4.8 Article

Spray coating of a perfect absorber based on carbon nanotube multiscale composites

Journal

CARBON
Volume 178, Issue -, Pages 616-624

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2021.03.019

Keywords

Perfect absorber; Carbon nanotube; Spray coating; Carbon black; Multiscale composite

Funding

  1. National Key Research and Development Program of China [2017YFA0205800]
  2. National Natural Science Foundation of China [51532008, 11574171, 11804183, 12075229]

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This research presents a perfect absorber design and fabrication process based on CNTs and carbon black particles, achieving absorption efficiency beyond 99.9% over a broad wavelength range. The addition of carbon black particles into CNT solution forms multi-scale all-carbon-based nanomaterials, effectively enhancing light absorption. CNTs act as connectors between carbon black particles for surface morphology modification, and the coating layer shows potential for solar thermal harvesting and self-cleaning function.
We report the design and simple spray coating fabrication process of a perfect absorber based on carbon nanotubes (CNTs) and carbon black particles with omnidirectional high absorption efficiency beyond 99.9% over the broad wavelength range from 400 nm to 20 mu m. The carbon black particles are introduced into the CNT solution to form multi-scale all-carbon-based nanomaterials, effectively modifying the morphology of the sprayed layer to improve the light absorption. The promising absorption characteristics of the CNT-carbon black layer are attributed to not only the intrinsic optical properties of the carbon nanomaterials but also the unique surface nanostructures that efficiently trap light. In addition to serving as absorbers in the coating layer, the CNTs, more importantly, act as connectors between carbon black particles for absorber preparation at a large scale, which is the key to modifying the surface morphology. The all-carbon-based coating layer is also shown to be effective for solar thermal harvesting and self-cleaning function. The developed mixing method for CNTs and carbon black particles in solutions opens a new path for the realization of multi-functional sprayed layers based on CNTs and advances the technology of CNT coatings for scale-up to industry applications. (C) 2021 Elsevier Ltd. All rights reserved.

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