首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Comparative Kinetic Study and Microwaves Non-Thermal Effects on the Formation of Poly(amic acid) 44′-(Hexafluoroisopropylidene)diphthalic Anhydride (6FDA) and 44′-(Hexafluoroisopropylidene)bis(p-phenyleneoxy)dianiline (BAPHF). Reaction Activated by Microwave Ultrasound and Conventional Heating
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Comparative Kinetic Study and Microwaves Non-Thermal Effects on the Formation of Poly(amic acid) 44′-(Hexafluoroisopropylidene)diphthalic Anhydride (6FDA) and 44′-(Hexafluoroisopropylidene)bis(p-phenyleneoxy)dianiline (BAPHF). Reaction Activated by Microwave Ultrasound and Conventional Heating

机译:形成聚酰胺酸44-(六氟异亚丙基)二邻苯二甲酸酐(6FDA)和44-(六氟异亚丙基)双(对苯氧基)二苯胺(BAPHF)的比较动力学研究和微波非热效应。微波超声波和常规加热激活的反应

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摘要

Green chemistry is the design of chemical processes that reduce or eliminate negative environmental impacts. The use and production of chemicals involve the reduction of waste products, non-toxic components, and improved efficiency. Green chemistry applies innovative scientific solutions in the use of new reagents, catalysts and non-classical modes of activation such as ultrasounds or microwaves. Kinetic behavior and non-thermal effect of poly(amic acid) synthesized from (6FDA) dianhydride and (BAPHF) diamine in a low microwave absorbing p-dioxane solvent at low temperature of 30, 50, 70 °C were studied, under conventional heating (CH), microwave (MW) and ultrasound irradiation (US). Results show that the polycondensation rate decreases (MW > US > CH) and that the increased rates observed with US and MW are due to decreased activation energies of the Arrhenius equation. Rate constant for a chemical process activated by conventional heating declines proportionally as the induction time increases, however, this behavior is not observed under microwave and ultrasound activation. We can say that in addition to the thermal microwave effect, a non-thermal microwave effect is present in the system.
机译:绿色化学是旨在减少或消除负面环境影响的化学过程的设计。化学品的使用和生产涉及减少废物,无毒成分和提高效率。绿色化学在使用新试剂,催化剂和非经典活化模式(例如超声波或微波)的过程中采用了创新的科学解决方案。在常规加热条件下,研究了由(6FDA)二酐和(BAPHF)二胺合成的聚酰胺酸在低微波吸收对二恶烷溶剂中的低温,30、50、70°C下的动力学行为和非热效应。 (CH),微波(MW)和超声辐射(US)。结果表明,缩聚率降低(MW> US> CH),US和MW的升高速率是由于Arrhenius方程的活化能降低所致。通过常规加热激活的化学过程的速率常数随诱导时间的增加而成比例地下降,但是,在微波和超声激活下未观察到此行为。可以说,除了热微波效应之外,系统中还存在非热微波效应。

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