Liu Juzhe, Hao Rui, Jia Binbin, Zhao Hewei, Guo Lin
Beijing Advanced Innovation Center for Biomedical Engineering, Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology, School of Chemistry, Beihang University, Beijing 100191, China.
School of Physics, Beihang University, Beijing 100191, China.
Nanomaterials (Basel). 2021 Nov 29;11(12):3246. doi: 10.3390/nano11123246.
Low-carbon society is calling for advanced electrochemical energy storage and conversion systems and techniques, in which functional electrode materials are a core factor. As a new member of the material family, two-dimensional amorphous nanomaterials (2D ANMs) are booming gradually and show promising application prospects in electrochemical fields for extended specific surface area, abundant active sites, tunable electron states, and faster ion transport capacity. Specifically, their flexible structures provide significant adjustment room that allows readily and desirable modification. Recent advances have witnessed omnifarious manipulation means on 2D ANMs for enhanced electrochemical performance. Here, this review is devoted to collecting and summarizing the manipulation strategies of 2D ANMs in terms of component interaction and geometric configuration design, expecting to promote the controllable development of such a new class of nanomaterial. Our view covers the 2D ANMs applied in electrochemical fields, including battery, supercapacitor, and electrocatalysis, meanwhile we also clarify the relationship between manipulation manner and beneficial effect on electrochemical properties. Finally, we conclude the review with our personal insights and provide an outlook for more effective manipulation ways on functional and practical 2D ANMs.
低碳社会需要先进的电化学储能和转换系统及技术,其中功能电极材料是核心要素。作为材料家族的新成员,二维非晶态纳米材料(2D ANMs)正逐渐蓬勃发展,并在电化学领域展现出广阔的应用前景,这得益于其较大的比表面积、丰富的活性位点、可调控的电子态以及更快的离子传输能力。具体而言,它们的柔性结构提供了显著的调控空间,便于进行灵活且理想的修饰。最近的进展表明,针对二维非晶态纳米材料存在各种用于增强电化学性能的操控手段。在此,本综述致力于从成分相互作用和几何构型设计方面收集和总结二维非晶态纳米材料的操控策略,期望推动这类新型纳米材料的可控发展。我们的观点涵盖了应用于电化学领域的二维非晶态纳米材料,包括电池、超级电容器和电催化,同时我们也阐明了操控方式与对电化学性能有益效果之间的关系。最后,我们以个人见解总结本综述,并对功能化和实用化二维非晶态纳米材料更有效的操控方式进行展望。