Ib Chorkendorff
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Explore the profile of Ib Chorkendorff including associated specialties, affiliations and a list of published articles.
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118
Citations
3655
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Recent Articles
1.
Multivariate Approaches Boosting Lithium-Mediated Ammonia Electrosynthesis in Different Electrolytes
Mangini A, Mygind J, Ballesteros S, Pedico A, Armandi M, Chorkendorff I, et al.
Angew Chem Int Ed Engl
. 2025 Jan;
64(8):e202416027.
PMID: 39824767
Ammonia electrosynthesis through the lithium-mediated approach has recently reached promising results towards high activity and selectivity in aprotic media, reaching high Faradaic efficiency (FE) values and NH production rates. To...
2.
Zhou Y, Fu X, Chorkendorff I, Norskov J
ACS Energy Lett
. 2025 Jan;
10(1):128-132.
PMID: 39816621
We discuss the challenges associated with achieving high energy efficiency in electrochemical ammonia synthesis at near-ambient conditions. The current Li-mediated process has a theoretical maximum energy efficiency of ∼28%, since...
3.
Romeggio F, Bischoff R, Moller C, Jensen V, Gioria E, Egeberg Tankard R, et al.
ACS Omega
. 2024 Dec;
9(50):49759-49766.
PMID: 39713667
Magnetron sputtering is a versatile method for investigating model system catalysts thanks to its simplicity, reproducibility, and chemical-free synthesis process. It has recently emerged as a promising technique for synthesizing...
4.
Naumann K, Tichter T, Nielsen R, Seger B, Hansen O, Chorkendorff I, et al.
J Phys Chem C Nanomater Interfaces
. 2024 Dec;
128(48):20549-20558.
PMID: 39660080
Tantalum oxide (TaO ) and amorphous titanium dioxide (TiO) are employed as protection materials for commercial GaInP/GaAs/Ge triple-junction solar cells to facilitate the unbiased photoelectrochemical reduction of carbon monoxide on...
5.
Romeggio F, Schouenborg J, Vesborg P, Hansen O, Kibsgaard J, Chorkendorff I, et al.
ACS Catal
. 2024 Aug;
14(16):12592-12601.
PMID: 39169904
Previous studies have identified δ-NiGa as a promising catalyst for the hydrogenation of CO to methanol at atmospheric pressure. Given its recent discovery, the current understanding of this catalyst is...
6.
Sedano Varo E, Egeberg Tankard R, Needham J, Gioria E, Romeggio F, Chorkendorff I, et al.
Phys Chem Chem Phys
. 2024 Jun;
26(25):17456-17466.
PMID: 38888144
While model studies with small nanoparticles offer a bridge between applied experiments and theoretical calculations, the intricacies of working with well-defined nanoparticles in electrochemistry pose challenges for experimental researchers. This...
7.
Plaza-Mayoral E, Okatenko V, Dalby K, Falsig H, Chorkendorff I, Sebastian-Pascual P, et al.
iScience
. 2024 May;
27(6):109933.
PMID: 38812548
The electrochemical carbon dioxide reduction (CORR) on Cu-based catalysts is a promising strategy to store renewable electricity and produce valuable C chemicals. We investigate the CORR on Cu-Ag nanostructures that...
8.
Zhang K, Cao A, Wandall L, Vernieres J, Kibsgaard J, Norskov J, et al.
Science
. 2024 Mar;
383(6689):1357-1363.
PMID: 38513006
Over the past two decades, there has been growing interest in developing catalysts to enable Haber-Bosch ammonia synthesis under milder conditions than currently pertain. Rational catalyst design requires theoretical guidance...
9.
Li S, Zhou Y, Fu X, Pedersen J, Saccoccio M, Andersen S, et al.
Nature
. 2024 Mar;
629(8010):92-97.
PMID: 38503346
Ammonia is crucial as a fertilizer and in the chemical industry and is considered to be a carbon-free fuel. Ammonia electrosynthesis from nitrogen under ambient conditions offers an attractive alternative...
10.
Fu X, Xu A, Pedersen J, Li S, Sazinas R, Zhou Y, et al.
Nat Commun
. 2024 Mar;
15(1):2417.
PMID: 38499554
Ammonia is a crucial component in the production of fertilizers and various nitrogen-based compounds. Now, the lithium-mediated nitrogen reduction reaction (Li-NRR) has emerged as a promising approach for ammonia synthesis...