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Multi-walled carbon nanotubes with embedded nickel sulphide as an effective electrocatalyst for Bi-functional water splitting
Water-splitting presents a viable solution to expanding energy needs. To maximise water-
splitting performance, transition metal sulphides, a very efficient electrocatalyst, have been …
splitting performance, transition metal sulphides, a very efficient electrocatalyst, have been …
Electrochemical investigation of C-doped CoFe2O4/Fe2O3 nanostructures for efficient electrochemical water splitting
For the energy conversion technology, it is crucial to design catalysts for water splitting
applications namely Oxygen evolution reaction and Hydrogen evolution reaction (OER and …
applications namely Oxygen evolution reaction and Hydrogen evolution reaction (OER and …
Fabrication of Ni2O2 (OH)/CNTs-based electrocatalyst for efficient bifunctional electrocatalytic water splitting
Exploring the cost-effective and earth-abundant electrocatalyst for efficient bifunctional
activity is very challenging these days. The main reason is very slow OER (oxygen evolution …
activity is very challenging these days. The main reason is very slow OER (oxygen evolution …
Synthesis and characterisation of MXene based-LDH photocatalytic materials for the removal of toxic pharmaceutical effluents
The synthesis of highly stable, cost-effective, and efficient photocatalyst materials is the
major concern for wastewater remediation in the field of nanotechnology. Herein, the NiFe …
major concern for wastewater remediation in the field of nanotechnology. Herein, the NiFe …
Revolutionizing water oxidation: NiSe/NiO heterostructure as a high-performing oxygen evolution reaction catalyst
The sluggish kinetics of electrolysis of water is the major challenge which hampers the
practical dissociation of water in H 2 and O 2 gas. Electrocatalysts are particularly required …
practical dissociation of water in H 2 and O 2 gas. Electrocatalysts are particularly required …
Electrochemical performance enhancement of MnO 2 nanowires through silver incorporation for next-generation supercapacitors
Increased demand for effective energy storage systems emphasizes the urgency to
overcome the bottlenecks of existing technology. Supercapacitors (SCs), owing to their high …
overcome the bottlenecks of existing technology. Supercapacitors (SCs), owing to their high …
Recent Progress in Halogen‐Doped Single‐Atom Catalysts for Electrochemical Reactions
S Cai, Q Wang, N Zhang, C Chen, H Zhang… - Carbon …, 2025 - Wiley Online Library
Since the concept of single‐atom catalysts (SACs) was first proposed in 2011, related
research has grown exponentially, establishing SACs as a highly active research field …
research has grown exponentially, establishing SACs as a highly active research field …
Rational design of novel NiBi-LDH with enhanced overall water splitting activity
Layered double hydroxides (LDHs) are among the most important materials considered in
the redox reaction of water electrolysis. In this study, a new LDH containing Ni and Bi in the …
the redox reaction of water electrolysis. In this study, a new LDH containing Ni and Bi in the …
P–Nb4C3Tx Nanosheets Fabricated by a Low-Temperature Phosphating Process as Electrocatalysts for Electrochemical Water Splitting
C Xu, F Wu, C Hu, L Yang, S Yin - ACS Applied Nano Materials, 2023 - ACS Publications
Electrochemical water splitting technology is a green, clean, and pollution-free energy
technology that can produce hydrogen (H2) and oxygen (O2), which is of great significance …
technology that can produce hydrogen (H2) and oxygen (O2), which is of great significance …
Synthesis of La–Mg–Ni@ Ag composite catalyst and its catalytic performance for borohydride
M Ji, X Tian, X Liu, Y Zhang, X Zhang, J Han… - International Journal of …, 2024 - Elsevier
Direct borohydride fuel cells (DBFC) have a promising future as a new type of fuel cell with a
high energy conversion rate and a green profile, the performance of which is mainly …
high energy conversion rate and a green profile, the performance of which is mainly …