2016
DOI: 10.1063/1.4941910
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Optical properties and photocatalytic activities of tungsten oxide (WO3) with platinum co-catalyst addition

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Cited by 14 publications
(7 citation statements)
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“…The gap energy values for the WO 3 sample and for the series doped with Pr 3+ showed very close values and in accordance with the results found in the literature, 66 with a subtle decrease when Pr 3+ was incorporated into the WO 3 host matrix. The determination of the band gap value is an estimate that considers an average of the band gap of each face that constitutes the morphology of the particles.…”
Section: Resultssupporting
confidence: 90%
See 1 more Smart Citation
“…The gap energy values for the WO 3 sample and for the series doped with Pr 3+ showed very close values and in accordance with the results found in the literature, 66 with a subtle decrease when Pr 3+ was incorporated into the WO 3 host matrix. The determination of the band gap value is an estimate that considers an average of the band gap of each face that constitutes the morphology of the particles.…”
Section: Resultssupporting
confidence: 90%
“…This performance presented by WO 3 is in agreement with other studies in the literature. 66,68 It is reasonable to consider that the photon emission process is due to multiple relaxation processes with the participation of different energy levels. Associated with this behavior, it is possible to consider the existence of defects and structural distortions and their densities, which enable the formation of sites for trapping the e − /h + charges, demanding an increase in the recombination rate and an increase in the intensity of photoluminescence.…”
Section: Photodegradation Of Crystal Violetmentioning
confidence: 99%
“…In reality, this is hardly achievable, but some transition metal oxides have a combination of properties that make them prime candidates for PEC catalysis. WO 3 is one of these materials, as it has a band gap of ~2.7 eV, which can be further lowered by tuning the synthesis conditions or creating heterostructures with other materials [6][7][8]. In addition, WO 3 is relatively stable under anodic conditions in acidic media, though it does undergo noticeable photo-corrosion in different electrolytes [9].…”
Section: Introductionmentioning
confidence: 99%
“…Among SMOs, research on WO 3 ‐based acetone gas sensors is a hotspot due to their diverse chemical and physical structure. It is also known that WO 3 is an n‐type semiconductor, 19 which indicates an abundance of oxygen vacancies on its surface. Hence, these vacancies (adsorbent) greatly facilitate the chemisorption of target sensing gas, thereby improving the response time of the sensor.…”
Section: Introductionmentioning
confidence: 99%