Recent progress in transition metal hexacyanometallates: From structure to properties and functionality

Y Avila, P Acevedo-Pena, L Reguera… - Coordination Chemistry …, 2022 - Elsevier
The coordination chemistry of transition metal hexacyanometallates is a field of continuous
advances and emerging applications. In the last three decades, relevant progress has been …

Electronic structure modulation in Prussian blue and its analogs: Progress and challenges in perspective of energy-related catalysis

B Singh, Y Arya, GK Lahiri, A Indra - Coordination Chemistry Reviews, 2025 - Elsevier
Prussian blue, a more than three hundred years old inorganic coordination polymer, has
drawn immense interest in the field of energy conversion. Prussian blue (PB) and Prussian …

Deciphering ligand-controlled charge transfer from a metal–organic framework to cadmium sulfide for enhanced photocatalytic hydrogen evolution reaction

AK Singh, A Jaryal, SK Patel, D Kumar… - Journal of Materials …, 2023 - pubs.rsc.org
The suitable choice of a cocatalyst plays an important role in charge separation and
transport and hence the hydrogen evolution activity of the photocatalyst. Herein, we have …

Synthesis and Applications of TiO2‐based Nanostructures as Photocatalytic Materials

N Li, W Zhang, D Wang, G Li… - Chemistry–An Asian …, 2022 - Wiley Online Library
TiO2 photocatalysis, as an energy‐saving, high‐efficiency and green technology, has a wide
range of applications in sewage treatment, cancer treatment, hydrogen production …

Photocatalytic water oxidation with a CoFe Prussian blue analogue–layered niobate hybrid material

SS Akbari, U Unal, F Karadas - ACS Applied Energy Materials, 2021 - ACS Publications
A semiconductor–catalyst hybrid assembly for photocatalytic water oxidation was obtained
by preparing CoFe Prussian blue particles on Dion–Jacobson type niobate nanosheets …

Multifunctional Ultrathin Amorphous CoFe-Prussian Blue Analogue Catalysts for Efficiently Boosting the Oxygen Evolution Activity of Antimony-Doped TiO2 Nanorods …

D Pal, D Maity, A Sarkar, D De, A Raj… - ACS Applied Energy …, 2022 - ACS Publications
Developing efficient, durable, and inexpensive oxygen evolution catalysts (OECs) have no
alternative to designing efficient photoanodes for water splitting. Here, we demonstrate a …

Electrodeposited cobalt hexacyanoferrate electrode as a non-enzymatic glucose sensor under neutral conditions

RC Oglou, TGU Ghobadi, E Ozbay, F Karadas - Analytica Chimica Acta, 2021 - Elsevier
A CoFe Prussian blue analogue (CoFe PB) modified FTO electrode, prepared via a facile
electrodeposition method, is investigated as a non-enzymatic glucose sensor under neutral …

Light-driven water oxidation with ligand-engineered prussian blue analogues

AA Ahmad, TG Ulusoy Ghobadi, M Buyuktemiz… - Inorganic …, 2022 - ACS Publications
The elucidation of the ideal coordination environment of a catalytic site has been at the heart
of catalytic applications. Herein, we show that the water oxidation activities of catalytic cobalt …

Hybrid CuFe–CoFe Prussian Blue Catalysts on BiVO4 for Enhanced Charge Separation and Injection for Photoelectrochemical Water Oxidation

E Usman, M Barzgar Vishlaghi… - ACS Applied Energy …, 2022 - ACS Publications
The utilization of cocatalysts on the photoelectrode surface is a feasible strategy to achieve a
high photocurrent density in the photoelectrochemical water oxidation process. The catalysts …

Prussian Blue Analogues Derived Materials for Photocatalysis

X Han, WW He, T Zhou, S Ma - Inorganic Chemistry Frontiers, 2024 - pubs.rsc.org
Prussian Blue (PB) and Prussian Blue analogues (PBAs) as coordination polymers (CPs)
are excellent catalysts, which have already been widely studied in the field of …