首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Influence of the halide and exposed facets on the visible-light photoactivity of bismuth oxyhalides for selective aerobic oxidation of primary amines
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Influence of the halide and exposed facets on the visible-light photoactivity of bismuth oxyhalides for selective aerobic oxidation of primary amines

机译:卤化物和暴露面对氧化铋可见光染色的影响初级胺

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摘要

Bismuth oxyhalides BiOX (X= Cl, Br, I) are seldom applied as photocatalysts in organic synthesis. Herein, we investigated their potential for the aerobic oxidative coupling of benzylamine to N-benzylidenebenzylamine, as imines are important synthetic intermediates of pharmaceuticals and biologically active nitrogen-containing organic compounds. The influence of the halide and the exposed crystal facets on the photoactivity was investigated. BiOBr showed excellent photoactivity, surpassing BiOCI and BiOI, which have poor light absorption and oxidation ability, respectively. Three differently facetted BiOBr photocatalysts were synthesized. The {001}-facetted BiOBr exhibited higher intrinsic activity than the {010} or {110}-samples due to efficient charge separation. However, surface area plays an important role as reactions usually occur at the catalyst surface. Because of their much larger surface area, the solvothermally-synthesized BiOBr microspheres with {110}-dominant exposed facet showed the highest photooxidative activity, with 100% conversion and 100% selectivity to N-benzylidenebenzylamine after 14h visible light irradiation at room temperature using oxygen from atmospheric air. This work provides an economical, feasible, sustainable and green process for the synthesis of imines and illustrates the great potential of bismuth oxyhalides as photocatalysts for organic synthesis. (C) 2017 Elsevier B.V. All rights reserved.
机译:氧化铋生物氧化物(X = Cl,Br,I)很少施加为有机合成中的光催化剂。在此,我们研究了苄胺与N-苄基苄基胺的有氧氧化偶联的可能性,因为亚胺是药物和生物学活性氮的有机化合物的重要合成中间体。研究了卤化物和暴露的晶面对照相的影响。 BioBR分别显示出优异的光释放,越来越多的Bioci和BioI,分别具有差的光吸收和氧化能力。合成了三种不同的Facetted BioBR光催化剂。由于有效的电荷分离,{001} -facetted BioBR表现出比{010}或{110} -Samples更高的内在活动。然而,由于通常在催化剂表面发生反应,表面积起重要作用。由于其较大的表面积,具有{110} - 互外曝光的面部的溶剂热合成的BioBR微球显示出最高的光氧化活性,在使用氧气在室温下可见光照射后100%转化率和100%对N-苄基苄胺选择性的选择性来自大气空气。这项工作为亚胺的合成提供了经济,可行,可持续和绿色的过程,并说明了氧化铋作为用于有机合成的光催化剂的巨大潜力。 (c)2017 Elsevier B.v.保留所有权利。

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