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In situ electrochemical synthesis of superhydrophilic NiCoMn trimetallic-alloy nanosheets via the dynamic hydrogen bubble template method for develo** high …
This article discusses the use of the dynamic hydrogen bubble template (DHBT) technique
for in situ electrodeposition and simultaneous formation of NiCoMn trimetallic alloy …
for in situ electrodeposition and simultaneous formation of NiCoMn trimetallic alloy …
Electrochemically structured copper current collectors for application in energy conversion and storage: a review
Copper current collectors (Cu CCs) impact the production technology and performance of
many electrochemical devices by their unique properties and reliable operation. The …
many electrochemical devices by their unique properties and reliable operation. The …
Highly stable 1T-MoS 2 by magneto-hydrothermal synthesis with Ru modification for efficient hydrogen evolution reaction
L Zhu, Z Wang, C Li, H Li, Y Huang, H Li… - Journal of Materials …, 2022 - pubs.rsc.org
Obtaining highly stable 1T-MoS2 is very crucial to investigate the hydrogen evolution
reaction (HER) due to the thermodynamically metastable characterization of 1T-MoS2 …
reaction (HER) due to the thermodynamically metastable characterization of 1T-MoS2 …
Optimally Generated Active Sites on Nanostructured Nickel Sulfide Electrocatalysts for Designing Economical Electrolyzers
M Khairy, X Liu, Z Long - ACS Applied Energy Materials, 2024 - ACS Publications
Development of electrocatalysts is an obstacle in the way of designing durable and low-cost
water splitting systems. Thus, particular attention should be paid to researching the catalyst …
water splitting systems. Thus, particular attention should be paid to researching the catalyst …
Built-in electric field control of electron redistribution (NiFe-based electrocatalyst) with efficient overall water splitting at industrial temperature
L Mu, G Zhao, W Liao, N Zhao, X Xu - Journal of Colloid and Interface …, 2025 - Elsevier
Nickel-iron layered double hydroxide (NiFe-LDH) is hindered in its further development in
water splitting due to its slow kinetics of oxygen evolution reaction (OER) and hydrogen …
water splitting due to its slow kinetics of oxygen evolution reaction (OER) and hydrogen …
Construction of binder-free 3-D porous NiMn LDH electrode materials for high performance asymmetric supercapacitors using dynamic hydrogen bubbles as template
Y Shi, J Xue, Y Yu, N Liu, C Tang - Journal of Alloys and Compounds, 2024 - Elsevier
Abstract Three-dimensional porous Ni/NiMn layered double hydroxides (3-D Ni/NiMn LDH)
with enhanced specific capacitance and superior cycle stability were loaded on nickel foam …
with enhanced specific capacitance and superior cycle stability were loaded on nickel foam …
Defective NiMn LDH prepared using hydrogen evolution coupled electrodeposition for highly efficient oxygen evolution reaction
M Sun, J Wang - Journal of Materials Chemistry A, 2023 - pubs.rsc.org
Defect engineering is widely acknowledged as an effective strategy for exposing catalytically
active sites. However, many post-treatment approaches tend to be intricate and compromise …
active sites. However, many post-treatment approaches tend to be intricate and compromise …
Manufacturing Free‐Standing, Porous Metallic Layers with Dynamic Hydrogen Bubble Templating
The 3D structure (ie, microstructure) of porous electrodes governs the performance of
emerging electrochemical technologies such as fuel cells, electrolysis, and batteries …
emerging electrochemical technologies such as fuel cells, electrolysis, and batteries …
Computational Model of Two-Phase Mass Transport Dynamics for pH-Buffered Hydrogen Evolution Reactions in Porous Electrodes
Neutral/near-neutral water electrolysis is promising to reduce the overall cost of industrial
hydrogen production. However, the current studies rarely concern the coupled interactions …
hydrogen production. However, the current studies rarely concern the coupled interactions …
Unraveling the Fundamental Concepts of Superaerophobic/Superhydrophilic Electrocatalysts for Highly Efficient Water Electrolysis: Implications for Future Research
Electrochemical water splitting is a highly effective method for carbon‐free hydrogen
production. While significant efforts have been made to develop efficient and cost‐effective …
production. While significant efforts have been made to develop efficient and cost‐effective …