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Chemsuschem|July 21, 2022
Alpha-Nickel Hydroxide Coating of Metallic Nickel for Enhanced Alkaline Hydrogen EvolutionSong Xue, Yunchang Liang, Shujin Hou, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|November 17, 2022
In Situ Monitoring of the Surface Evolution of a Silver Electrode from Polycrystalline to Well-Defined StructuresHongjiao Li, Yunchang Liang, Wenbo Ju, et al.
ACS Applied Materials & Interfaces|March 15, 2018
Multistage Mechanism of Lithium Intercalation into Graphite Anodes in the Presence of the Solid Electrolyte InterfaceFranz Dinkelacker, Philipp Marzak, Jeongsik Yun, et al.
Nature|September 8, 2017
Direct instrumental identification of catalytically active surface sitesJonas H K Pfisterer, Yunchang Liang, Oliver Schneider, et al.
Small Methods|December 20, 2021
In Situ Quantification of the Local Electrocatalytic Activity via Electrochemical Scanning Tunneling MicroscopyRichard W Haid, Regina M Kluge, Yunchang Liang, et al.
ACS Nano|October 14, 2025
Spin-Polarized Electron Transport Promotes the Oxygen Reduction ReactionPriscila Vensaus, Yunchang Liang, Jean-Philippe Ansermet, et al.
ACS Applied Materials & Interfaces|March 14, 2019
Revealing Active Sites for Hydrogen Evolution at Pt and Pd Atomic Layers on Au SurfacesYunchang Liang, Christoph Csoklich, David McLaughlin, et al.
Small Methods|September 7, 2025
Quantifying the Reduction of OER Overpotential on Magnetic Electrocatalysts Under Magnetic FieldsYu Xia, Weiyuan Chen, Priscila Vensaus, et al.
Nature Communications|April 3, 2024
Enhancement of electrocatalysis through magnetic field effects on mass transportPriscila Vensaus, Yunchang Liang, Jean-Philippe Ansermet, et al.
Nanotechnology|January 8, 2026
Ni nanoclusters as oxygen evolution catalysts on porous supports for electro- and photocatalysisPriscila Vensaus, Yunchang Liang, Rafael Cichelero, et al.
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