热膨胀
负热膨胀
材料科学
拉曼光谱
各向异性
热的
凝聚态物理
热扩散率
多面体
弯曲
快离子导体
热稳定性
工作(物理)
旋转(数学)
振动
晶体结构
热传导
氧化物
热力学
弹性模量
Crystal(编程语言)
离子
复合材料
结晶学
集群扩展
作者
Mengdi Xu,Kaiyue Zhao,Yongqiang Qiao,Xin Chen,Qi Wang,Baodi Sheng,Yukun Huang,Qilong Gao
出处
期刊:Small
[Wiley]
日期:2026-05-21
卷期号:: e73896-e73896
摘要
ABSTRACT Zero thermal expansion (ZTE) materials can significantly enhance the structural stability and service life of precision components, which is of great significance to industrial technology. In this work, the high‐entropy strategy is adopted to design anomalous thermal expansion material KMg 1/3 Mn 1/3 Co 1/3 Sc 1/2 In 1/2 Mo 3 O 12 with a NASICON structure. It shows volumetric negative thermal expansion (NTE) behavior below 300 K ( α V = −9.97×10 −6 K −1 ) and achieves a ZTE ( α V = 1.56×10 −6 K −1 , 300–700 K). The highly anisotropic thermal vibration of O atoms causes the rigid rotation of the polyhedron within the structural unit of the lantern, further manifested as NTE. From the perspective of crystal structure, anomalous thermal expansion behavior originates from the mutual compensation between the negative thermal expansion induced by the bending vibrations of the polyhedron within the ab plane and the positive thermal expansion arising from the thermal vibrations of K + ions along the c ‐axis. Temperature‐dependent Raman spectroscopy further confirms the role of polyhedral coupled rotation in the anomalous thermal expansion behavior of the system. This work provides a design strategy for the development of NTE and ZTE materials.
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