Journal Article (188)
81.
Journal Article
7 (20), 1700835 (2017)
The Space Confinement Approach Using Hollow Graphitic Spheres to Unveil Activity and Stability of Pt–Co Nanocatalysts for PEMFC. Advanced Energy Materials 82.
Journal Article
222, pp. 1056 - 1063 (2016)
Electrochemical dissolution of gold in presence of chloride and bromide traces studied by on-line electrochemical inductively coupled plasma mass spectrometry. Electrochimica Acta 83.
Journal Article
6 (12), pp. 8058 - 8068 (2016)
Structure-Activity-Stability Relationships for Space-Confined PtxNiy Nanoparticles in the Oxygen Reduction Reaction. ACS Catalysis 84.
Journal Article
29, pp. 275 - 298 (2016)
Durability of platinum-based fuel cell electrocatalysts: Dissolution of bulk and nanoscale platinum. Nano Energy 85.
Journal Article
343, pp. 248 - 256 (2016)
Screening of material libraries for electrochemical CO2 reduction catalysts - Improving selectivity of Cu by mixing with Co. Journal of Catalysis 86.
Journal Article
3 (10), pp. 1524 - 1536 (2016)
Experimental Methodologies to Understand Degradation of Nanostructured Electrocatalysts for PEM Fuel Cells: Advances and Opportunities. ChemElectroChem 87.
Journal Article
28 (10), pp. 2256 - 2269 (2016)
A Critical Review on Hydrogen Evolution Electrocatalysis: Re-exploring the Volcano-relationship. Electroanalysis 88.
Journal Article
211, pp. 744 - 753 (2016)
High temperature stability study of carbon supported high surface area catalysts – Expanding the boundaries of ex-situ diagnostics. Electrochimica Acta 89.
Journal Article
3 (9), pp. 1415 - 1421 (2016)
Effect of Polarisation Mimicking Cathodic Electrodeposition Coating on Industrially Relevant Metal Substrates with ZrO2-Based Conversion Coatings. ChemElectroChem 90.
Journal Article
49 (9), pp. 2015 - 2022 (2016)
Importance and Challenges of Electrochemical in Situ Liquid Cell Electron Microscopy for Energy Conversion Research. Accounts of Chemical Research 91.
Journal Article
774, pp. 102 - 110 (2016)
Oxygen evolution activity and stability of iridium in acidic media. Part 2. – Electrochemically Grown Hydrous Iridium Oxide. Journal of Electroanalytical Chemistry 92.
Journal Article
163 (11), pp. F3132 - F3138 (2016)
Activity and stability of electrochemically and thermally treated iridium for the oxygen evolution reaction. Journal of the Electrochemical Society 93.
Journal Article
773, pp. 69 - 78 (2016)
Oxygen evolution activity and stability of iridium in acidic media. Part 1. – Metallic iridium. Journal of Electroanalytical Chemistry 94.
Journal Article
163 (11), pp. F3099 - F3104 (2016)
On the origin of the improved ruthenium stability in RuO2 - IrO2 mixed oxides. Journal of the Electrochemical Society 95.
Journal Article
6 (5), pp. 3136 - 3146 (2016)
Minimizing Operando Demetallation of Fe–N–C Electrocatalysts in Acidic Medium. ACS Catalysis 96.
Journal Article
262, p. 1 (2016)
Electrocatalysis for sustainable energy conversion or electrocatalysis today Preface. Catalysis Today 97.
Journal Article
262, pp. 170 - 180 (2016)
Oxygen and hydrogen evolution reactions on Ru, RuO2, Ir, and IrO2 thin film electrodes in acidic and alkaline electrolytes: A comparative study on activity and stability. Catalysis Today 98.
Journal Article
7, 10922 (2016)
Tuning selectivity of electrochemical reactions by atomically dispersed platinum catalyst. Nature Communications 99.
Journal Article
6 (3), pp. 1630 - 1634 (2016)
Positive Effect of Surface Doping with Au on the Stability of Pt-Based Electrocatalysts. ACS Catalysis 100.
Journal Article
163 (3), pp. H228 - H233 (2016)
Pt Sub-Monolayer on Au: System Stability and Insights into Platinum Electrochemical Dissolution. Journal of the Electrochemical Society