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纳米级电沉积:尺寸控制与三维保形性。

Nanoscale electrodeposition: Dimension control and 3D conformality.

作者信息

Lee Sol A, Yang Jin Wook, Choi Sungkyun, Jang Ho Won

机构信息

Department of Materials Science and Engineering, Research Institute of Advanced Materials Seoul National University Seoul 08826 Republic of Korea.

Advanced Institute of Convergence Technology Seoul National University Suwon 16229 Republic of Korea.

出版信息

Exploration (Beijing). 2021 Nov 7;1(3):20210012. doi: 10.1002/EXP.20210012. eCollection 2021 Dec.

Abstract

Electrodeposition with a long history has been considered one of the important synthesis techniques for applying various applications. It is a feasible route for fabricating nanostructures using diverse materials due to its simplicity, cost-effectiveness, flexibility, and ease of reaction control. Herein, we mainly focus on the nanoscale electrodeposition with respect to dimension control and three-dimensional (3D) conformality. The principles of electrodeposition, dimensional design of materials, and uniform coatings on various substrates are presented. We introduce that manipulating synthesis parameters such as precursors, applied current/voltage, and additives affect the synthesis reaction, resulting in not only dimensional control of materials from three-dimensional structures to zero-dimensional atomic-level but also conformal coatings on complicated substrates. Various cases regarding morphology control of metal (hydro)oxides, metals, and metal-organic frameworks according to electrodeposition conditions are summarized. Lastly, recent studies of applications such as batteries, photoelectrodes, and electrocatalysts using electrodeposited materials are summarized. This review represents significant advances in the nanoscale design of materials through methodological approaches, which are highly attractive from both academic and commercial aspects.

摘要

具有悠久历史的电沉积被认为是一种用于各种应用的重要合成技术。由于其简单性、成本效益、灵活性和易于反应控制,它是使用多种材料制造纳米结构的可行途径。在此,我们主要关注纳米级电沉积在尺寸控制和三维(3D)保形性方面的问题。介绍了电沉积的原理、材料的尺寸设计以及在各种基板上的均匀涂层。我们介绍了操纵合成参数,如前驱体、施加的电流/电压和添加剂,会影响合成反应,不仅能实现从三维结构到零维原子级的材料尺寸控制,还能在复杂基板上形成保形涂层。总结了根据电沉积条件对金属(氢)氧化物、金属和金属有机框架进行形貌控制的各种情况。最后,总结了使用电沉积材料的电池、光电极和电催化剂等应用的最新研究。这篇综述通过方法学方法展示了材料纳米级设计的重大进展,从学术和商业角度来看都极具吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9684/10191033/acd8377bd841/EXP2-1-20210012-g011.jpg

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