Yang Qishuo, Li Xingxing, Zhao Ludan, Wang Gang, Guo Zenglong, Niu Kangdi, Jiang Shaolong, Hou Fuchen, Lin Junhao
Department of Physics and Guangdong Basic Research Center of Excellence for Quantum Science, Southern University of Science and Technology (SUSTech), Shenzhen 518055, China.
School of Mechanical and Mining Engineering, The University of Queensland, Brisbane, QLD 4072, Australia.
Innovation (Camb). 2025 Jan 6;6(1):100751. doi: 10.1016/j.xinn.2024.100751.
Transmission electron microscopy (TEM) is an indispensable tool for elucidating the intrinsic atomic structures of materials and provides deep insights into defect dynamics, phase transitions, and nanoscale structural details. While numerous intriguing physical properties have been revealed in recently discovered two-dimensional (2D) quantum materials, many exhibit significant sensitivity to water and oxygen under ambient conditions. This inherent instability complicates sample preparation for TEM analysis and hinders accurate property measurements. This review highlights recent technical advancements to preserve the intrinsic structures of water- and oxygen-sensitive 2D materials for atomic-scale characterizations. A critical development discussed in this review is implementing an inert gas-protected glovebox integrated system (GIS) designed specifically for TEM experiments. In addition, this review emphasizes air-sensitive materials such as 2D transition metal dichalcogenides, transition metal dihalides and trihalides, and low-dimensional magnetic materials, demonstrating breakthroughs in overcoming their environmental sensitivity. Furthermore, the progress in TEM characterization enabled by the GIS is analyzed to provide a comprehensive overview of state-of-the-art methodologies in this rapidly advancing field.
透射电子显微镜(TEM)是阐明材料内在原子结构不可或缺的工具,能深入洞察缺陷动力学、相变以及纳米级结构细节。虽然最近发现的二维(2D)量子材料展现出众多引人入胜的物理特性,但许多材料在环境条件下对水和氧气表现出显著的敏感性。这种固有的不稳定性使用于TEM分析的样品制备变得复杂,并阻碍了准确的性能测量。本综述重点介绍了近期为保留对水和氧气敏感的二维材料的固有结构以进行原子尺度表征所取得的技术进展。本综述中讨论的一项关键进展是实施专门为TEM实验设计的惰性气体保护手套箱集成系统(GIS)。此外,本综述着重介绍了诸如二维过渡金属二硫属化物、过渡金属二卤化物和三卤化物以及低维磁性材料等对空气敏感的材料,展示了在克服其环境敏感性方面取得的突破。此外,还分析了GIS在TEM表征方面取得的进展,以全面概述这一快速发展领域的最新方法。