微尺度化学
双金属片
纳米棒
化学
能量转换
催化作用
纳米-
纳米技术
能量转换效率
催化效率
热的
化学工程
光电子学
材料科学
物理
热力学
生物化学
数学教育
数学
工程类
作者
Wei Wang,Tso-Yi Chiang,Darrell Velegol,Thomas E. Mallouk
摘要
We analyze the power conversion efficiency of different classes of autonomous nano- and micromotors. For bimetallic catalytic motors that operate by a self-electrophoretic mechanism, there are four stages of energy loss, and together they result in a power conversion efficiency on the order of 10(-9). The results of finite element modeling agree well with experimental measurements of the efficiency of catalytic Pt-Au nanorod motors. Modifications of the composition and shape of bimetallic catalytic motors were predicted computationally and found experimentally to lead to higher efficiency. The efficiencies of bubble-propelled catalytic micromotors, magnetically driven flagellar motors, Janus micromotors driven by self-generated thermal gradients, and ultrasonically driven metallic micromotors are also analyzed and discussed.
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