4.6 Article

A flexible, transparent and high-performance gas sensor based on layer-materials for wearable technology

Journal

NANOTECHNOLOGY
Volume 28, Issue 41, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1361-6528/aa8317

Keywords

flexible; transparent; gas sensor; room temperature; photo-activated

Funding

  1. National Natural Science Foundation of China [50902097]
  2. Basic Research Project of Shenzhen [JCYJ20160308091322373]
  3. State Scholarship Fund of China Scholarship Council [201708440013]
  4. Natural Science Foundation of SZU grant [827-000030]

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Gas sensors play a vital role among a wide range of practical applications. Recently, propelled by the development of layered materials, gas sensors have gained much progress. However, the high operation temperature has restricted their further application. Herein, via a facile pulsed laser deposition (PLD) method, we demonstrate a flexible, transparent and high-performance gas sensor made of highly-crystalline indium selenide (In2Se3) film. Under UV-vis-NIR light or even solar energy activation, the constructed gas sensors exhibit superior properties for detecting acetylene (C2H2) gas at room temperature. We attribute these properties to the photo-induced charger transfer mechanism upon C2H2 molecule adsorption. Moreover, no apparent degradation in the device properties is observed even after 100 bending cycles. In addition, we can also fabricate this device on rigid substrates, which is also capable to detect gas molecules at room temperature. These results unambiguously distinguish In2Se3 as a new candidate for future application in monitoring C2H2 gas at room temperature and open up new opportunities for developing next generation full-spectrum activated gas sensors.

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