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各向异性声子模式的协同耦合增强了层状α-MoO中的可见热致变色。

Cooperative coupling of anisotropic phonon modes intensifies visible thermochromism in layered α-MoO.

作者信息

Kim Youngkwang, Lee June Ho, Jung Young Hwa, Lee Donghwa, Son Junwoo

机构信息

Department of Materials Science and Engineering (MSE), Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

Pohang Accelerator Laboratory, Pohang 37673, Republic of Korea.

出版信息

Mater Horiz. 2022 Jun 6;9(6):1631-1640. doi: 10.1039/d2mh00090c.

Abstract

Applications that provide versatile, high temperature warnings require the development of thermochromic materials based on solid-state oxides. To boost the visible thermochromic properties, a fundamental approach to reveal the unclear roles of local structure on band structure modulation should be considered by scrutinizing the thermal motion of phonon modes. Herein, we demonstrate that selective coupling of intra-layer phonon modes intensifies the visible thermochromism of layered oxides α-MoO. As a result of thermally induced band gap reduction in α-MoO, the observed color reversibly changes from white at 25 °C to yellow at 300 °C owing to a red shift of the absorption edge with an increase of temperature. This high-temperature thermochromism is attributed to the anisotropic change of layered α-MoO crystal structures characterized by synchrotron X-ray diffraction. Notably, quantitative characterizations combined with theoretical calculations reveal that the cooperative coupling of active Raman modes in intra-layer [MoO] octahedra are responsible for the band gap reduction at high temperature; this defies the general belief regarding the origin of visible thermochromism in layered oxides as the modulation of a van der Waals inter-layer distance. These original results can aid the development of a new strategy to further intensify high-temperature thermochromism by anion doping for highly sensitive temperature-indicating applications.

摘要

提供通用高温警告的应用需要开发基于固态氧化物的热致变色材料。为了增强可见热致变色性能,应通过仔细研究声子模式的热运动来考虑一种揭示局部结构对能带结构调制作用尚不明确的基本方法。在此,我们证明层内声子模式的选择性耦合增强了层状氧化物α-MoO的可见热致变色性能。由于α-MoO中热诱导的带隙减小,随着温度升高吸收边发生红移,观察到的颜色在25℃时从白色可逆地变为300℃时的黄色。这种高温热致变色归因于以同步加速器X射线衍射为特征的层状α-MoO晶体结构的各向异性变化。值得注意的是,定量表征与理论计算相结合表明,层内[MoO]八面体中活性拉曼模式的协同耦合是高温下带隙减小的原因;这与关于层状氧化物中可见热致变色起源的普遍观点相悖,后者认为是范德华层间距离的调制。这些原创结果有助于开发一种新策略,通过阴离子掺杂进一步增强高温热致变色性能,用于高灵敏度温度指示应用。

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