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Interfacial charge distributions in carbon-supported palladium catalysts

机译:碳载钯催化剂中的界面电荷分布

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摘要

Controlling the charge transfer between a semiconducting catalyst carrier and the supported transition metal active phase represents an elite strategy for fine turning the electronic structure of the catalytic centers, hence their activity and selectivity. These phenomena have been theoretically and experimentally elucidated for oxide supports but remain poorly understood for carbons due to their complex nanoscale structure. Here, we combine advanced spectroscopy and microscopy on model Pd/C samples to decouple the electronic and surface chemistry effects on catalytic performance. Our investigations reveal trends between the charge distribution at the palladium–carbon interface and the metal’s selectivity for hydrogenation of multifunctional chemicals. These electronic effects are strong enough to affect the performance of large (~5 nm) Pd particles. Our results also demonstrate how simple thermal treatments can be used to tune the interfacial charge distribution, hereby providing a strategy to rationally design carbon-supported catalysts.
机译:控制半导体催化剂载体和负载的过渡金属活性相之间的电荷转移代表了一种精妙的策略,可以精细地改变催化中心的电子结构,从而改善其活性和选择性。这些现象在理论上和实验上已被氧化物载体阐明,但由于碳的复杂纳米级结构,对碳仍知之甚少。在这里,我们将先进的光谱学和显微技术结合起来用于模型的Pd / C样品,以消除电子和表面化学对催化性能的影响。我们的研究揭示了钯碳界面上的电荷分布与金属对多功能化学品加氢的选择性之间的趋势。这些电子效应足以影响大(〜5?nm)Pd颗粒的性能。我们的结果还证明了如何使用简单的热处理来调整界面电荷分布,从而为合理设计碳载催化剂提供了一种策略。

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