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Publications by Jonathan K. Bartley
Identification of the Catalytically Active Component of Cu–Zr–O Catalyst for the Hydrogenation of Levulinic Acid to Γ-Valerolactone
Green Chemistry
Environmental Chemistry
Pollution
Related publications
Vapor-Phase Hydrogenation of Levulinic Acid to Γ-Valerolactone Over Cu-Ni Bimetallic Catalysts
Catalysis Communications
Technology
Catalysis
Chemistry
Process Chemistry
In-Situ Synthesis of Single-Atom Ir by Utilizing Metal-Organic Frameworks: An Acid-Resistant Catalyst for Hydrogenation of Levulinic Acid to Γ-Valerolactone
Journal of Catalysis
Theoretical Chemistry
Catalysis
Physical
A Comparative Study of Structurally Related Homogeneous Ruthenium and Iron Catalysts for the Hydrogenation of Levulinic Acid to Γ-Valerolactone
European Journal of Inorganic Chemistry
Inorganic Chemistry
Catalytic Transfer Hydrogenation of Levulinic Acid to Valerolactone Over Ni3PCePO4 Catalysts
Selective Hydrogenation of Levulinic Acid to Γ-Valerolactone Using in Situ Generated Ruthenium Nanoparticles Derived From Ru–NHC Complexes
Dalton Transactions
Inorganic Chemistry
Front Cover: A Comparative Study of Structurally Related Homogeneous Ruthenium and Iron Catalysts for the Hydrogenation of Levulinic Acid to Γ-Valerolactone (Eur. J. Inorg. Chem. /2018)
European Journal of Inorganic Chemistry
Inorganic Chemistry
Role of Water in Metal Catalyst Performance for Ketone Hydrogenation: A Joint Experimental and Theoretical Study on Levulinic Acid Conversion Into Gamma-Valerolactone
Chemical Communications
Surfaces
Alloys
Materials Chemistry
Coatings
Metals
Optical
Magnetic Materials
Films
Catalysis
Chemistry
Electronic
Composites
Ceramics
Levulinic Acid Derived Reusable Cobalt-Nanoparticles-Catalyzed Sustainable Synthesis of Valerolactone
Syntheses of Plasticizers. XIII. Synthesis of Γ, Γ'-Thiodivaleric Acid Esters From Levulinic Acid.
The Journal of the Society of Chemical Industry, Japan