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Dehydrogenation of pyrrolidine based liquid organic hydrogen carriers by an iridium pincer catalyst, an isothermal kinetic study

机译:铱夹钳催化剂对吡咯烷基液态有机氢载体的脱氢,等温动力学研究

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摘要

A previously known homogenous iridium POCOPtBu pincer catalyst and several pyrrolidine based liquid organic hydrogen carriers (LOHCs) were investigated under dehydrogenation conditions and analyzed in a pseudo first order kinetic fashion to determine various kinetic properties. Dehydrogenation onset temperatures (DOT) of 180, 160, and 140 degrees C; activation energies (EA) of 115, 142, and 166 (kJ/mol); and frequency factor (A) values of 3.56 x 10(8), 1.05 x 10(11), and 2.17 x 10(14) (s(-1)) were found for ethyl perhydro carbazole (EPHC, 2), methyl perhydro indole (MePHI, 3), and butyl pyrrolidine (BuPy, 4) respectively. The dehydrogenation onset temperatures correlate with collision frequency factors rather than the activation energies. This evidence suggests that it is a steric constraint approach of the LOHC rather than a barrier to C-H bond activation at the iridium center which limits the rate of reaction. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在脱氢条件下研究了先前已知的均相铱POCOPtBu夹钳催化剂和几种吡咯烷基液态有机氢载体(LOHC),并以拟一级动力学方式进行了分析,以确定各种动力学性质。脱氢起始温度(DOT)为180、160和140摄氏度; 115、142和166的活化能(EA)(kJ / mol);乙基过氢咔唑(EPHC,2)和甲基过氢的频率因子(A)值分别为3.56 x 10(8),1.05 x 10(11)和2.17 x 10(14)(s(-1))吲哚(MePHI,3)和丁基吡咯烷(BuPy,4)。脱氢起始温度与碰撞频率因子而不是活化能相关。该证据表明,这是LOHC的空间限制方法,而不是铱中心C-H键活化的障碍,它限制了反应速率。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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