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由纳米石墨烯包覆的中空氧化铜构成的结构可调超粒子组装体。

Structure-tunable supraparticle assemblies of hollow cupric oxide sheathed with nanographenes.

作者信息

Gu Minsu, Lee Woo-Ram, Kim Minkyung, Kang Jiwoong, Lee Jae Sung, Thompson Levi T, Kim Byeong-Su

机构信息

Department of Chemistry, Yonsei University Seoul 03722 Korea

Department of Chemical Engineering, University of Michigan Ann Arbor Michigan 48109 USA.

出版信息

Nanoscale Adv. 2020 Feb 5;2(3):1236-1244. doi: 10.1039/d0na00031k. eCollection 2020 Mar 17.

Abstract

Self-assembled supraparticles (SPs), a secondary structure of clustered nanoparticles, have attracted considerable interest owing to their highly tunable structure, composition, and morphology from their primary nanoparticle constituents. In this study, hierarchically assembled hollow CuO SPs were prepared using a cationic polyelectrolyte poly(diallyl dimethylammonium chloride) (PDDA) during the formation of CuO nanoparticles. The concentration-dependent structural transformation of PDDA from linear chains to assembled droplets plays a crucial role in forming a hollow colloidal template, affording the self-assembly of CuO nanoparticles as a secondary surfactant. The use of the positively charged PDDA also affords negatively charged nanoscale graphene oxide (NGO), an electrical and mechanical supporter to uniformly coat the surface of the hollow CuO SPs. Subsequent thermal treatment to enhance the electrical conductivity of NGO within the NGO/CuO SPs allows for the concomitant phase transformation of CuO to CuO, affording reduced NGO/CuO (RNGO/CuO) SPs. The uniquely structured hollow RNGO/CuO SPs achieve improved electrochemical properties by providing enhanced electrical conductivity and electroactive surface area.

摘要

自组装超粒子(SPs)是聚集纳米粒子的二级结构,由于其由初级纳米粒子成分构成的高度可调结构、组成和形态,已引起了相当大的关注。在本研究中,在氧化铜纳米粒子形成过程中,使用阳离子聚电解质聚二烯丙基二甲基氯化铵(PDDA)制备了分层组装的中空氧化铜SPs。PDDA从线性链到组装液滴的浓度依赖性结构转变在形成中空胶体模板中起着关键作用,使氧化铜纳米粒子作为二级表面活性剂进行自组装。使用带正电荷的PDDA还能提供带负电荷的纳米级氧化石墨烯(NGO),它作为一种电气和机械支撑体,均匀地包覆在中空氧化铜SPs的表面。随后进行热处理以提高NGO在NGO/氧化铜SPs中的电导率,这使得氧化铜伴随相转变为氧化亚铜,从而得到还原的NGO/氧化铜(RNGO/氧化铜)SPs。这种结构独特的中空RNGO/氧化铜SPs通过提供增强的电导率和电活性表面积,实现了改善的电化学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f12/9419484/2754bb7ba7a8/d0na00031k-s1.jpg

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