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Origin and prevention of broad particle size distributions in carbon-supported palladium catalysts prepared by liquid-phase reduction - ScienceDirect
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PDF) Change in the particle size of highly dispersed palladium black in hydrochloric acid solutions at elevated temperatures | Sergey Zharkov - Academia.edu
Hydrodeoxygenation of propanoic acid over silica-supported palladium: effect of metal particle size - Catalysis Science & Technology (RSC Publishing)
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Hampered PdO Redox Dynamics by Water Suppresses Lean Methane Oxidation over Realistic Palladium Catalysts - Velin - 2021 - ChemCatChem - Wiley Online Library
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Disentangling the size-dependent geometric and electronic effects of palladium nanocatalysts beyond selectivity | Science Advances
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The origin of palladium particle size effects in the direct synthesis of H2O2: Is smaller better? - ScienceDirect
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Palladium particle size distribution in the activated 1 wt.% Pd/MgO... | Download Scientific Diagram
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Development of nitrogen-doped bamboo-like carbon nanotubes coated zeolite beads as “support on support” catalyst for the catalytic hydrogenation of olefins | SpringerLink
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Catalysts | Free Full-Text | Polyvinylpyridine-Supported Palladium Nanoparticles: An Efficient Catalyst for Suzuki–Miyaura Coupling Reactions
Palladium dispersion effects on wet methane oxidation kinetics - Catalysis Science & Technology (RSC Publishing)
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Palladium catalyzed radical relay for the oxidative cross-coupling of quinolines | Nature Communications
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Relationship between Particle Size and Efficiency of Palladium-Polyvinyl Alcohol(Pd-PVA) Catalysts * | PNAS
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Palladium Nanoparticles by Electrospinning from Poly(acrylonitrile-co-acrylic acid)−PdCl2 Solutions. Relations between Preparation Conditions, Particle Size, and Catalytic Activity | Macromolecules
Defining the Qualities of High-Quality Palladium on Carbon Catalysts for Hydrogenolysis | Organic Process Research & Development
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Configuration of the palladium nanoparticles studied (blue, palladium... | Download Scientific Diagram
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Small palladium islands embedded in palladium–tungsten bimetallic nanoparticles form catalytic hotspots for oxygen reduction | Nature Communications
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