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Synthesis of a Metal-Organic Framework Material, Iron Terephthalate, by Ultrasound, Microwave, and Conventional Electric Heating: A Kinetic Study

机译:超声,微波和常规电加热合成金属有机骨架材料对苯二甲酸铁的动力学研究

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摘要

A metal-organic framework material named MIL-53(Fe), iron terephthalate, has been synthesized sovo-thermally at a relatively low temperature by not only conventional electric (CE) heating, but also by irradiation under ultrasound (US) and microwave (MW) conditions to gain an understanding of the accelerated syntheses induced by US and MW The kinetics for nucleation and crystal growth were analyzed by measuring the crystallinity of MIL-53(Fe) under various conditions. The nucleation and crystal growth rates were estimated from crystallization curves of the change in crystallinity with reaction time. The activation energies and pre-exponential factors were calculated from Arrhenius plots. It was confirmed that the rate of crystallization (both nucleation and crystal growth) decreases in the order US > MW CE, and that the accelerated syntheses under US and MW conditions are due to increased pre-exponential factors rather than decreased activation energies. It is suggested that physical effects such as hot spots are more important than chemical effects in the accelerated syntheses induced by US and MW irradiation. The syntheses were also conducted in two steps to understand quantitatively the acceleration induced by MW and it was found that the acceleration in crystal growth is more important than the acceleration in nucleation, even though both processes are accelerated by MW irradiation.
机译:不仅通过传统的电(CE)加热,而且还通过超声(US)和微波辐射(MEI-53(Fe),对苯二甲酸铁)在相对较低的温度下热合成金属有机骨架材料。 MW)条件,以了解US和MW诱导的加速合成。通过测量各种条件下MIL-53(Fe)的结晶度,分析了成核和晶体生长的动力学。从结晶度随反应时间变化的结晶曲线估计成核和晶体生长速率。活化能和指数前因子是根据Arrhenius图计算得出的。证实结晶速率(成核和晶体生长)以US> MW CE的顺序降低,并且在US和MW条件下加速的合成是由于增加了前指数因子而不是降低了活化能。建议在由US和MW辐射诱导的加速合成中,诸如热点等物理效应比化学效应更为重要。还分两步进行了合成,以定量地了解由MW引起的加速度,并且发现尽管MW辐照加速了两个过程,但晶体生长的加速比成核的加速更为重要。

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