Yu Chengtao, Han Lili, Bao Jianna, Shan Guorong, Bao Yongzhong, Pan Pengju
State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University , 38 Zheda Road, Hangzhou 310027, China.
J Phys Chem B. 2016 Aug 18;120(32):8046-54. doi: 10.1021/acs.jpcb.6b06387. Epub 2016 Aug 4.
The effects of poly(vinylidene fluoride) (PVDF) on the crystallization kinetics, competing formations of homocrystallites (HCs) and stereocomplexes (SCs), polymorphic crystalline structure, and HC-to-SC crystalline reorganization of the poly(l-lactic acid)/poly(d-lactic acid) (PLLA/PDLA) racemic mixture were investigated. Even though the PLLA/PDLA/PVDF blends are immiscible, blending with PVDF enhances the crystallization rate and SC formation of PLLA/PDLA components at different temperatures that are higher or lower than the melting temperature of the PVDF component; it also facilitates the HC-to-SC melt reorganization upon heating. The crystallization rate and degree of SC crystallinity (Xc,SC) of PLLA/PDLA components in nonisothermal crystallization increase after immiscible blending with PVDF. At different isothermal crystallization temperatures, the crystallization half-time of PLLA/PDLA components decreases; its spherulitic growth rate and Xc,SC increase as the mass fraction of PVDF increases from 0 to 0.5 in the presence of either a solidified or a molten PVDF phase. The HCs formed in primary crystallization of PLLA/PDLA components melt and recrystallize into SCs upon heating; the HC-to-SC melt reorganization is promoted after blending with PVDF. We proposed that the PVDF-promoted crystallization, SC formation, and HC-to-SC melt reorganization of PLLA/PDLA components in PLLA/PDLA/PVDF blends stem from the enhanced diffusion ability of PLLA and PDLA chains.
研究了聚偏氟乙烯(PVDF)对聚(L-乳酸)/聚(D-乳酸)(PLLA/PDLA)外消旋混合物的结晶动力学、同系微晶(HCs)和立体络合物(SCs)的竞争形成、多晶型晶体结构以及HC到SC的晶体重排的影响。尽管PLLA/PDLA/PVDF共混物是不相容的,但与PVDF共混可提高PLLA/PDLA组分在高于或低于PVDF组分熔点的不同温度下的结晶速率和SC形成;它还促进了加热时HC到SC的熔体重排。与PVDF不相容共混后,PLLA/PDLA组分在非等温结晶中的结晶速率和SC结晶度(Xc,SC)增加。在不同的等温结晶温度下,PLLA/PDLA组分的结晶半衰期缩短;在存在固化或熔融PVDF相的情况下,随着PVDF质量分数从0增加到0.5,其球晶生长速率和Xc,SC增加。PLLA/PDLA组分初次结晶中形成的HCs在加热时熔融并重结晶为SCs;与PVDF共混后促进了HC到SC的熔体重排。我们认为,PVDF促进PLLA/PDLA/PVDF共混物中PLLA/PDLA组分的结晶、SC形成和HC到SC的熔体重排源于PLLA和PDLA链扩散能力的增强。