 μm.

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