热膨胀
负热膨胀
范德瓦尔斯力
材料科学
声子
纳米电子学
凝聚态物理
热的
弯曲
联轴节(管道)
工程物理
纳米技术
薄膜
格子(音乐)
工作(物理)
应变工程
六方晶系
过渡金属
六边形晶格
纳米力学
作者
Chunxiang Zhao,Jiaqi Wang,Qiang Sun,Qilong Gao
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2025-10-13
卷期号:19 (3): 94908155-94908155
标识
DOI:10.26599/nr.2025.94908155
摘要
Negative thermal expansion (NTE) in two-dimensional (2D) materials defies the traditional views of thermal expansion and holds promise for the development of advanced nanoelectronics and temperature-controlled devices. Recent advances in 2D NTE materials, particularly through studies of out-of-plane bending vibrations, structural unit rotations, spin-lattice interactions, and strain-modulated lattice responses, have enhanced our mechanistic understanding of NTE in ultrathin systems. This review summarizes recent progress in uncovering the characteristics and origins of NTE in key 2D materials such as graphene, hexagonal BN, transition metal dichalcogenides, and novel 2D frameworks. Although porous structures often exhibit NTE dominated by low-energy optical phonons, this work highlights the growing recognition of acoustic phonon contributions and direction-dependent elastic effects in atomically thin systems, further discussing NTE tuning strategies such as substrate-induced strain control, interlayer coupling in van der Waals heterostructures, and magnetic configuration engineering. Current challenges, including narrow operational temperature windows, environmental sensitivity, and incompatibility with conventional materials, are critically evaluated, and innovative design approaches combining machine learning predictions, defect modulation, and topology optimization are outlined to advance the development of 2D NTE materials with customized thermomechanical performance.
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