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构建具有可调催化性能的分级纳米晶CuS“分支”的连续反应。

Consecutive Reaction to Construct Hierarchical Nanocrystalline CuS "Branch" with Tunable Catalysis Properties.

作者信息

Zhang Xiangdan, Yang Feifei, Cui Shizhong, Wei Wutao, Chen Weihua, Mi Liwei

机构信息

Center for Advanced Materials Research, Zhongyuan University of Technology, Zhengzhou, Henan 450007, P.R. China.

College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou, Henan 450001, P.R. China.

出版信息

Sci Rep. 2016 Jul 28;6:30604. doi: 10.1038/srep30604.

Abstract

New CuS nanocrystals with a 3D hierarchical branched structure are successfully synthesized through in situ consecutive reaction method with copper foam as template. The formation mechanism of the 3D hierarchical branched structure obtained from the secondary reaction is investigated by adjusting the reaction time. The morphology of CuS nanosheet arrays with the 3D hierarchical branched structure is changed through Cu(2+) exchange. In this method, the copper foam reacted completely, and the as-synthesized CuS@Cu9S5 nanocrystals are firmly grown on the surface of the 3D framework. This tunable morphology significantly influence the physical and chemical properties, particularly catalytic performance, of the materials. The as-obtained material of Cu@CuS-2 with the 3D hierarchical branched structure as catalyst for methylene blue degradation exhibits good catalytic performance than that of the material of Cu@CuS with 2D nanosheets in dark environment. Furthermore, the cation exchange between Cu and Cu(2+) indicates that Cu(2+) in wastewater could be absorbed by Cu@CuS-2 with the 3D hierarchical branched structure. The exchanged resultant of CuS@Cu9S5 retains its capability to degrade organic dyes. This in situ consecutive reaction method may have a significant impact on controlling the crystal growth direction of inorganic material.

摘要

以泡沫铜为模板,通过原位连续反应法成功合成了具有三维分级分支结构的新型硫化铜纳米晶体。通过调节反应时间,研究了二次反应得到的三维分级分支结构的形成机理。通过铜离子交换改变了具有三维分级分支结构的硫化铜纳米片阵列的形貌。在该方法中,泡沫铜完全反应,合成的硫化铜@硫化亚铜纳米晶体牢固地生长在三维框架表面。这种可调控的形貌显著影响了材料的物理和化学性质,特别是催化性能。所制备的具有三维分级分支结构的Cu@CuS-2材料作为亚甲基蓝降解催化剂,在黑暗环境中比具有二维纳米片的Cu@CuS材料表现出更好的催化性能。此外,铜与铜离子之间的阳离子交换表明,具有三维分级分支结构的Cu@CuS-2可以吸收废水中的铜离子。硫化铜@硫化亚铜的交换产物保留了其降解有机染料的能力。这种原位连续反应法可能对控制无机材料的晶体生长方向产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5635/4964342/50026bc7183d/srep30604-f1.jpg

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