专题:Nanoporous metals and alloys

This cluster of papers focuses on the evolution, fabrication, characterization, and diverse applications of nanoporous metals, particularly emphasizing dealloying as a key technique. The research covers areas such as catalysis, surface chemistry, electrochemical applications, mechanical properties, plasmonic metamaterials, and energy storage. It also explores the use of nanoporous metals in biosensor applications.
最新文献
Core–Shell Confinement Blocks Hydride Formation: The Impact of Surface Oxides on Hydrogen Sorption in Nanoporous FeTi

preprint Full Text OpenAlex

Self-supported TiCoCuMoNi electrode as a high-efficiency electrocatalyst for overall water splitting

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Boosting supercapacitive performance of CoS2 nanostructures through phosphorous doping strategy

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Binder-free NiCoCu/graphene aerogel electrodes for supercapacitors

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Alkaline-induced surface reconstruction to Ni/NiO/Ni(OH)2 enables efficient hydrogen evolution

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Plasmon-Assisted Electrochemical Epoxidation using Water as an Oxidant

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Interpretable machine learning enables mechanistic insights and predictive control for clean and sustainable copper electrorefining

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Ru-etching and S-doping synergistically modified CuCoO2 electrocatalysts for enhanced oxygen evolution activity

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Liquid NaK‐Enabled Strategy for the Facile and Scalable Synthesis of Porous Fe/Co/Ni‐Based Materials for Magnetically Enhanced OER Catalysis

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Atomic-scale dynamics of a bulk-diffusion-driven nonconservative phase transformation in vapor-phase dealloying

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近5年高被引文献
Mesoporous multimetallic nanospheres with exposed highly entropic alloy sites

article Full Text OpenAlex 239 FWCI15.191

Hierarchically Structured Black Gold Film with Ultrahigh Porosity for Solar Steam Generation

article Full Text OpenAlex 209 FWCI9.6737

A freestanding nanoporous NiCoFeMoMn high-entropy alloy as an efficient electrocatalyst for rapid water splitting

article Full Text OpenAlex 186 FWCI8.5256

Diffusion in Nanoporous Materials

article Full Text OpenAlex 185 FWCI0.0749

Cobalt Nanowires Technology in The Approximate Dimensions of ۱ to ۱۰۰ nm, Where Only one Phenomenon of its Kind Offers Descriptive Applications, is in The Capacity of Matter.    

preprint Full Text OpenAlex 173 FWCI21.389

Tuning Mass Transport in Electrocatalysis Down to Sub‐5 nm through Nanoscale Grade Separation

article Full Text OpenAlex 153 FWCI7.321

Recent Progress in High Entropy Alloys for Electrocatalysts

article Full Text OpenAlex 140 FWCI6.3096

Dilute Alloys Based on Au, Ag, or Cu for Efficient Catalysis: From Synthesis to Active Sites

review Full Text OpenAlex 137 FWCI10.042

A closely packed Pt1.5Ni1−x/Ni–N–C hybrid for relay catalysis towards oxygen reduction

article Full Text OpenAlex 121 FWCI5.4866

Defect Engineering of a High‐Entropy Metallic Glass Surface for High‐Performance Overall Water Splitting at Ampere‐Level Current Densities

article Full Text OpenAlex 113 FWCI7.1904