School of Chemistry & Chemical Engineering, Anhui Province Key Laboratory of Chemistry for Inorganic/Organic Hybrid Functionalized Materials, Anhui University, Hefei, Anhui 230601, PR China.
Nanoscale. 2018 Nov 8;10(43):20266-20271. doi: 10.1039/c8nr05954c.
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.
二硒化钨(WSe2)是世界上热导率最低的材料。大多数物理方法都被用于合成二硒化钨。在这里,我们报道了一种简单的胶体方法来合成 WSe2 纳米片。对样品的组成、价态、尺寸、形貌和性能进行了表征和测量。结果表明,所获得的厚度为 0.7nm 的 WSe2 纳米片具有很强的蓝色荧光。值得注意的是,所合成的 WSe2 纳米片在有氧条件下对胺类到亚胺类的偶联反应具有优异的催化活性,在可见光照射和空气气氛下产率为 100%。作为光催化剂,它表现出优异的可循环性,在 5 次循环后仍保持高收率。研究发现,通过略微延长反应时间,该反应在自然光存在下也能发生。此外,在催化过程中使用 H2O 作为溶剂,避免了昂贵和有毒的有机溶剂。这项工作为亚胺的合成提供了一种高效、经济和可持续的方法,并展示了 WSe2 纳米片作为有机合成光催化剂的巨大潜力。