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A comprehensive review on the boosted effects of anion vacancy in the photocatalytic and photoelectrochemical water-splitting: Focus on oxygen vacancy
An attractive solar energy-driven hydrogen production technology is the semiconductor-
based photocatalytic (PC) and photoelectrochemical (PEC) water splitting. The advantages …
based photocatalytic (PC) and photoelectrochemical (PEC) water splitting. The advantages …
A comprehensive review on the boosted effects of anion vacancy in the photocatalytic solar water splitting: focus on sulfur vacancy
In recent decades, a great interest in photocatalytic water splitting has been due to the
importance of sunlight water splitting hydrogen production as a renewable energy source to …
importance of sunlight water splitting hydrogen production as a renewable energy source to …
A Comprehensive Review on the Boosted Effects of Anion Vacancies in Photocatalytic Solar Water Splitting: Focus on gC3N4 with Carbon and Nitrogen Vacancies
As one of the best sustainable approaches for visible-light production of hydrogen (H2) to
meet energy demands, semiconductor-based photocatalysis has received broad interest in …
meet energy demands, semiconductor-based photocatalysis has received broad interest in …
Different strategies to improve photocatalytic activity of graphitic carbon nitride (g-C3N4) semiconductor nanomaterials for hydrogen generation
The field of semiconductor nanomaterial modification has made great strides and has the
potential to be applied to photocatalytic water splitting, which produces hydrogen. As …
potential to be applied to photocatalytic water splitting, which produces hydrogen. As …
Unveiling the enhanced photocatalytic degradation of metronidazole over green-synthesized Ag@ ZnCdS QDs Schottky heterojunction: Pathway, toxicity evaluation …
This study introduces an eco-friendly catalyst ZnCdS QDs/Ag nanocomposites (NCs)
through green synthesis by using plant extract from Sansevieria zeylanica. The ZnCdS …
through green synthesis by using plant extract from Sansevieria zeylanica. The ZnCdS …
Three-dimensional ordered FeTe-SmCoO3 nanocomposite: As efficient electrocatalyst for water oxidation
Abstract In this work, FeTe-SmCoO 3 is fabricated through a hydrothermal method and then
coated on a stainless steel (SS) substrate to enhance the electrocatalytic performance. The …
coated on a stainless steel (SS) substrate to enhance the electrocatalytic performance. The …
Z-scheme based photoactive ZnO: TiO2: CdO: g-C3N4 nanocomposites for advance oxidation process
Abstract Z-scheme-based hybrid [(ZnO 0.40: 0.60 TiO 2): CdO 1.00]: gC 3 N 4]
nanocomposites (NCs) were synthesized by sol-gel precipitation and thermal …
nanocomposites (NCs) were synthesized by sol-gel precipitation and thermal …
Synthesis of a new FeMoO4/AgI nanocomposite for enhanced RhB degradation under visible light
A new visible light-active FeMoO 4/AgI nanocomposites was synthesized via a
straightforward co-precipitation process. The resulting FeMoO 4/AgI nanocomposites …
straightforward co-precipitation process. The resulting FeMoO 4/AgI nanocomposites …
Oxygen vacancy mediated TiO2-x-MoS2/FTO heterostructure as an efficient photoanode for photoelectrochemical water splitting
To achieve a complete water splitting cycle, solar-assisted oxidation plays a crucial role.
Discovering efficient photoanodes capable of absorbing visible light is essential to enable …
Discovering efficient photoanodes capable of absorbing visible light is essential to enable …
CuS Nanoparticles/MIL-125 (Ti) Heterojunction as Photocatalyst for the Photodegradation of Tetracycline
X **, X Liu, J Fei, X Peng, X Wang, L Jiang… - ACS Applied Nano …, 2024 - ACS Publications
MIL-125 (Ti) is an attractive material in photocatalysis due to its notable characteristics,
including its expansive specific surface area, porous structure, high thermal stability, and …
including its expansive specific surface area, porous structure, high thermal stability, and …