材料科学
纳米结构
碳热反应
纳米技术
石墨烯
透射电子显微镜
原位
扩散
化学物理
化学反应
相(物质)
氧化物
相变
化学工程
化学
热力学
有机化学
工程类
物理
冶金
作者
Jialin Zhang,Yuan Ji,Huating Liu,Ningyan Cheng,Siqi Guo,Ming Yang,Long Ren,Binghui Ge
出处
期刊:Small
[Wiley]
日期:2023-01-06
卷期号:19 (15)
被引量:1
标识
DOI:10.1002/smll.202206404
摘要
Atomic understanding of a chemical reaction can realize the programmable design and synthesis of desired products with specific compositions and structures. Through directly monitoring the phase transition and tracking the dynamic evolution of atoms in a chemical reaction, in situ transmission electron microscopy (TEM) techniques offer the feasibility of revealing the reaction kinetics at the atomic level. Nevertheless, such investigation is quite challenging, especially for reactions involving multi-phase and complex interfaces, such as the widely adopted carbothermal reduction (CTR) reactions. Herein, in-situ TEM is applied to monitor the CTR of Co3 O4 nanocubes on reduced graphene oxide nanosheets. Together with the first-principle calculation, the migration route of Co atoms during the phase transition of the CTR reaction is revealed. Meanwhile, the interfacial edge-dislocations/stress-gradient is identified as a result of the atomistic diffusion, which in turn can affect the morphology variation of the reactants. Accordingly, controllable synthesis of Co-based nanostructure with a desirable phase and structure has been achieved. This work not only provides atomic kinetic insight into CTR reactions but also offers a novel strategy for the design and synthesis of functional nanostructures for emerging energy technologies.
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