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A concise review on microwave-assisted polycondensation reactions and curing of polycondensation polymers with focus on the effect of process conditions

机译:关于微波辅助缩聚反应和缩聚聚合物固化的简要综述,重点关注工艺条件的影响

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During the past 15 years, increasing application of microwave heating to polycondensation reactions has been witnessed. Experiments have been carried out at laboratory scale using widely different experimental procedures. The use of microwaves has often led to significant benefits compared to conventional heating experiments in terms of multi-fold decrease in reaction times and energy consumption and production of polymers with increased molecular weight and improved mechanical properties. In other cases, microwaves do not appear to produce any significant benefits compared to conventional heating. At present, guidelines to experimentalist as to the process conditions and experimental design that should be applied are missing and experimentation seems to be based on an empirical trial-and-error approach. In view of the very different experimental protocols that have been applied and the contradictory trends that are frequently reported, we aim in this review to shed light on the role of important process parameters, such as the presence and type of solvent, the dielectric properties of the mixture and the individual phases, the use of heterogeneous catalysts, pressure, stirring, reflux conditions, temperature measurement method and microwave absorbing fillers, which all seem to determine the occurrence and magnitude of the benefits enabled by microwaves during polycondensation reactions. (C) 2014 Elsevier B.V. All rights reserved.
机译:在过去的15年中,目睹了微波加热在缩聚反应中的越来越多的应用。实验已在实验室范围内使用广泛不同的实验程序进行。与传统的加热实验相比,微波的使用通常带来了显着的好处,即反应时间和能耗降低了许多倍,并且生产了分子量增加和机械性能提高的聚合物。在其他情况下,与常规加热相比,微波似乎没有产生任何明显的好处。目前,缺少针对实验人员的有关工艺条件和应采用的实验设计的指南,并且实验似乎是基于经验的试错法。鉴于已经应用了非常不同的实验方案以及经常报道的矛盾趋势,我们在本综述中的目的是阐明重要工艺参数的作用,例如溶剂的存在和类型,溶剂的介电性能混合物和各个相,非均相催化剂的使用,压力,搅拌,回流条件,温度测量方法和微波吸收填料,这些因素似乎都决定了微波在缩聚反应中产生的好处和程度。 (C)2014 Elsevier B.V.保留所有权利。

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