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使用巴基纳米金刚石将伯醇高效且高选择性地无溶剂氧化为醛

Efficient and Highly Selective Solvent-Free Oxidation of Primary Alcohols to Aldehydes Using Bucky Nanodiamond.

作者信息

Lin Yangming, Wu Kuang-Hsu Tim, Yu Linhui, Heumann Saskia, Su Dang Sheng

机构信息

Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang, 110016, P.R. China.

School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, 230001, P.R. China.

出版信息

ChemSusChem. 2017 Sep 11;10(17):3497-3505. doi: 10.1002/cssc.201700968. Epub 2017 Aug 18.

Abstract

Selective oxidation of alcohols to aldehydes is widely applicable to the synthesis of various green chemicals. The poor chemoselectivity for complicated primary aldehydes over state-of-the-art metal-free or metal-based catalysts represents a major obstacle for industrial application. Bucky nanodiamond is a potential green catalyst that exhibits excellent chemoselectivity and cycling stability for the selective oxidation of primary alcohols in diverse structures (22 examples, including aromatic, substituted aromatic, unsaturated, heterocyclic, and linear chain alcohols) to their corresponding aldehydes. The results are comparable to reported transition-metal catalysts including conventional Pt/C and Ru/C catalysts for certain substrates under solvent-free conditions. The possible activation process of the oxidant and substrates by the surface oxygen groups and defect species are revealed with model catalysts, ex situ electrochemical measurements, and ex situ attenuated total reflectance. The zigzag edges of sp carbon planes are shown to play a key role in these reactions.

摘要

醇选择性氧化为醛在各种绿色化学品的合成中具有广泛的应用。对于复杂的伯醛,在最先进的无金属或金属基催化剂上的化学选择性较差,这是工业应用的一个主要障碍。巴基纳米金刚石是一种潜在的绿色催化剂,对于将各种结构的伯醇(22个例子,包括芳香族、取代芳香族、不饱和、杂环和直链醇)选择性氧化为相应的醛,它表现出优异的化学选择性和循环稳定性。在无溶剂条件下,对于某些底物,该结果与报道的过渡金属催化剂(包括传统的Pt/C和Ru/C催化剂)相当。通过模型催化剂、非原位电化学测量和非原位衰减全反射揭示了表面氧基团和缺陷物种对氧化剂和底物的可能活化过程。结果表明,sp碳平面的锯齿形边缘在这些反应中起关键作用。

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