纳米机器人学
纳米技术
纳米-
材料科学
电化学
化学能
计算机科学
物理
电极
量子力学
复合材料
热力学
作者
James Guo Sheng Moo,Carmen C. Mayorga‐Martinez,Hong Wang,Bahareh Khezri,Wei Zhe Teo,Martin Pumera
标识
DOI:10.1002/adfm.201604759
摘要
Artificial autonomous self‐propelled nano and microrobots are an important part of contemporary technology. They are typically self‐powered, taking chemical energy from their environment and converting it to motion. They can move in complex environments and channels, deliver cargo, perform nanosurgery, act as chemotaxis and perform sense‐and‐act actions. The electrochemistry is closely interwoven within this field. In the case of self‐electrophoretically driven nano/microrobots, electrochemical mechanism has been the basis of power, which translates chemical energy to motion. Electrochemistry is also a major tool for the fabrication of these micro and nanodevices. Electrochemistry and electric fields can be used for the directing of nanorobots and for detection of their positions. Ultimately, nano and microrobots can dramatically improve performances of electrochemical sensors and biosensors, as well as of the energy generating devices. Here, all aspects in the fundamentals and applications of electrochemistry in the realm of nano‐ and microrobots are reviewed.
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