利用电子全息技术对催化纳米粒子进行高精度电荷分析。

Ryotaro Aso, Yoshihiro Midoh, Toshiaki Tanigaki, Yasukazu Murakami
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引用次数: 0

摘要

支撑金属催化剂的电荷状态是了解催化反应基本过程的关键。然而,在原子水平上对金属催化剂进行高精度电荷分析在实验上具有挑战性。为了应对这一重大挑战,最近成功应用高灵敏度电子全息技术精确测量了二氧化钛表面支撑的单个铂纳米粒子上的基本电荷。在这篇综述中,我们将介绍高精度电荷分析的最新进展,并讨论金属-支撑界面的电荷转移机制。电荷测量的发展正进入一个新时代,在更接近实际工作环境的条件下,如实时、真实空间和反应气体环境下的电荷分析有望在不久的将来实现。
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High-precision charge analysis in a catalytic nanoparticle by electron holography.

The charge state of supported metal catalysts is the key to understand the elementary processes involved in catalytic reactions. However, high-precision charge analysis of the metal catalysts at the atomic level is experimentally challenging. To address this critical challenge, high-sensitivity electron holography has recently been successfully applied for precisely measuring the elementary charges on individual platinum nanoparticles supported on a titanium dioxide surface. In this review, we introduce the latest advancements in high-precision charge analysis and discuss the mechanisms of charge transfer at the metal-support interface. The development of charge measurements is entering a new era, and charge analyses under conditions closer to practical working environments, such as real-time, real-space, and reactive gas environments, are expected to be realized in the near future.

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