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The effect of molecular weight on thermal properties and degradation behavior of copolymers based on TMC and DTC

机译:基于TMC和DTC的分子量对分子热性能和降解行为的影响

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摘要

A series of copolymers [P (TMC-co-DTC)] with different molecular weights based on trimethylene carbonate (TMC) and 2, 2-dimethyltrimethylene carbonate (DTC) were synthesized via ring-opening copolymerization, by adjusting the amount of Sn(Oct))2. The thermal performance showed that the T_g and T_d of the obtained amorphous copolymer rose with the increase of molecular weight from 118 to 213 kDa. Then the in vitro enzymatic experiment was carried out in lipase solutions, it could be concluded that the higher the molecular weight, the faster the degradation rate of the P (TMC-co-DTC), which may be related to the stronger hydrophobicity of the high molecular weight sample. Furthermore, the degradation mechanism of P (TMC-co-DTC) was determined to be the surface erosion, due to the result of the unchanged molecular weight during the degradation period. The fact that polycarbonate copolymer produces no acidic compounds in the process of enzymatic degradation had also been confirmed. This study provides confirmation for adjusting the degradation behavior performance of polycarbonate materials by molecular weight to meet the needs of more abundant clinical applications.
机译:通过环开碳酸二甲基碳酸酯(TMC)和2,2-二甲基三亚甲基碳酸酯(DTC)的一系列共聚物[P(TMC-CO-DTC)]具有不同的分子量,通过调节SN的量( OCT))2。热性能表明,所得无定形共聚物的T_G和T_D随着分子量的增加,分子量为118至213kDa。然后在脂肪酶溶液中进行体外酶实验,可以得出结论,分子量越高,P(TMC-CO-DTC)的降解率越快,可能与较强的疏水性有关高分子量样品。此外,由于在降解期间不变的分子量的结果,将p(TMC-Co-DTC)的降解机制为表面侵蚀。还证实了聚碳酸酯共聚物在酶促降解过程中不产生酸性化合物的事实也得到了证实。本研究提供了通过分子量调节聚碳酸酯材料的降解行为性能的确认,以满足更丰富的临床应用的需求。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2020年第5期|109128.1-109128.8|共8页
  • 作者单位

    Center for Molecular Science and Engineering College of Science Northeastern University Shenyang 1)0819 China;

    NHC Key Laboratory of Reproductive Health and Medical Genetics (Liaoning Research Institute of Family Planning) China The Affiliated Reproductive Hospital of China Medical University China;

    NHC Key Laboratory of Reproductive Health and Medical Genetics (Liaoning Research Institute of Family Planning) China The Affiliated Reproductive Hospital of China Medical University China;

    Fujian Province University Engineering Research Center of Mindong She Medicine College of Chemistry and Materials Ningde Normal University China;

    Center for Molecular Science and Engineering College of Science Northeastern University Shenyang 1)0819 China;

    NHC Key Laboratory of Reproductive Health and Medical Genetics (Liaoning Research Institute of Family Planning) China The Affiliated Reproductive Hospital of China Medical University China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Copolymerization; Trimethylene carbonate; 2, 2'-dimethyltrimethylene carbonate; In vitro enzymatic degradation; Molecular weight;

    机译:共聚;碳酸三甲基碳酸酯;2,2'-二甲基三甲丙烯酸酯;体外酶促降解;分子量;

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