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结构控制全固态刷状胶体超材料中的声子传播。

Architecture Controls Phonon Propagation in All-Solid Brush Colloid Metamaterials.

作者信息

Cang Yu, Sainidou Rebecca, Rembert Pascal, Matyjaszewski Krzysztof, Bockstaller Michael, Graczykowski Bartlomiej, Fytas George

机构信息

School of Aerospace Engineering and Applied Mechanics, Tongji University, Zhangwu Road 100, Shanghai, 200092, China.

Laboratoire Ondes et Milieux Complexes UMR CNRS 6294, UNIHAVRE, Normandie University, 75 rue Bellot, Le Havre, F-76600, France.

出版信息

Small. 2024 Mar;20(13):e2304157. doi: 10.1002/smll.202304157. Epub 2023 Nov 16.

Abstract

Brillouin light scattering and elastodynamic theory are concurrently used to determine and interpret the hypersonic phonon dispersion relations in brush particle solids as a function of the grafting density with perspectives in optomechanics, heat management, and materials metrology. In the limit of sparse grafting density, the phonon dispersion relations bear similarity to polymer-embedded colloidal assembly structures in which phonon dispersion can be rationalized on the basis of perfect boundary conditions, i.e., isotropic stiffness transitions across the particle interface. In contrast, for dense brush assemblies, more complex dispersion characteristics are observed that imply anisotropic stiffness transition across the particle/polymer interface. This provides direct experimental validation of phonon propagation changes associated with chain conformational transitions in dense particle brush materials. A scaling relation between interface tangential stiffness and crowding of polymer tethers is derived that provides a guideline for chemists to design brush particle materials with tailored phononic dispersion characteristics. The results emphasize the role of interfaces in composite materials systems. Given the fundamental relevance of phonon dispersion to material properties such as thermal transport or mechanical properties, it is also envisioned that the results will spur the development of novel functional hybrid materials.

摘要

布里渊光散射和弹性动力学理论被同时用于确定和解释刷状颗粒固体中的高超音速声子色散关系,该关系是接枝密度的函数,并在光机械学、热管理和材料计量学方面具有应用前景。在稀疏接枝密度的极限情况下,声子色散关系与聚合物嵌入胶体组装结构相似,其中声子色散可以基于完美边界条件进行合理化解释,即在颗粒界面处各向同性的刚度转变。相比之下,对于密集的刷状组装体,观察到更复杂的色散特性,这意味着在颗粒/聚合物界面处存在各向异性的刚度转变。这为与密集颗粒刷状材料中链构象转变相关的声子传播变化提供了直接的实验验证。推导了界面切向刚度与聚合物系链拥挤程度之间的标度关系,为化学家设计具有定制声子色散特性的刷状颗粒材料提供了指导。结果强调了界面在复合材料系统中的作用。鉴于声子色散与诸如热传输或机械性能等材料特性的基本相关性,还可以设想这些结果将推动新型功能混合材料的发展。

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