4.7 Article

Enhanced Nonisothermal Crystallization and Heat Resistance of Poly(-lactic acid) by D-Sorbitol as a Homogeneous Nucleating Agent

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ACS MACRO LETTERS
卷 10, 期 1, 页码 154-160

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AMER CHEMICAL SOC
DOI: 10.1021/acsmacrolett.0c00830

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  1. National Natural Science Foundation of China [51473007]

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Using D-sorbitol as a nucleating agent via melt blending can enhance the crystallization and heat resistance of Poly(L-lactic acid) (PLLA), with the crystallinity exceeding 50% and the heat deflection temperature elevated from 56 to 132 degrees C. The presence of polymorphic crystals during melt crystallization suggests that D-sorbitol promotes PLLA crystallization via a homogeneous nucleation mechanism.
We report on enhancing crystallization and heat resistance of poly(L-lactic acid) (PLLA) by D-sorbitol as a small molecule nucleating agent via melt blending. During the reheating process, the cold crystallization disappeared and the crystallinity of nucleated PLLA exceeded 50%. The heat deflection temperature of PLLA was elevated from 56 to 132 degrees C by simply increasing the mold temperature (90 degrees C) without an additional annealing treatment. We also observed the polymorphic crystals of PLLA during melt crystallization, i.e., the coexistence of hexagonal and lenticular crystals, along with their various geometrical aggregates in addition to plenty of conventional spherulites. On the basis of the fact that the nonisothermal crystallization temperature of PLLA (110 degrees C at a cooling rate of 10 degrees C/min) was higher than the melting point of d-sorbitol (about 93 degrees C), we speculated that d-sorbitol promoted the crystallization of PLLA through a homogeneous nucleation mechanism.

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