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Mechanical Properties of Molybdenum Disulfide and the Effect of Doping: An in Situ TEM Study

机译:二硫化钼的力学性能和掺杂的影响:原位TEM研究

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Direct observations on nanopillars composed of molybdenum disulfide (MoS2) and chromium-doped MoS2 and their response to compressive stress have been made. Time-resolved transmission electron microscopy (TEM) during compression of the submicrometer diameter pillars of MoS2- and Cr-doped MoS2 (Cr: 0, 10, and 50 at %) allow the deformation process of the material to be observed and can be directly correlated with mechanical response to applied load. The addition of chromium to the MoS2 changed the failure mode from plastic deformation to catastrophic brittle fracture, an effect that was more pronounced as chromium content increased.
机译:对由二硫化钼(MoS2)和掺杂铬的MoS2组成的纳米柱及其对压缩应力的响应进行了直接观察。 MoS2和Cr掺杂的MoS2的亚微米直径柱(Cr:0、10和50 at%)压缩期间的时间分辨透射电子显微镜(TEM)可以观察到材料的变形过程,可以直接观察到与对施加载荷的机械响应相关。向MoS2中添加铬将失效模式从塑性变形改变为灾难性的脆性断裂,这种影响随着铬含量的增加而更加明显。

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