Henrik Junge

2003- Leibniz Institut für Katalyse 
"Henrik Junge"


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Shi Y, Luo B, Liu R, et al. (2023) Atomically Dispersed Cobalt/Copper Dual-Metal Catalysts for Synergistically Boosting Hydrogen Generation from Formic Acid. Angewandte Chemie (International Ed. in English). 62: e202313099
Wei D, Shi X, Junge H, et al. (2023) Carbon neutral hydrogen storage and release cycles based on dual-functional roles of formamides. Nature Communications. 14: 3726
Huerta-Zerón HD, Spannenberg A, Beller M, et al. (2023) {μ-2,2'-(Ethane-1,2-di-yl)bis-[4,6-bis-(tri-methyl-sil-yl)-1,3-di-hydro-cyclo-penta-[]pyrrol-5-one]}bis-[tri-carbonyl-iron(0)]. Iucrdata. 8: x230346
Hu Y, Sang R, Vroemans R, et al. (2022) Efficient Synthesis of Novel Plasticizers by Direct Palladium-catalyzed Di- or Multi-carbonylations. Angewandte Chemie (International Ed. in English)
Wei D, Shi X, Sponholz P, et al. (2022) Manganese Promoted (Bi)carbonate Hydrogenation and Formate Dehydrogenation: Toward a Circular Carbon and Hydrogen Economy. Acs Central Science. 8: 1457-1463
Moazezbarabadi A, Wei D, Junge H, et al. (2022) Improved CO2 capture and catalytic hydrogenation using amino acid based ionic liquids. Chemsuschem
Sang R, Hu Y, Razzaq R, et al. (2022) A practical concept for catalytic carbonylations using carbon dioxide. Nature Communications. 13: 4432
Wei D, Sang R, Moazezbarabadi A, et al. (2022) Homogeneous Carbon Capture and Catalytic Hydrogenation: Toward a Chemical Hydrogen Battery System. Jacs Au. 2: 1020-1031
Alberico E, Leischner T, Junge H, et al. (2021) HCOOH disproportionation to MeOH promoted by molybdenum PNP complexes. Chemical Science. 12: 13101-13119
Wei D, Junge H, Beller M. (2021) An amino acid based system for CO capture and catalytic utilization to produce formates. Chemical Science. 12: 6020-6024
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