首页> 美国卫生研究院文献>ACS AuthorChoice >Switching from Controlled Ring-Opening Polymerization(cROP) to Controlled Ring-Closing Depolymerization (cRCDP) by Adjustingthe Reaction Parameters That Determine the Ceiling Temperature
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Switching from Controlled Ring-Opening Polymerization(cROP) to Controlled Ring-Closing Depolymerization (cRCDP) by Adjustingthe Reaction Parameters That Determine the Ceiling Temperature

机译:从控制的开环聚合切换(cROP)通过调节来控制闭环解聚(cRCDP)确定最高温度的反应参数

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摘要

Full control over the ceiling temperature (Tc) enables a selective transition between the monomeric and polymeric state. This is exemplified by the conversion of the monomer 2-allyloxymethyl-2-ethyl-trimethylene carbonate (AOMEC) to poly(AOMEC) and back to AOMEC within 10 h by controlling the reaction from conditions that favor ring-opening polymerization (Tc > T0) (where T0 is the reaction temperature) to conditions that favor ring-closing depolymerization (Tc < T0). The ring-closing depolymerization (RCDP) mirrors the polymerization behavior with a clear relation between the monomer concentration and the molecular weight of the polymer, indicating that RCDP occurs at the chain end. The Tc of the polymerization system is highly dependent on the nature of the solvent, for example, in toluene, the Tc of AOMEC is 234 °C and in acetonitrile Tc = 142 °C at the same initial monomer concentration of 2 M. The control over the monomer to polymer equilibrium sets new standards for the selective degradation of polymers, the controlled release of active components, monomer synthesis and material recycling. In particular, the knowledge of the monomer to polymer equilibrium of polymers in solution under selected environmental conditions is of paramount importance for in vivo applications, where the polymerchain is subjected to both high dilution and a high polarity mediumin the presence of catalysts, that is, very different conditions fromwhich the polymer was formed.
机译:完全控制最高温度(Tc)可以在单体状态和聚合状态之间进行选择性转换。这可以通过在有利于开环聚合的条件下控制反应(Tc> T0)在10小时内将单体2-烯丙氧基甲基-2-乙基-三亚甲基碳酸酯(AOMEC)转化为聚(AOMEC)并返回AOMEC来举例说明(其中T0是反应温度)达到有利于闭环解聚的条件(Tc

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