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Homogeneous vs. heterogeneous: mechanistic insights into iron group metal-catalyzed reductions from poisoning experiments

机译:同类和异类:机械铁集团金属催化见解减少从中毒实验

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摘要

Iron group metal catalysts constitute a promising alternative to well-established noble metal catalysts in reduction reactions. However, the development of effective 3d metal catalysts has largely been hampered by their distinct coordination properties, their higher lability toward ligand exchange, redox reactions, and rapid aggregation to larger particles. The facile transition from homogeneous to heterogeneous catalysts under reducing conditions has been a major challenge in method optimization and mechanistic understanding. While ex situ-analyses of catalyst derivatives can be achieved by various spectroscopic techniques, their results have only limited value for the different conditions, concentrations, and complex kinetics of a real catalytic system. On the other hand, in situ-tools usually require highly sophisticated setups aiming at the detection of fleeting intermediates. This review advocates the use of kinetic poisoning experiments which can be easily performed in a standard laboratory and enable the distinction between homotopic and heterotopic catalysis mechanisms.
机译:铁集团金属催化剂是一种很有前途的选择行之有效的贵金属催化剂的还原反应。发展有效的三维金属催化剂很大程度上阻碍了他们的不同协调性能,更高的不稳定性对配体交换,氧化还原反应,快速聚合到更大的粒子。从均匀过渡到异构催化剂在还原条件下了优化和重大挑战的方法机械的理解。催化剂的衍生品可以通过各种光谱技术,他们的研究结果仅有有限的值不同条件、浓度和复杂的动力学真正的催化体系。situ-tools通常需要高度复杂的设置针对短暂的检测中间体。动能中毒实验很容易在一个标准实验室和启用同伦和异位之间的区别催化机制。

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