Karl J J Mayrhofer
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Explore the profile of Karl J J Mayrhofer including associated specialties, affiliations and a list of published articles.
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78
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1311
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Recent Articles
1.
Fritsch B, Malgaretti P, Harting J, Mayrhofer K, Hutzler A
Precis Chem
. 2024 Oct;
1(10):592-601.
PMID: 39473579
Liquid-phase transmission electron microscopy (LP-TEM) is a powerful tool to gain unique insights into dynamics at the nanoscale. The electron probe, however, can induce significant beam effects that often alter...
2.
Reichmann I, Lloret V, Ehelebe K, Lauf P, Jenewein K, Mayrhofer K, et al.
ACS Meas Sci Au
. 2024 Oct;
4(5):515-527.
PMID: 39430959
The scanning gas diffusion electrode (S-GDE) half-cell is introduced as a new tool to improve the evaluation of electrodes used in electrochemical energy conversion technologies. It allows both fast screening...
3.
Kovacs M, Fritsch B, Lahn L, Bachmann J, Kasian O, Mayrhofer K, et al.
ACS Appl Mater Interfaces
. 2024 Sep;
16(39):52179-52190.
PMID: 39293816
The enhanced utilization of noble metal catalysts through highly porous nanostructures is crucial to advancing the commercialization prospects of proton exchange membrane water electrolysis (PEMWE). In this study, hierarchically structured...
4.
Al-Romema A, Xia H, Mayrhofer K, Tsogoeva S, Nikolaienko P
Chemistry
. 2024 Aug;
30(68):e202402696.
PMID: 39190899
Electrochemical transformations are considered a green alternative to classical redox chemistry as it eliminates the necessity for toxic and waste producing redox reagents. Typical electrochemical reactions require the addition of...
5.
Hoffmeister D, Finger S, Fiedler L, Ma T, Korner A, Zlatar M, et al.
Adv Sci (Weinh)
. 2024 Jun;
11(30):e2402991.
PMID: 38874424
The widespread application of green hydrogen production technologies requires cost reduction of crucial elements. To achieve this, a viable pathway to reduce the iridium loading in proton exchange membrane water...
6.
Parada W, Sajevic U, Mammadzada R, Nikolaienko P, Mayrhofer K
ACS Appl Mater Interfaces
. 2024 May;
16(23):30107-30116.
PMID: 38809223
The electrochemical reduction of CO (CORR) has the potential to be an economically viable method to produce platform chemicals synergistically with renewable energy sources. Copper is one of the most...
7.
Kormanyos A, Buttner P, Bosch M, Minichova M, Korner A, Jenewein K, et al.
ACS Mater Au
. 2024 May;
4(3):286-299.
PMID: 38737117
Fundamental research campaigns in electrocatalysis often involve the use of model systems, such as single crystals or magnetron-sputtered thin films (single metals or metal alloys). The downsides of these approaches...
8.
Asfia M, Cuomo A, Kloth R, Mayrhofer K, Nikolaienko P
ChemSusChem
. 2024 May;
17(20):e202400535.
PMID: 38728590
In the past decade, organic electrosynthesis has emerged as an atom- and energy-efficient strategy for harvesting renewable electricity that provides exceptional control over the reaction parameters. A profound and fundamental...
9.
Fusek L, Briega-Martos V, Minichova M, Fromm L, Franz E, Yang J, et al.
J Phys Chem Lett
. 2024 Feb;
15(9):2529-2536.
PMID: 38412511
Electrochemically active liquid organic hydrogen carriers (EC-LOHCs) can be used directly in fuel cells; so far, however, they have rather low hydrogen storage capacities. In this work, we study the...
10.
Garnes-Portoles F, Lloret V, Vidal-Moya J, Loffler M, Mayrhofer K, Ceron-Carrasco J, et al.
RSC Adv
. 2024 Feb;
14(7):4742-4747.
PMID: 38318612
Nitrogen (N) fixation is a key reaction in biological and industrial chemistry, which does not occur spontaneously under ambient conditions but often depends on very specific catalysts and harsh reaction...