含杂原子共轭聚合物牺牲析氢光催化循环的探索

Andrew W. Prentice, M. Zwijnenburg
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引用次数: 1

摘要

我们利用最近提出的光催化循环分析了含杂原子线性共轭聚合物的牺牲析氢光催化活性。我们发现,电子转移的热力学势垒,与贵金属共催化剂的存在和不存在有关,随着聚合物组成的变化而变化,从富电子聚合物到贫电子聚合物减少,并且在富水环境中对于大多数贫电子聚合物完全消失。我们讨论了后者可能是为什么电子贫乏的聚合物通常比电子丰富的聚合物更活跃的牺牲氢演化的原因。我们还研究了聚合物上氢键形成的屏障,而不是共催化剂,发现它也会随着组成而变化,但至少对于这里研究的聚合物来说,它总是比实验报道的铂大得多。因此,预计在任何贵金属粒子存在的情况下,这些粒子将作为氢演化的场所。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploration of the Photocatalytic Cycle for Sacrificial Hydrogen Evolution by Conjugated Polymers Containing Heteroatoms
We analyze the photocatalytic activity of heteroatom containing linear conjugated polymers for sacrificial hydrogen evolution using a recently proposed photocatalytic cycle. We find that the thermodynamic barrier to electron transfer, relevant both in the presence and absence of noble metal co-catalysts, changes with polymer composition, reducing upon going from electron-rich to electron-poor polymers, and disappearing completely for the most electron-poor polymers in a water rich environment. We discuss how the latter is probably the reason why electron-poor polymers are generally more active for sacrificial hydrogen evolution than their electron-rich counterparts. We also study the barrier to hydrogen-hydrogen bond formation on the polymer rather than the co-catalyst and find that it too changes with composition but is always, at least for the polymer studied here, much larger than that experimentally reported for platinum. Therefore, it is expected that in the presence of any noble metal particles these will act as the site of hydrogen evolution.
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