4.3 Article

Lithium Electrochemical and Electrochromic Properties of Atmospheric Pressure Plasma Jet-Synthesized Tungsten/Molybdenum Mixed Oxide Films for Flexible Electrochromic Devices

Journal

IEEE TRANSACTIONS ON PLASMA SCIENCE
Volume 42, Issue 12, Pages 3772-3785

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPS.2014.2348016

Keywords

Atmospheric pressure plasma; electrochromic (EC) films; molybdenum oxide; plasma-enhanced chemical vapor deposition (PECVD); tungsten oxide

Funding

  1. National Science Council of Taiwan [NSC-101-2221-E-035-064, NSC-102-2221-E-035-064-MY2]

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Lithium electrochemical and electrochromic (EC) performances of flexible tungsten/molybdenum mixed oxide (WMoxOyCz) films, deposited onto 40-Omega/square flexible polyethylene terephthalate/indium tin oxide substrates at room temperature (similar to 23 degrees C) and at the short exposed durations of 19-26 s using an atmospheric-pressure plasma-enhanced chemical vapor deposition with an atmospheric pressure plasma jet (APPJ) at various precursor injection angles, are investigated. The flexible organo-tungsten-molybdenum oxide (WMoxOyCz) films have been identified for the remarkable EC performance for 200 cycles of reversible Li+ ion intercalation and deintercalation in a 1-M LiClO4-propylene carbonate electrolyte by a potential sweep switching measurement between -1 and 1 V at a scan rate of 50 mV/s, even after being bent 360 degrees around a 2.5-cm diameter rod for 1000 cycles. The optical modulation (Delta T) is up to of 75.6% at a wavelength of 691.9 nm for WMoxOyCz films cosynthesized with an APPJ.

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