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The 35 checked references that resolve
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resolves10.1039/c9cy01728cIr nanoparticles with ultrahigh dispersion as oxygen evolution reaction (OER) catalysts: synthesis and activity benchmarking
resolves10.1021/jacs.5b03333Efficient Removal of Organic Ligands from Supported Nanocrystals by Fast Thermal Annealing Enables Catalytic Studies on Well-Defined Active Phases
resolves10.1021/nl3032795Octahedral PtNi Nanoparticle Catalysts: Exceptional Oxygen Reduction Activity by Tuning the Alloy Particle Surface Composition
resolves10.1021/acscatal.1c01496Elucidating Pt-Based Nanocomposite Catalysts for the Oxygen Reduction Reaction in Rotating Disk Electrode and Gas Diffusion Electrode Measurements
resolves10.1039/c7cs00777aThe polyol process: a unique method for easy access to metal nanoparticles with tailored sizes, shapes and compositions
resolves10.1016/j.jpowsour.2017.03.140pH matters: The influence of the catalyst ink on the oxygen reduction activity determined in thin film rotating disk electrode measurements
resolves10.1021/acscatal.1c00652The Oxygen Reduction Reaction on Pt: Why Particle Size and Interparticle Distance Matter
resolves10.1016/j.cis.2020.102340Effect of synthetic surfactants on the environment and the potential for substitution by biosurfactants
resolves10.1515/ntrev-2012-0079Surfactant-free solution-based synthesis of metallic nanoparticles toward efficient use of the nanoparticles’ surfaces and their application in catalysis and chemo-/biosensing
resolves10.1088/1361-6528/ab55bdEffective size separation of laser-generated, surfactant-free nanoparticles by continuous centrifugation
resolves10.1021/acsomega.9b03828<i>N</i>,<i>N</i>-Dimethylformamide-Protected Single-Sized Metal Nanoparticles and Their Use as Catalysts for Organic Transformations
resolves10.1039/c7ta00628dNanoparticles in a box: a concept to isolate, store and re-use colloidal surfactant-free precious metal nanoparticles
resolves10.1016/j.jpowsour.2016.02.091Effects of carbon supports on Pt distribution, ionomer coverage and cathode performance for polymer electrolyte fuel cells
resolves10.1021/acssuschemeng.9b00681Monovalent Alkali Cations: Simple and Eco-Friendly Stabilizers for Surfactant-Free Precious Metal Nanoparticle Colloids
resolves10.1016/j.cis.2020.102300From platinum atoms in molecules to colloidal nanoparticles: A review on reduction, nucleation and growth mechanisms
resolves10.1002/cctc.202001858Beyond Active Site Design: A Surfactant‐Free Toolbox Approach for Optimized Supported Nanoparticle Catalysts
resolves10.1002/anie.201807450Colloids for Catalysts: A Concept for the Preparation of Superior Catalysts of Industrial Relevance
resolves10.1002/cctc.201900666Perspective of Surfactant‐Free Colloidal Nanoparticles in Heterogeneous Catalysis
resolves10.1021/ja511349pFunctionalization of Platinum Nanoparticles with <scp>l</scp>-Proline: Simultaneous Enhancements of Catalytic Activity and Selectivity
resolves10.1021/acs.jpcc.5b03863Surface Chemistry of “Unprotected” Nanoparticles: A Spectroscopic Investigation on Colloidal Particles
resolves10.1021/cm0000853Preparation of Tractable Platinum, Rhodium, and Ruthenium Nanoclusters with Small Particle Size in Organic Media
resolves10.1021/acsnano.5b01579Turkevich in New Robes: Key Questions Answered for the Most Common Gold Nanoparticle Synthesis
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