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Colloidal Suspensions in External Rotating Electric Field: Experimental Studies and Prospective Applications in Physics, Material Science, and Biomedicine

机译:外旋电电场中的胶体悬浮液:物理,物质科学和生物医药的实验研究和前瞻性应用

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Colloidal suspensions and tunable self-assembly of colloidal particles attract a great interest in recent years. In this paper, we propose a new setup and technology for studies of self-assembly of colloidal particles, interection of which between themselves is tuned by external rotating electric fields. We reveal wide prospectives of electric field employment for tunable self-assembly, from suspensions of inorganic particles to ensembles of biological cells. These results make enable particle-resolved studies of various collective phenomena and fundamental processes in many-particle systems in equilibrium state and far from it, while the dynamics can be resolved at the level of individual particles using video microscopy. For the first time, we demonstrate that, apart from ability to prepare photonic crystalline films of inorganic silica particles, the tunable self-assembly provides a novel technological way for manipulation with ensembles of biological cells by control of interactions between them.
机译:胶体悬浮物和胶体颗粒的可调自组装吸引近几年极大的兴趣。在本文中,我们提出了一个新的设置和技术对于其本身之间通过外部旋转电场调谐的自组装胶体粒子,interection的研究。我们揭示电场就业可调自组装的全社会展望,从无机颗粒的悬浮液,以生物细胞的合奏。这些结果使得能够在多粒子系统处于平衡状态的各种集体现象和基本过程粒子分辨研究,并远离它,而动力可以在使用视频显微镜单个粒子的水平来解决。对于第一次,我们证明,除了以制备无机二氧化硅颗粒的光子晶体膜的能力,可调谐自组装提供用于与生物细胞通过它们之间的相互作用控制的合奏操纵的新颖的技术方法。

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