Understanding the bifunctional catalytic ability of electrocatalysts for oxygen evolution reaction and urea oxidation Reaction: Recent advances and perspectives

L Fei, H Sun, X Xu, Y Li, R Ran, W Zhou… - Chemical Engineering …, 2023 - Elsevier
Significant progress has been made in the discovery of bifunctional electrocatalysts for
energy storage and conversion systems. Particularly, high-performance bifunctional …

(Fe-Co-Ni-Zn)-Based Metal–Organic Framework-Derived Electrocatalyst for Zinc–Air Batteries

A Adhikari, K Chhetri, R Rai, D Acharya, J Kunwar… - Nanomaterials, 2023 - mdpi.com
Zinc–air batteries (ZABs) have garnered significant interest as a viable substitute for lithium-
ion batteries (LIBs), primarily due to their impressive energy density and low cost. However …

High-performance carbon@ metal oxide nanocomposites derived metal–organic framework-perovskite hybrid boosted microwave-induced catalytic degradation of …

Y Wang, H Li, J Xu, J Yu, J Wang, H Jiang, C Li… - Separation and …, 2024 - Elsevier
Abstract Herein, FeCo@ C-LFC x (FeCo@ C-xLaFeCoO 3) materials were prepared by high-
temperature carbonation based on the construction of Fe/Co metal–organic framework …

Boosting ORR/OER bifunctional electrocatalysis by promoting electronic redistribution of Fe-NC on CoFe-FeNC for ultra-long rechargeable Zn-air batteries

S Zhang, J Yang, L Yang, T Yang, Y Liu, L Zhou… - Applied Catalysis B …, 2024 - Elsevier
Fe-NC materials are among the most promising platinum group metals-free catalysts for air
cathode of Zn-air batteries (ZABs). However, they are still limited by sluggish reaction …

Bimetallic–organic frameworks derived heterointerface arrangements of V, N co-doped Co/Fe–selenide nanosheets electrocatalyst for efficient overall water-splitting

RB Ghising, UN Pan, MR Kandel, PP Dhakal… - Materials Today …, 2023 - Elsevier
Due to their high specific surface area, modifiable chemical functionality, and accessibility of
bountiful active sites, the metal–organic framework derivatives hold great potential for …

Synchronous Surface‐Interface and Crystal‐Phase Engineered Multifaceted Hybrid Nanostructure of Fe‐(1T)‐VSe2 Nanosheet and Fe‐CoSe2 Nanorods Doped …

UN Pan, MR Kandel, AK Tomar, NH Kim, JH Lee - Small, 2024 - Wiley Online Library
Two different nanostructures of two dissimilar highly‐potent active electrocatalysts, P‐
dopped metallic‐(1T)‐Fe‐VSe2 (P, Fe‐1T‐VSe2) nanosheet and P‐dopped Fe‐CoSe2 (P …

Heterointerface of vanadium telluride and zinc iron telluride nanosheets for highly efficient hydrogen production via water and urea electrolysis

J Gautam, D Chanda, MM Meshesha, SG Jang… - Chemical Engineering …, 2023 - Elsevier
Interface design is a promising strategy for electrocatalysis to optimize charge transfer ability
and active sites of a catalyst. Herein, interfacially coupled vanadium telluride and zinc iron …

Manganese‐Doped Bimetallic (Co,Ni)2P Integrated CoP in N,S Co−Doped Carbon: Unveiling a Compatible Hybrid Electrocatalyst for Overall Water Splitting

MR Kandel, UN Pan, PP Dhakal, RB Ghising, S Sidra… - Small, 2024 - Wiley Online Library
Rational design of highly efficient noble‐metal‐unbound electrodes for hydrogen and
oxygen production at increased current density is crucial for robust water‐splitting. A facile …

Ruthenium single atoms implanted on NiS 2-FeS 2 nanosheet heterostructures for efficacious water electrolysis

RB Ghising, UN Pan, MR Kandel, PP Dhakal… - Journal of Materials …, 2024 - pubs.rsc.org
The catalytic potential of single atom incorporated heterostructures holds substantial
promise because of their ability to offer customizable chemical functionality and abundant …

Construction of Heterojunction‐Rich Metal Nitrides Porous Nanosheets Electrocatalyst for Alkaline Water/Seawater Splitting at Large Current Density

X Shen, H Li, T Ma, Q Jiao, Y Zhao, H Li, C Feng - Small, 2024 - Wiley Online Library
The exploiting electrocatalysts for water/seawater electrolysis with remarkable activity and
outstanding durability at industrial grade current density remains a huge challenge. Herein …