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Negative thermal expansion: Mechanisms and materials

机译:负热膨胀:机制和材料

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摘要

Negative thermal expansion (NTE) of materials is an intriguing phenomenon challenging the concept of traditional lattice dynamics and of importance for a variety of applications. Progresses in this field develop markedly and update continuously our knowledge on the NTE behavior of materials. In this article, we review the most recent understandings on the underlying mechanisms (anharmonic phonon vibration, magnetovolume effect, ferroelectrorestriction and charge transfer) of thermal shrinkage and the development of NTE materials under each mechanism from both the theoretical and experimental aspects. Besides the low frequency optical phonons which are usually accepted as the origins of NTE in framework structures, NTE driven by acoustic phonons and the interplay between anisotropic elasticity and phonons are stressed. Based on the data documented, some problems affecting applications of NTE materials are discussed and strategies for discovering and design novel framework structured NET materials are also presented.
机译:材料的负热膨胀(NTE)是一种有趣的现象,挑战传统格子动力学的概念和对各种应用的重要性。本领域的进展显着发展,并不断更新我们对材料的NTE行为的知识。在本文中,我们审查了对热收缩率的潜在机制(Anharmonic Phonon振动,磁体效应,铁电器效应,铁电器效应,铁电器效应和电荷转移),以及在理论和实验方面的每个机制下的NTE材料的开发。除了通常被接受为框架结构中NTE的起源的低频光学声子,应强调由声子位驱动的NTE和各向异性弹性与声子之间的相互作用。根据记录的数据,讨论了影响NTE材料应用的一些问题,并介绍了发现和设计新颖框架结构净材料的策略。

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