Kuan-Wen Wang
0000-0002-4972-0143
National Central University
13 papers found
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Solvent-Free Synthesis Enables Encapsulation of Subnanometric FeOx Clusters in Pure Siliceous Zeolites for Efficient Catalytic Oxidation Reactions
The sub-nanometer In2O clusters on Ag nanoparticles with highly selective electrochemical CO2 reduction to formate
Surface anchored atomic cobalt-oxide species coupled with oxygen vacancies boost the CO-production yield of Pd nanoparticles
Tri-atomic Pt clusters induce effective pathways in a Cocore–Pdshell nanocatalyst surface for a high-performance oxygen reduction reaction
NiOx-supported PtRh nanoalloy enables high-performance hydrogen evolution reaction under universal pH conditions
Bifunctional Pt–SnOx nanorods for enhanced oxygen reduction and hydrogen evolution reactions
Ir-oxide mediated surface restructure and corresponding impacts on durability of bimetallic NiOx@Pd nanocatalysts in oxygen reduction reaction
Heterogeneous assembly of Pt-clusters on hierarchically structured CoOx@SnPd2@SnO2 quaternary nanocatalysts manifesting oxygen reduction reaction performance
Sub-nanometer Pt cluster decoration enhances the oxygen reduction reaction performances of NiOx supported Pd nano-islands
A highly mismatched NiO2-to-Pd hetero-structure as an efficient nanocatalyst for the hydrogen evolution reaction
Promoting formic acid oxidation performance of Pd nanoparticles via Pt and Ru atom mediated surface engineering
Local synergetic collaboration between Pd and local tetrahedral symmetric Ni oxide enables ultra-high-performance CO2 thermal methanation
Rapid crystal growth of bimetallic PdPt nanocrystals with surface atomic Pt cluster decoration provides promising oxygen reduction activity
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