Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA. School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, USA.
Rep Prog Phys. 2014 May;77(5):056601. doi: 10.1088/0034-4885/77/5/056601. Epub 2014 May 6.
This review collects and describes experiments that employ colloidal suspensions to probe physics in ordered and disordered solids and related complex fluids. The unifying feature of this body of work is its clever usage of poly(N-isopropylacrylamide) (PNIPAM) microgel particles. These temperature-sensitive colloidal particles provide experimenters with a 'knob' for in situ control of particle size, particle interaction and particle packing fraction that, in turn, influence the structural and dynamical behavior of the complex fluids and solids. A brief summary of PNIPAM particle synthesis and properties is given, followed by a synopsis of current activity in the field. The latter discussion describes a variety of soft matter investigations including those that explore formation and melting of crystals and clusters, and those that probe structure, rearrangement and rheology of disordered (jammed/glassy) and partially ordered matter. The review, therefore, provides a snapshot of a broad range of physics phenomenology which benefits from the unique properties of responsive microgel particles.
这篇综述收集并描述了利用胶体悬浮液来探测有序和无序固体及相关复杂流体物理的实验。这项工作的一个统一特点是巧妙地使用了聚(N-异丙基丙烯酰胺)(PNIPAM)微凝胶颗粒。这些温度敏感的胶体颗粒为实验人员提供了一个“旋钮”,可以现场控制颗粒尺寸、颗粒相互作用和颗粒堆积分数,进而影响复杂流体和固体的结构和动力学行为。简要介绍了 PNIPAM 颗粒的合成和性质,然后概述了该领域目前的活动。后者的讨论描述了各种软物质研究,包括探索晶体和团簇的形成和熔化的研究,以及探测无序(卡住/玻璃态)和部分有序物质的结构、重排和流变学的研究。因此,该综述提供了一个广泛的物理现象学的快照,这些现象学得益于响应性微凝胶颗粒的独特性质。