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迁移:HCl 氧化 Au(0)的一个被忽视的潜在贡献。

Migration: A Neglected Potential Contribution of HCl-Oxidized Au(0).

机构信息

School of Chemical Engineering, Northeast Electric Power University, Jilin 132012, China.

Industrial Catalysis Institute, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Molecules. 2023 Feb 7;28(4):1600. doi: 10.3390/molecules28041600.

Abstract

In this study, the typical oxidation process of Au/C catalysts exposed to HCl is presented. Although the process violates the standard electrode potentials, the "oxidized" tendency of Au(0) species is analyzed. This oxidation behavior can only be triggered over the Au/C sample within residual cationic Au species, and terminated over the completely metallic Au(0)/C sample. This study demonstrates that the presence of surface chlorination species cannot facilitate the oxidation of Au(0) and Au(I) when the sample is treated with HCl alone, which excludes the oxidation paths of: Au(0) → Au(III) and Au(I) → Au(III). The reported "HCl-oxidized Au(0)" behavior is partially caused by the migration of Au(III) species in the carbon bulk-phase, which occurs outside the XPS detection limit region and into the detection limit rather than the "HCl-oxidized Au(0)" itself. The mechanism of driving the bulk-phase Au(III) migrated from the steady destabilized state to the carbon surface is then studied. This study demonstrates that the migration of Au cannot be neglected behind the curious oxidation phenomenon by HCl, which provides a new perspective for the oxidation of other noble metals by HCl.

摘要

在本研究中,呈现了暴露于 HCl 时 Au/C 催化剂的典型氧化过程。尽管该过程违反了标准电极电位,但分析了 Au(0)物种的“氧化”倾向。这种氧化行为仅能在存在残余阳离子 Au 物种的 Au/C 样品上触发,并在完全金属化的 Au(0)/C 样品上终止。本研究表明,当单独用 HCl 处理样品时,表面氯化物种的存在并不能促进 Au(0)和 Au(I)的氧化,从而排除了以下氧化途径:Au(0)→Au(III)和 Au(I)→Au(III)。所报道的“HCl 氧化的 Au(0)”行为部分是由碳体相中的 Au(III)物种迁移引起的,这种迁移发生在 XPS 检测限区域之外,进入检测限区域,而不是“HCl 氧化的 Au(0)”本身。然后研究了驱动来自稳定非稳定状态的体相 Au(III)迁移到碳表面的机制。本研究表明,在 HCl 引起的奇异氧化现象背后,Au 的迁移不能被忽视,这为 HCl 氧化其他贵金属提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2bb/9964448/99aa008accb1/molecules-28-01600-g001.jpg

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