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Synthesis of ultrathin WSe2 nanosheets and their high-performance catalysis for conversion of amines to imines

机译:合成的超薄WSe2 nanosheets和他们高性能催化转化胺亚胺,

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摘要

Tungsten diselenide (WSe2) is the material with the lowest thermal conductivity in the world. Most physical methods are used for the synthesis of tungsten diselenide. Here, a simple colloidal method is reported for the synthesis of WSe2 nanosheets. The composition, valence, size, morphology and properties of the samples were characterized and measured. Results showed that the obtained WSe2 nanosheets with a thickness of 0.7 nm had strong blue fluorescence. Significantly, the synthesized WSe2 nanosheets exhibited excellent catalytic activity for the aerobic coupling of amines to imines, with 100% yield under visible light irradiation and air atmosphere. As a photocatalyst, it exhibited excellent recyclability, and maintained a high yield after 5 cycles. It was found that this reaction could also happen in the presence of natural light by slightly extending the reaction time. Moreover, H2O was used as a solvent in the catalytic process, avoiding expensive and toxic organic solvents. This work provides an efficient, economical and sustainable process for the synthesis of imines and shows the great potential of WSe2 nanosheets as photocatalysts for organic synthesis.
机译:钨联硒化物(WSe2)的材料世界上最低的热导率。大多数物理方法用于合成钨联硒化物。据报道WSe2合成的方法nanosheets。形态和样本的属性特征和测量。获得的WSe2 nanosheets厚度0.7 nm有强烈的蓝色荧光。重要的是,合成WSe2 nanosheets表现出优秀的催化活性有氧运动耦合的胺亚胺,100%可见光照射下产生和空气的气氛。良好的可回收性,保持高屈服后5周期。也可能发生的反应自然光线稍微延长反应时间。催化过程,避免昂贵的和有毒的有机溶剂。高效、经济、可持续发展的过程亚胺的合成,显示了伟大的潜力WSe2 nanosheets作为催化剂有机合成。

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