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具有梳状拓扑结构的醋酸纤维素-g-聚(乳酸)对映体共混物中的优先立体复合结晶

Preferential Stereocomplex Crystallization in Enantiomeric Blends of Cellulose Acetate-g-Poly(lactic acid)s with Comblike Topology.

作者信息

Bao Jianna, Han Lili, Shan Guorong, Bao Yongzhong, Pan Pengju

机构信息

State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University , 38 Zheda Road, Hangzhou 310027, China.

出版信息

J Phys Chem B. 2015 Oct 1;119(39):12689-98. doi: 10.1021/acs.jpcb.5b05398. Epub 2015 Sep 18.

Abstract

Although stereocomplex (sc) crystallization is highly effective for improving the thermal resistance of poly(lactic acid) (PLA), it is much less predominant than homocrystallization in high-molecular-weight (HMW) poly(l-lactic acid)/ poly(d-lactic acid) (PLLA/PDLA) racemic blends. In this contribution, the sc crystallization of HMW PLLA/PDLA racemic blends was facilitated by using comblike PLAs with cellulose acetate as the backbone. Competing crystallization kinetics, polymorphic crystalline structure, and structural transition of comblike PLLA/PDLA blends with a wide range of MWs were investigated and compared with the corresponding linear/comblike and linear blends. The HMW comblike blend is preferentially crystallized in sc polymorphs and exhibits a faster crystallization rate than does the corresponding linear blend. The sc crystallites are predominantly formed in nonisothermal cold crystallization and isothermal crystallization at temperatures above 120 °C for the comblike blends. Except for the facilitated sc formation in primary crystallization, synchrotron radiation WAXD analysis indicates that the presence of a comblike component also facilitates the transition or recrystallization from homocrystallite (hc) to sc crystallite upon heating. Preferential sc formation of comblike blends is probably attributable to the favorable interdigitation between enantiomeric branches and the increased mobility of polymer segments. After crystallization under the same temperature, the comblike blends, which mainly contain sc crystallites, show smaller long periods and thinner crystalline lamellae than do the corresponding PLLA with homocrystalline structures.

摘要

尽管立体络合物(sc)结晶对于提高聚乳酸(PLA)的耐热性非常有效,但在高分子量(HMW)聚(L-乳酸)/聚(D-乳酸)(PLLA/PDLA)外消旋共混物中,它比均相成核结晶的主导性要小得多。在本论文中,通过使用以醋酸纤维素为骨架的梳状聚乳酸来促进HMW PLLA/PDLA外消旋共混物的sc结晶。研究了具有广泛分子量的梳状PLLA/PDLA共混物的竞争结晶动力学、多晶型晶体结构和结构转变,并与相应的线性/梳状和线性共混物进行了比较。HMW梳状共混物优先以sc多晶型结晶,并且比相应的线性共混物表现出更快的结晶速率。对于梳状共混物,sc微晶主要在120℃以上的非等温冷结晶和等温结晶中形成。除了在初次结晶中促进sc形成外,同步辐射广角X射线衍射(WAXD)分析表明,梳状组分的存在还促进了加热时从均相微晶(hc)到sc微晶的转变或再结晶。梳状共混物优先形成sc可能归因于对映体支链之间有利的相互穿插以及聚合物链段迁移率的增加。在相同温度下结晶后,主要包含sc微晶的梳状共混物比具有均相晶体结构的相应PLLA显示出更小的长周期和更薄的结晶片层。

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