Review of recent advancements in the biomimicry of structural colors

L Feng, F Wang, H Luo, B Qiu - Dyes and Pigments, 2023 - Elsevier
Organisms have evolved passively in nature with well-defined macroscopic effects and
corresponding nanostructures under the microscope. Stunning structural colors are the …

Recent Advance on Three-Dimensional Ordered Macroporous Metal Oxide-based Photoelectrodes for Photoelectrochemical Water Splitting

R Jia, Y Wang, A Li, C Cheng - Materials Chemistry Frontiers, 2024 - pubs.rsc.org
Photoelectrochemical (PEC) water splitting, using semiconductor photoelectrodes to convert
solar energy into clean hydrogen energy, is a promising solution to simultaneously address …

The PEC performance of BiVO 4 was enhanced by preparing the CoFeB i/BiVO 4 photoanode using an ultrafast photoassisted electrodeposition method

X Zhao, Y Rui, Y Bai, J Huang, H She, J Peng… - …, 2023 - pubs.rsc.org
BiVO4 is a promising material for water oxidation due to its suitable physical and chemical
properties. However, the BiVO4 film has limitations such as poor electron transport, surface …

[HTML][HTML] Bilayer TiO2/Mo-BiVO4 Photoelectrocatalysts for Ibuprofen Degradation

M Pylarinou, E Sakellis, S Gardelis, V Psycharis… - Materials, 2025 - mdpi.com
Heterojunction formation between BiVO4 nanomaterials and benchmark semiconductor
photocatalysts has been keenly pursued as a promising approach to improve charge …

Enhanced photocatalytic reactivity of nanojunction titania segregated by graphene oxide for decolorization of cationic pollutant and antibacterial applications

JS Alnawmasi - Biomass Conversion and Biorefinery, 2024 - Springer
A high bandgap of titanium dioxide (TiO2) and a very high electron–hole recombination rate
hindered its photocatalytic activity under a wide range of irradiation. Therefore, using …

Enhancement the catalytic activity of TiO2 inverse opal nanostructures through binary and ternary heterojunction

IM Abdelsalam, K Pham, R Khan, N Tkachenko… - Available at SSRN … - papers.ssrn.com
Efficient light harvesting through titania inverse opal nanostructures (Ti IOs) can be achieved
by strategically engineering binary and ternary heterojunctions with various metal oxides. In …