Duan Wentao, Wang Wei, Das Sambeeta, Yadav Vinita, Mallouk Thomas E, Sen Ayusman
Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802; email:
Annu Rev Anal Chem (Palo Alto Calif). 2015;8:311-33. doi: 10.1146/annurev-anchem-071114-040125. Epub 2015 Jun 24.
Synthetic nano- and microscale machines move autonomously in solution or drive fluid flows by converting sources of energy into mechanical work. Their sizes are comparable to analytes (sub-nano- to microscale), and they respond to signals from each other and their surroundings, leading to emergent collective behavior. These machines can potentially enable hitherto difficult analytical applications. In this article, we review the development of different classes of synthetic nano- and micromotors and pumps and indicate their possible applications in real-time in situ chemical sensing, on-demand directional transport, cargo capture and delivery, as well as analyte isolation and separation.
合成纳米和微米级机器通过将能量源转化为机械功,在溶液中自主移动或驱动流体流动。它们的尺寸与分析物相当(亚纳米到微米级),并且它们相互之间以及与周围环境的信号作出响应,从而产生涌现的集体行为。这些机器有可能实现迄今为止难以实现的分析应用。在本文中,我们回顾了不同类型的合成纳米和微米马达及泵的发展,并指出它们在实时原位化学传感、按需定向运输、货物捕获与递送以及分析物分离与提纯等方面的可能应用。