Department of Physics, Indian Institute of Technology Gandhinagar , Palaj, Gandhinagar 382355, Gujarat, India.
Department of Chemistry, The Pennsylvania State University , University Park, Pennsylvania 16802, United States.
J Am Chem Soc. 2017 Jun 14;139(23):7666-7676. doi: 10.1021/jacs.7b02347. Epub 2017 May 26.
Self-propelled, synthetic active matters that transduce chemical energy into mechanical motion are examples of biomimetic nonequilibrium systems. They are of great current interest, with potential applications in nanomachinery, nanoscale assembly, fluidics, and chemical/biochemical sensing. Many of the physical challenges associated with generating motility on the micro- and nanoscale have recently been overcome, leading to the first generation of autonomous motors and pumps on scales ranging from microns to nanometers. This perspective focuses on catalytically powered motile systems, outlining major advances to date in motor/pump design, propulsion mechanisms and directional control, and intermotor communications leading to collective behavior. We conclude by discussing the possible future directions, from the fundamental questions that remain to be addressed to the design principles required for useful applications.
自行推进的、将化学能量转化为机械运动的合成活性物质是仿生非平衡系统的例子。它们目前非常受关注,在纳米机械、纳米尺度组装、流动学以及化学/生化传感方面具有潜在的应用。最近,许多与在微观和纳米尺度上产生运动相关的物理挑战已经被克服,从而产生了第一代自主运动和泵送装置,其规模从微米到纳米不等。本观点重点介绍了催化动力运动系统,概述了迄今为止在运动/泵送装置设计、推进机制和方向控制以及导致集体行为的多运动器通信方面的主要进展。我们最后讨论了可能的未来方向,从需要解决的基本问题到有用应用所需的设计原则。