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Temperature Calibration for In Situ Environmental Transmission Electron Microscopy Experiments

机译:原位环境透射电子显微镜实验的温度校准

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摘要

In situ environmental transmission electron microscopy (ETEM) experiments require specimen heating holders to study material behavior in gaseous environments at elevated temperatures. In order to extract meaningful kinetic parameters, such as activation energies, it is essential to have a direct and accurate measurement of local sample temperature. This is particularly important if the sample temperature might fluctuate, for example when room temperature gases are introduced to the sample area. Using selected-area diffraction (SAD) in an ETEM, the lattice parameter of Ag nanoparticles was measured as a function of the temperature and pressure of hydrogen gas to provide a calibration of the local sample temperature. SAD permits measurement of temperature to an accuracy of ± 30 °C using Ag lattice expansion. Gas introduction can cause sample cooling of several hundred degrees celsius for gas pressures achievable in the ETEM.
机译:原位环境透射电子显微镜(ETEM)实验要求试样加热座来研究高温下气体环境中的材料行为。为了提取有意义的动力学参数,例如活化能,必须对本地样品温度进行直接而准确的测量。如果样品温度可能会波动,例如在将室温气体引入样品区域时,这尤其重要。在ETEM中使用选择区域衍射(SAD),将Ag纳米颗粒的晶格参数作为氢气温度和压力的函数进行测量,以提供对局部样品温度的校准。 SAD允许使用Ag晶格膨胀将温度测量到±30°C的精度。对于ETEM中可达到的气压,气体的引入会导致样品冷却几百摄氏度。

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