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三元层状材料结构调控及性能研究进展
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()
Progress in Structural Tailoring and Properties of Ternary Layered Ceramics
DING Haoming1,2,3(), LI Mian1,3, LI Youbing1,3, CHEN Ke1,3, XIAO Yukun1,3, ZHOU Jie4, TAO Quanzheng4, Johanna Rosen4, YIN Hang5, BAI Yuelei5, ZHANG Bikun6, SUN Zhimei6, WANG Junjie7, ZHANG Yiming1,3, HUANG Zhenying8, ZHANG Peigen9, SUN Zhengming9, HAN Meikang10, ZHAO Shuang11, WANG Chenxu11, HUANG Qing1,3()

图24. 高熵MAX相的辐照相变及非晶化[302]

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