Pan Pengju, Han Lili, Bao Jianna, Xie Qing, Shan Guorong, Bao Yongzhong
State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, 38 Zheda Road, Hangzhou 310027, P. R. China.
J Phys Chem B. 2015 May 28;119(21):6462-70. doi: 10.1021/acs.jpcb.5b03546. Epub 2015 May 14.
Competitive crystallization kinetics, polymorphic crystalline structure, and transition of poly(l-lactic acid)/poly(d-lactic acid) (PLLA/PDLA) racemic blends with a wide range of molecular weights (MWs) were symmetrically investigated. Stereocomplex (sc) crystallites are exclusively formed in the low-MW racemic blends. However, stereocomplexation is remarkably depressed, and homocrystallization becomes prevailing with increasing MWs of PLLA and PDLA. Suppressed stereocomplexation in high-MW (HMW) racemic blends is proposed to be due to the low chain diffusion ability and restricted intermolecular crystal nucleation/growth. Equilibrium melting point of sc crystallites first increases and then decreases as MW increases. Crystallinity and relative fraction of sc crystallites in racemic blends enhance with crystallization temperature (Tc), and the sc crystallites are merely formed at Tc > 170 °C because of their higher thermodynamic stability. In situ wide-angle X-ray diffraction (WAXD) analysis reveals that the stereocomplexation and homocrystallization are successive rather than completely simultaneous, and the stereocomplexation is preceding homocrystallization in isothermal crystallization of HMW racemic blends. Both initial crystalline structure of homocrystallites (hc) and MW influence the heating-induced hc-to-sc transition of HMW racemic blend drastically; the hc-to-sc transition becomes easier with decreasing Tc and MW. After crystallization at the same temperature, sc crystallites show smaller long period than their hc counterparts.
对具有广泛分子量(MW)的聚(L-乳酸)/聚(D-乳酸)(PLLA/PDLA)外消旋共混物的竞争结晶动力学、多晶型晶体结构和转变进行了对称研究。立体络合物(sc)微晶仅在低分子量外消旋共混物中形成。然而,随着PLLA和PDLA分子量的增加,立体络合作用明显受到抑制,均相成核变得占主导地位。高MW(HMW)外消旋共混物中立体络合作用的抑制被认为是由于链扩散能力低和分子间晶体成核/生长受限。sc微晶的平衡熔点随着MW的增加先升高后降低。外消旋共混物中sc微晶的结晶度和相对比例随结晶温度(Tc)的升高而增加,并且由于其较高的热力学稳定性,sc微晶仅在Tc>170°C时形成。原位广角X射线衍射(WAXD)分析表明,立体络合和均相成核是相继发生的,而不是完全同时发生的,并且在HMW外消旋共混物的等温结晶中,立体络合先于均相成核。均相成核微晶(hc)的初始晶体结构和MW都对HMW外消旋共混物的加热诱导hc-to-sc转变有显著影响;随着Tc和MW的降低,hc-to-sc转变变得更容易。在相同温度下结晶后,sc微晶的长周期比其hc对应物小。