Advanced In Situ TEM Microchip with Excellent Temperature Uniformity and High Spatial Resolution

具有优异温度均匀性和高空间分辨率的先进原位透射电镜微芯片

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Abstract

Transmission electron microscopy (TEM) is a highly effective method for scientific research, providing comprehensive analysis and characterization. However, traditional TEM is limited to observing static material structures at room temperature within a high-vacuum environment. To address this limitation, a microchip was developed for in situ TEM characterization, enabling the real-time study of material structure evolution and chemical process mechanisms. This microchip, based on microelectromechanical System (MEMS) technology, is capable of introducing multi-physics stimulation and can be used in conjunction with TEM to investigate the dynamic changes of matter in gas and high-temperature environments. The microchip design ensures a high-temperature uniformity in the sample observation area, and a system of tests was established to verify its performance. Results show that the temperature uniformity of 10 real-time observation windows with a total area of up to 1130 μm(2) exceeded 95%, and the spatial resolution reached the lattice level, even in a flowing atmosphere of 1 bar.

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