Nanocrystal-engineered thin CuO film photocatalyst for visible-light-driven photocatalytic degradation of organic pollutant in aqueous solution
We design a thin CuO film photocatalyst for visible-light-driven photocatalytic degradation of
methylene blue (MB). Nanocrystal engineering of the photocatalyst is performed by …
methylene blue (MB). Nanocrystal engineering of the photocatalyst is performed by …
[HTML][HTML] Visible Light Driven Heterojunction Photocatalyst of CuO–Cu2O Thin Films for Photocatalytic Degradation of Organic Pollutants
A high recombination rate and low charge collection are the main limiting factors of copper
oxides (cupric and cuprous oxide) for the photocatalytic degradation of organic pollutants. In …
oxides (cupric and cuprous oxide) for the photocatalytic degradation of organic pollutants. In …
Surface modification of Cu2O-CuO photocatalyst on Cu wire through decorating with TiO2 nanoparticles for enhanced visible light photocatalytic activity
In this paper, the fabrication of Cu 2 O-CuO/TiO 2 nanocomposite photocatalysts on Cu wire
was performed successfully via chemical-thermal oxidation and sol-gel process. The …
was performed successfully via chemical-thermal oxidation and sol-gel process. The …
Fabrication of binary metal doped CuO nanocatalyst and their application for the industrial effluents treatment
Herein, we fabricated the binary transition metal (Ce & Zn) doped CuO nanocatalyst via a
single step facile co-precipitation technique by using liquid ammonia as a pH regulator and …
single step facile co-precipitation technique by using liquid ammonia as a pH regulator and …
Pd‐Decorated CuO Thin Film for Photodegradation of Acetaminophen and Triclosan under Visible Light Irradiation
Inefficient visible light photocatalytic degradation of organic pollutants, such as
acetaminophen (ACE) and triclosan (TS), is one of the main limiting factors for implementing …
acetaminophen (ACE) and triclosan (TS), is one of the main limiting factors for implementing …
[HTML][HTML] Enhanced visible-light photocatalysis of nanocomposites of copper oxide and single-walled carbon nanotubes for the degradation of methylene blue
We report enhanced catalytic action of a series of copper (II)-oxide-single-walled carbon
nanotube (CuO-SWCNT) composite photocatalysts (abbreviated as CuO-SWCNT-0.5, CuO …
nanotube (CuO-SWCNT) composite photocatalysts (abbreviated as CuO-SWCNT-0.5, CuO …
Photocatalytic studies of copper oxide nanostructures for the degradation of methylene blue under visible light
G Sorekine, G Anduwan, MN Waimbo, H Osora… - Journal of Molecular …, 2022 - Elsevier
As a well-known global fact, the presence of toxic, non-biodegradable and harmful organic
pollutants in soils, wastewater, and atmosphere has become an indisputable significant …
pollutants in soils, wastewater, and atmosphere has become an indisputable significant …
[HTML][HTML] Developing efficient CuO nanoplate/ZnO nanoparticle hybrid photocatalysts for methylene blue degradation under visible light
CuO/ZnO nanocomposites with different components can overcome the drawbacks of
previously used photocatalysts owing to their promotion in charge separation and …
previously used photocatalysts owing to their promotion in charge separation and …
Hydrothermal synthesis of highly stable CuO nanostructures for efficient photocatalytic degradation of organic dyes
Highly stable CuO nanoleaves were synthesized by a simple hydrothermal method using tri-
sodium citrate as a structure directing agent. The surface shape of the CuO nanoleaves was …
sodium citrate as a structure directing agent. The surface shape of the CuO nanoleaves was …
[HTML][HTML] Mo-doped CuO nanomaterial for photocatalytic degradation of water pollutants under visible light
Recently, metal oxide-based nano-photocatalysts have gained much attention in waste
water remediation due to their outstanding properties. In this report, a novel Mo-doped CuO …
water remediation due to their outstanding properties. In this report, a novel Mo-doped CuO …
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- visible light photocatalytic degradation
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