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三元层状材料结构调控及性能研究进展
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丁浩明 1,2,3(  ), 李勉 1,3, 李友兵 1,3, 陈科 1,3, 肖昱琨 1,3, 周洁 4, 陶泉争 4, 尹航 5, 柏跃磊 5, 张毕堃 6, 孙志梅 6, 王俊杰 7, 张一鸣 1,3, 黄振莺 8, 张培根 9, 孙正明 9, 韩美康 10, 赵双 11, 王晨旭 11, 黄庆 1,3(  )
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Progress in Structural Tailoring and Properties of Ternary Layered Ceramics
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DING Haoming 1,2,3(  ), LI Mian 1,3, LI Youbing 1,3, CHEN Ke 1,3, XIAO Yukun 1,3, ZHOU Jie 4, TAO Quanzheng 4, Johanna Rosen 4, YIN Hang 5, BAI Yuelei 5, ZHANG Bikun 6, SUN Zhimei 6, WANG Junjie 7, ZHANG Yiming 1,3, HUANG Zhenying 8, ZHANG Peigen 9, SUN Zhengming 9, HAN Meikang 10, ZHAO Shuang 11, WANG Chenxu 11, HUANG Qing 1,3(  )
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图24. 高熵MAX相的辐照相变及非晶化[302]
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Fig. 24. Phase transformation and amorphization caused by irradiation of MAX phases[302] (a) Schematic of atomic structure models of Ti2SnC and (TiVNbZrHf)2SnC; (b) In-situ selective area electron diffraction (SAED) micrographs of Ti2SnC and five-component (TiVNbZrHf)2SnC recorded during 800 keV Kr2+ irradiation, showing different phase transformation process and amorphization resistance; (c) M-Sn antisite defect formation energies calculated via DFT in the corresponding single-component M2SnC and the five-component (TiVNbZrHf)2SnC supercell
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