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A highly active nickel electrocatalyst shows excellent selectivity for CO2 reduction in acidic mediaSelf assembled composites of luminescent Ru(II) metallopolymers and the Dawson polyoxometalate α-[Mo18O54(SO4)2]4-.Electron transfer to covalently immobilized Keggin polyoxotungstates on gold.Photochemical CO2 reduction in water using a co-immobilised nickel catalyst and a visible light sensitiser.Photochemical CO2 reduction using structurally controlled g-C3N4.Directing the mechanism of CO2 reduction by a Mn catalyst through surface immobilization.Highly luminescent Ru(ii) metallopolymers: photonic and redox properties in solution and as thin filmsElectronic and photophysical properties of adducts of [Ru(bpy)3]2+ and Dawson-type sulfite polyoxomolybdates α/β-[Mo18O54(SO3)2]4−Visible light sensitized photocurrent generation from electrostatically assembled thin films of [Ru(bpy)3]2+ and the polyoxometalate γ*-[W18O54(SO4)2]4−: Optimizing performance in a low electrolyte mediumEnhanced photocurrent production from thin films of Ru(ii) metallopolymer/Dawson polyoxotungstate adducts under visible irradiationRuthenium Metallopolymer: Dawson Polyoxomolybdate α-[Mo18O54(SO4)2]4– Adduct Films: Sensitization for Visible PhotoelectrocatalysisElectrocatalytic CO2 reduction with a membrane supported manganese catalyst in aqueous solutionA functionalised nickel cyclam catalyst for CO₂ reduction: electrocatalysis, semiconductor surface immobilisation and light-driven electron transferInvestigating the effects of pyridine and poly(4-vinylpyridine) on CO2 reduction electrocatalysis at gold electrodes using in situ surface-enhanced Raman spectroelectrochemistry
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description
hulumtues
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researcher
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wetenschapper
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հետազոտող
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name
James J Walsh
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James J Walsh
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James J Walsh
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James J Walsh
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James J Walsh
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type
label
James J Walsh
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James J Walsh
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James J Walsh
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James J Walsh
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James J Walsh
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Jamie
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James J Walsh
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James J Walsh
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James J Walsh
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James J Walsh
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James J Walsh
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P496
0000-0003-4862-8449