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Enhanced photoluminescence of potassium-doped tungsten oxide by acetone exposure†
Aman Patel,Weigang Lu,Blake Birmingham,Michael Johnson,Danling Wang,Zhenrong Zhang
RSC Advances Pub Date : 01/04/2023 00:00:00 , DOI:10.1039/D2RA06267D
Abstract

Studies of optical properties of doped nanocrystals of tungsten trioxide can elucidate new information about the material. A novel molecule-enhanced photoluminescence (PL) of potassium-doped tungsten trioxide (KxWO) was explored in the presence of different gases to understand charge transfer between molecules and KxWO on the properties of the material. We performed Raman spectroscopy and PL experiments in the presence of gaseous acetone or ethanol mixed with other gases (N2 and O2). PL at 630 nm from KxWO was observed and further enhanced when the sample was continuously irradiated with a 532 nm CW laser in acetone. A mechanism of strong emission of the PL induced by the charge transfer between the acetone and the KxWO is proposed.

Graphical abstract: Enhanced photoluminescence of potassium-doped tungsten oxide by acetone exposure
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