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用于高效合成三唑的小尺寸氧化亚铜纳米立方体、八面体和八足体的直接形成。

Direct formation of small Cu2O nanocubes, octahedra, and octapods for efficient synthesis of triazoles.

作者信息

Tsai Ya-Huei, Chanda Kaushik, Chu Yi-Ting, Chiu Chun-Ya, Huang Michael H

机构信息

Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

Nanoscale. 2014 Aug 7;6(15):8704-9. doi: 10.1039/c4nr02076f.

Abstract

In most studies describing the preparation of Cu2O crystals of various morphologies, the particle sizes are normally hundreds of nanometers to micrometers due to rapid particle growth, so they are not exactly nanocrystals. Here we report surfactant-free formation of sub-100 nm Cu2O nanocrystals with systematic shape evolution from cubic to octahedral structures by preparing an aqueous mixture of Cu(OAc)2, NaOH, and N2H4 solution. Adjustment of the hydrazine volume enables the particle shape control. Uniform nanocubes and octahedra were synthesized with edge lengths of 37 and 67 nm, respectively. Novel Cu2O octapods with an edge length of 135 nm were also produced by mixing CuCl2 solution, SDS surfactant, NaOH solution, and NH2OH · HCl reductant solution. All of them are nearly the smallest Cu2O nanocrystals of the same shapes ever reported. These small cubes, octahedra, and octapods were employed as catalysts in the direct synthesis of 1,2,3-triazoles from the reaction of alkynes, organic halides, and NaN3 at 55 °C. All of them displayed high product yields in short reaction times. The octahedra enclosed by the {111} facets are the best catalysts, and can catalyze this cycloaddition reaction with high yields in just 2 h when different alkynes were used to make diverse triazole products. Hence, the small Cu2O particles provide time-saving, energy-efficient, and high product yield benefits to organocatalysis.

摘要

在大多数描述各种形貌的Cu2O晶体制备的研究中,由于粒子快速生长,其粒径通常为数百纳米至微米,因此它们并非严格意义上的纳米晶体。在此,我们报道了通过制备Cu(OAc)2、NaOH和N2H4溶液的水性混合物,无表面活性剂地形成亚100 nm的Cu2O纳米晶体,其形状从立方结构系统演变为八面体结构。通过调整肼的体积可实现粒子形状控制。分别合成了边长为37 nm和67 nm的均匀纳米立方体和八面体。通过混合CuCl2溶液、SDS表面活性剂、NaOH溶液和NH2OH·HCl还原溶液,还制备出了边长为135 nm 的新型Cu2O八足体。所有这些都是迄今报道的相同形状的最小的Cu2O纳米晶体。这些小立方体、八面体和八足体被用作在55℃下由炔烃、有机卤化物和NaN3反应直接合成1,2,3-三唑的催化剂。它们在短反应时间内均表现出高产物产率。由{111}面围成的八面体是最佳催化剂,当使用不同的炔烃制备各种三唑产物时,在仅2小时内就能以高产率催化这种环加成反应。因此,小尺寸的Cu2O颗粒为有机催化提供了节省时间、节能和高产物产率的优势。

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