Stable Cucro2 Nanoparticles - Zno Fibres P-N Heterostructure System for Effective Photocatalytic Activity
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Date
2019
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
UNIV NOVI SAD, FAC TECHNOLOGY
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
Heterostructured photocatalysts were fabricated by coupling electrospunn-type ZnO fibres and hydrothermally derived p-type CuCrO2 nanoparticles. The effect of the amount of CuCrO2 nanoparticles on the photocatalytic activity of the heterostructured photocatalyst was systematically investigated. The formation of the heterojunctions between the two semiconductors was revealed via detailed XRD, XPS, TEM and optical property measurements. The experimental results indicated that the optimal CuCrO2 amount in the composite photocatalyst was 1.0 wt.% due to the optimum doping and surface coverage, higher absorption onset edge, larger absorption intensity and optimum band gap energy. This composite photocatalyst, fabricated by drop casting of CuCrO2 nanoparticle dispersion on ZnO fibres, displayed 30% higher rate constant (k) value compared to the pure ZnO fibres in the degradation of methylene blue dye molecules and reached 93.4% decomposition in 1 h under UV-visible light exposure. The obtained results are highly encouraging in comparison to only UV/light active p-n heterostructured photocatalysts previously reported in literature. Therefore, we believe that the proposed approach here opened the way for simple synthesis of highly-efficient visible light active heterostructured semiconductor photocatalyst systems.
Description
ORCID
Keywords
Photocatalytic Activity, P-N Heterojunctions, Zno Fibre, Cucro2 Delafossite, Photocatalyst, Room-Temperature Synthesis, Hydrothermal Synthesis, Thin-Films, Enhanced Photocatalysis, Nanorods, Heterojunction, Nanocrystals, Degradation, Removal, Water, photocatalytic activity, TP785-869, CuCrO2 delafossite, photocatalyst, Clay industries. Ceramics. Glass, p-n heterojunctions, ZnO fibre
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences
Citation
WoS Q
Q4
Scopus Q
Q3

OpenCitations Citation Count
8
Source
PROCESSING AND APPLICATION OF CERAMICS
Volume
13
Issue
2
Start Page
189
End Page
201
PlumX Metrics
Citations
CrossRef : 5
Scopus : 9
Captures
Mendeley Readers : 10
SCOPUS™ Citations
9
checked on Feb 03, 2026
Web of Science™ Citations
9
checked on Feb 03, 2026
Google Scholar™

OpenAlex FWCI
0.48386756
Sustainable Development Goals
9
INDUSTRY, INNOVATION AND INFRASTRUCTURE


