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胶体凝胶的实空间分析:成就、挑战与未来方向。

Real space analysis of colloidal gels: triumphs, challenges and future directions.

作者信息

Royall C Patrick, Faers Malcolm A, Fussell Sian L, Hallett James E

机构信息

Gulliver UMR CNRS 7083, ESPCI Paris, Université PSL, 75005 Paris, France.

HH Wills Physics Laboratory, Tyndall Avenue, Bristol, BS8 1TL, United Kingdom.

出版信息

J Phys Condens Matter. 2021 Aug 31;33(45). doi: 10.1088/1361-648X/ac04cb.

Abstract

Colloidal gels constitute an important class of materials found in many contexts and with a wide range of applications. Yet as matter far from equilibrium, gels exhibit a variety of time-dependent behaviours, which can be perplexing, such as an increase in strength prior to catastrophic failure. Remarkably, such complex phenomena are faithfully captured by an extremely simple model-'sticky spheres'. Here we review progress in our understanding of colloidal gels made through the use of real space analysis and particle resolved studies. We consider the challenges of obtaining a suitable experimental system where the refractive index and density of the colloidal particles is matched to that of the solvent. We review work to obtain a particle-level mechanism for rigidity in gels and the evolution of our understanding of time-dependent behaviour, from early-time aggregation to ageing, before considering the response of colloidal gels to deformation and then move on to more complex systems of anisotropic particles and mixtures. Finally we note some more exotic materials with similar properties.

摘要

胶体凝胶是在许多情况下发现的一类重要材料,具有广泛的应用。然而,作为远离平衡态的物质,凝胶表现出各种随时间变化的行为,这些行为可能令人困惑,例如在灾难性失效之前强度增加。值得注意的是,这种极其简单的模型——“粘性球体”就能如实地捕捉到此类复杂现象。在此,我们回顾通过实空间分析和粒子分辨研究在理解胶体凝胶方面取得的进展。我们考虑获得一个合适实验系统所面临的挑战,在该系统中胶体颗粒的折射率和密度与溶剂相匹配。在考虑胶体凝胶对变形的响应并进而转向更复杂的各向异性颗粒和混合物系统之前,我们回顾为获得凝胶中刚性的粒子水平机制以及我们对随时间变化行为(从早期聚集到老化)理解的演变。最后,我们指出一些具有类似性质的更奇特材料。

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