Ling Yang, Roland Grzeschik, Sebastian Schlücker, Wei Xie
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引用次数: 0
Abstract
Contact electrification (CE) is an emerging strategy for controlling the performance of metal nanoparticle (NP) catalysts. The underlying physical principle of this control is the sensitivity of the Fermi level to metal-metal contacts. This change in electronic structure has a direct impact on surface properties and chemical reactivity. The concept article briefly introduces the basic theory of CE and its relationship to catalytic performance. We then highlight selected recent examples of advances in the preparation of hybrid metal NP assemblies, experimental techniques for characterizing CE, and finally applications of CE for altering catalytic performance.
接触电化(CE)是一种控制金属纳米粒子(NP)催化剂性能的新兴策略。这种控制的基本物理原理是费米级对金属-金属接触的敏感性。电子结构的这种变化直接影响到表面特性和化学反应活性。这篇概念文章简要介绍了 CE 的基本理论及其与催化性能的关系。然后,我们将重点介绍在制备混合金属 NP 组合物方面取得的最新进展、表征 CE 的实验技术以及 CE 在改变催化性能方面的应用。
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