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Updated: Mar 10, 2026

Preparation and 3D Tracking of Catalytic Swimming Devices
Published on: July 1, 2016
Catalysis-Driven Self-Thermophoresis of Janus Plasmonic Nanomotors
Weiwei Qin1,2, Tianhuan Peng1,2, Yanjing Gao1,2
1Division of Physical Biology & Bioimaging Centre, Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai, 201800, China.
Abstract:
It is highly demanding to design active nanomotors that can move in response to specific signals with controllable rate and direction. A catalysis-driven nanomotor was constructed by designing catalytically and plasmonically active Janus gold nanoparticles (Au NPs), which generate an asymmetric temperature gradient of local solvent surrounding NPs in catalytic reactions. The self-thermophoresis behavior of the Janus nanomotor is monitored from its inherent plasmonic response. The diffusion coefficient of the self-thermophoresis motion is linearly dependent on chemical reaction rate, as described by a stochastic model.

