Fabrication of amorphous Co–Cr–B and catalytic sodium borohydride hydrolysis for hydrogen generation | Journal of Materials Research | Cambridge Core
Studies of hydrogen isotope scrambling during the dehalogenation of aromatic chloro‐compounds with deuterium gas over palladium catalysts - Lockley - 2020 - Journal of Labelled Compounds and Radiopharmaceuticals - Wiley Online Library
Fabrication of amorphous Co–Cr–B and catalytic sodium borohydride hydrolysis for hydrogen generation | Journal of Materials Research | Cambridge Core
Synthesis of highly dispersed Pd nanoparticles with high activity for formic acid electro-oxidation | Journal of Materials Research | Cambridge Core
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Synthesis of highly dispersed Pd nanoparticles with high activity for formic acid electro-oxidation | Journal of Materials Research | Cambridge Core
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Amazon.com: Strategies for Palladium-Catalyzed Non-directed and Directed C bond H Bond Functionalization (Latest Trends in Palladium Chemistry): 9780128052549: Kapdi, Anant R., Maiti, Debabrata: Books
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N, S doped carbon dots—Plasmonic Au nanocomposites for visible-light photocatalytic reduction of nitroaromatics | Journal of Materials Research | Cambridge Core
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Synthesis of highly dispersed Pd nanoparticles with high activity for formic acid electro-oxidation | Journal of Materials Research | Cambridge Core
Oxygen reduction on bimodal nanoporous palladium–copper catalyst synthesized using sacrificial nanoporous copper | Journal of Materials Research | Cambridge Core
Highly Stable N-Doped Carbon-Supported Pd-Based Catalysts Prepared from Biomass Waste for H2 Production from Formic Acid | ACS Sustainable Chemistry & Engineering
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Fabrication of amorphous Co–Cr–B and catalytic sodium borohydride hydrolysis for hydrogen generation | Journal of Materials Research | Cambridge Core
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Fabrication of amorphous Co–Cr–B and catalytic sodium borohydride hydrolysis for hydrogen generation | Journal of Materials Research | Cambridge Core
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Artificial formate oxidase reactivity with nano-palladium embedded in intrinsically microporous polyamine (Pd@PIM-EA-TB) driving the H2O2 – 3,5,3′,5′-tetramethylbenzidine (TMB) colour reaction - ScienceDirect