4.8 Article

Self-Powered Triboelectric Nanosensor for Microfluidics and Cavity-Confined Solution Chemistry

Journal

ACS NANO
Volume 9, Issue 11, Pages 11056-11063

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.5b04486

Keywords

Au nanoparticles; micro total analysis system; microfluidics; self-powered sensor; triboelectric effect

Funding

  1. Hightower Chair foundation
  2. thousands talents program for pioneer researcher and his innovation team, China
  3. Beijing City Committee of science and technology project [Z131100006013004, Z131100006013005]
  4. Beijing National Science Foundation [4122058]
  5. Beijing Higher Education Young Elite Teacher Project [YETP0536]
  6. National Natural Science Foundation of China [60706031, 61574015]
  7. Fundamental Research Funds for the Central Universities [2014JBM009]
  8. Taiwan Ministry of Science and Technology [103-2113-M-007-021-MY2, 103-2917-I-564-070]

Ask authors/readers for more resources

Micro total analysis system (mu TAS) is one of the important tools for modern analytical sciences. In this paper, we not only propose the concept of integrating the self-powered triboelectric microfluidic nanosensor (TMN) with mu TAS, but also demonstrate that the developed system can be used as an in situ tool to quantify the flowing liquid for microfluidics and solution chemistry. The TMN automatically generates electric outputs when the fluid passing through it and the outputs are affected by the solution temperature, polarity, ionic concentration, and fluid flow velocity. The self-powered TMN can detect the flowing water velocity, position, reaction temperature, ethanol, and salt concentrations. We also integrate the TMNs in a mu TAS platform to directly characterize the synthesis of Au nanoparticles by a chemical reduction method.

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