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MXene Ti<sub>3</sub>C<sub>2</sub>: An Effective 2D Light-to-Heat Conversion Material

ACS Nano · 2017 · Vol. 11(4) · pp. 3752–3759
Renyuan LiLianbin ZhangLe ShiPeng Wang

Abstract

MXene, a new series of 2D material, has been steadily advancing its applications to a variety of fields, such as catalysis, supercapacitor, molecular separation, electromagnetic wave interference shielding. This work reports a carefully designed aqueous droplet light heating system along with a thorough mathematical procedure, which combined leads to a precise determination of internal light-to-heat conversion efficiency of a variety of nanomaterials. The internal light-to-heat conversion efficiency of MXene, more specifically Ti3C2, was measured to be 100%, indicating a perfect energy conversion. Furthermore, a self-floating MXene thin membrane was prepared by simple vacuum filtration and the membrane, in the presence of a rationally chosen heat barrier, produced a light-to-water-evaporation efficiency of 84% under one sun irradiation, which is among the state of art energy efficiency for similar photothermal evaporation system. The outstanding internal light-to-heat conversion efficiency and great light-to-water evaporation efficiency reported in this work suggest that MXene is a very promising light-to-heat conversion material and thus deserves more research attention toward practical applications.

MXene and MAX Phase MaterialsSolar-Powered Water Purification MethodsEnergy Harvesting in Wireless NetworksMaterials scienceEnergy transformationEnergy conversion efficiencyEvaporationNanomaterialsWork (physics)NanotechnologyHeat generationOptoelectronicsThermodynamics

Funding

  • King Abdullah University of Science and Technology
Citations
1,718
FWCI
47.53
field-weighted impact
References
46
Percentile
100%
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Citations per year
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