Geometrically driven reversible solid-liquid phase transition at the atomic scale

成果类型:
Article
署名作者:
Cui, Wenjun; Qian, Cheng; Lin, Weixiao; Xue, Zefan; Ge, Zhencui; Zhao, Wen; Van Tendeloo, Gustaaf; Wu, Jinsong; Ding, Feng; Sang, Xiahan; Fu, Zhengyi
署名单位:
Wuhan University of Technology; Wuhan University of Technology; Wuhan University of Technology; Anhui University; Suzhou Laboratory; China University of Petroleum; University of Antwerp
刊物名称:
SCIENCE
ISSN/ISSBN:
0036-8075; 1095-9203
DOI:
10.1126/science.aed6019
发表日期:
2026-07-16
页码:
280-286
关键词:
thermal-conductivity surface-tension bi BISMUTH nanowires GROWTH energy crystallization nucleation tem
摘要:
Atomic-resolution observation of the liquid-solid phase transition within a geometrically confined nanocluster provides fundamental insights into heterogeneous nucleation mechanisms. In this work, using in situ transmission electron microscopy, we directly control and observe a single critical-sized bismuth nanocluster within a tunable nanoscale gap, driving it through a reversible cycle from quasi-amorphous nanodisc, to crystalline nanowire, to liquid nanodroplet. The cluster's aspect ratio, rather than its volume, is the primary descriptor governing these phase transitions, determined by the interplay between intrinsic surface anisotropy and interfacial energetics. Confinement also imposes texture, forcing the nanowire to adopt a preferred 21 & strns;1 & strns;0 orientation that is absent in unconfined nanoparticles. These results provide the mechanistic foundation for geometry-driven phase and orientation selection, which enables the rational design of nanomaterials through engineered confinement.
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