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March 2, 2018Nature Communications352 citationsOpen Access

Cation vacancy stabilization of single-atomic-site Pt1/Ni(OH)x catalyst for diboration of alkynes and alkenes

JZJian ZhangXWXi WuWCWeng‐Chon Cheong

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Abstract

Abstract Development of single-atomic-site catalysts with high metal loading is highly desirable but proved to be very challenging. Although utilizing defects on supports to stabilize independent metal atoms has become a powerful method to fabricate single-atomic-site catalysts, little attention has been devoted to cation vacancy defects. Here we report a nickel hydroxide nanoboard with abundant Ni 2+ vacancy defects serving as the practical support to achieve a single-atomic-site Pt catalyst (Pt 1 /Ni(OH) x ) containing Pt up to 2.3 wt% just by a simple wet impregnation method. The Ni 2+ vacancies are found to have strong stabilizing effect of single-atomic Pt species, which is determined by X-ray absorption spectrometry analyses and density functional theory calculations. This Pt 1 /Ni(OH) x catalyst shows a high catalytic efficiency in diboration of a variety of alkynes and alkenes, yielding an overall turnover frequency value upon reaction completion for phenylacetylene of ~3000 h −1 , which is much higher than other reported heterogeneous catalysts.

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Cite This Study

Zhang et al. (2018) studied this question.

synapsesocial.com/papers/6a3264ff3cc83676ff5848a4https://doi.org/10.1038/s41467-018-03380-z
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