红外光谱在催化中的应用:对催化剂选择性的影响

P. Concepción
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引用次数: 2

摘要

催化作用在可持续化学中发挥着重要作用,通过最大限度地减少能源消耗和减少副产品的产生,使开发更有效的过程成为可能。高效催化剂的设计是这方面的一个关键点,其中光谱学在分子尺度上提供了基础知识。在不同的光谱中,红外光谱是最受关注的,它可以提供活性物质的性质和反应机理的信息,从而导致精确的构效关系,这是设计新催化剂的关键。此外,红外光谱还可以监测催化剂在工作条件下的动态行为,其中工作催化剂的结构修饰对催化有很强的影响。在本章中,将讨论与工业相关过程有关的有趣的例子,如费托合成、乙烯低聚、从硝基化合物合成苯胺以及醛肟脱水成腈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Infrared Spectroscopy in Catalysis: Impacts on Catalysts’ Selectivity
Catalysis plays an important role in sustainable chemistry, enabling the development of more efficient processes by minimizing the consumption of energy and reducing the generation of by-products. The design of efficient catalysts is a key point in this respect, where spectroscopy confers fundamental knowledge at the molecular scale. Among the different spectroscopies, infrared (IR) spectroscopy is of great interest, enabling information about the nature of active species and the reaction mechanism, leading to precise structure-activity correlations, which are a key point in the design of new catalysts. Moreover, the dynamic behavior of the catalysts under working conditions can be also monitored by IR spectroscopy, where structural modifications of working catalysts have strong repercussion in catalysis. In this chapter, interesting examples will be discussed, related to industrial relevant processes, like Fischer-Tropsch synthesis, ethylene oligomerization, synthesis of aniline from nitrocompounds, and the dehydration of aldoximes to nitriles.
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