Frank Girgsdies
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Explore the profile of Frank Girgsdies including associated specialties, affiliations and a list of published articles.
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41
Citations
348
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Recent Articles
1.
Schmidt F, Gotsch T, Najafishirtari S, Behrens M, Pratsch C, Kenmoe S, et al.
ACS Appl Mater Interfaces
. 2025 Jan;
17(6):9419-9430.
PMID: 39887244
Understanding a catalytic reaction requires tools that elucidate the structure of the catalyst surface and subsurface, ideally at atomic resolution and under reaction conditions. Operando electron microscopy meets this requirement...
2.
Li Z, Oztuna E, Skorupska K, Vinogradova O, Jamshaid A, Steigert A, et al.
Nat Commun
. 2024 Dec;
15(1):10660.
PMID: 39658559
Future carbon management strategies require storage in elemental form, achievable through a sequence of CO hydrogenation reactions. Hydrogen is recycled from molecular intermediates by dehydrogenation, and side product acetylene selectively...
3.
Bellini G, Koch G, Girgsdies F, Dong J, Carey S, Timpe O, et al.
Angew Chem Int Ed Engl
. 2024 Oct;
64(6):e202417812.
PMID: 39433485
The identification of key materials' parameters correlated with the performance can accelerate the development of heterogeneous catalysts and unveil the relevant underlying physical processes. However, the analysis of correlations is...
4.
Falling L, Jang W, Laha S, Gotsch T, Terban M, Bette S, et al.
J Am Chem Soc
. 2024 Sep;
146(40):27886-27902.
PMID: 39319770
The oxygen evolution reaction (OER) provides the protons for many electrocatalytic power-to-X processes, such as the production of green hydrogen from water or methanol from CO. Iridium oxohydroxides (IOHs) are...
5.
Chen S, Jelic J, Rein D, Najafishirtari S, Schmidt F, Girgsdies F, et al.
Nat Commun
. 2024 Jan;
15(1):871.
PMID: 38286982
Ammonia is a storage molecule for hydrogen, which can be released by catalytic decomposition. Inexpensive iron catalysts suffer from a low activity due to a too strong iron-nitrogen binding energy...
6.
Foppa L, Ruther F, Geske M, Koch G, Girgsdies F, Kube P, et al.
J Am Chem Soc
. 2023 Feb;
145(6):3427-3442.
PMID: 36745555
Artificial intelligence (AI) can accelerate catalyst design by identifying key physicochemical descriptive parameters correlated with the underlying processes triggering, favoring, or hindering the performance. In analogy to genes in biology,...
7.
Kenmoe S, Douma D, Raji A, MPassi-Mabiala B, Gotsch T, Girgsdies F, et al.
Nanomaterials (Basel)
. 2022 Mar;
12(6).
PMID: 35335734
We combine theoretical and experimental X-ray absorption near-edge spectroscopy (XANES) to probe the local environment around cationic sites of bulk spinel cobalt tetraoxide (Co3O4). Specifically, we analyse the oxygen -edge...
8.
Foppa L, Ghiringhelli L, Girgsdies F, Hashagen M, Kube P, Havecker M, et al.
MRS Bull
. 2022 Feb;
46(11):1016-1026.
PMID: 35221466
Abstract: The performance in heterogeneous catalysis is an example of a complex materials function, governed by an intricate interplay of several processes (e.g., the different surface chemical reactions, and the...
9.
Fan H, Folke J, Liu Z, Girgsdies F, Imlau R, Ruland H, et al.
ACS Appl Mater Interfaces
. 2021 Jun;
13(25):30187-30197.
PMID: 34129331
Developing high-performance Fe-based ammonia catalysts through simple and cost-efficient methods has received an increased level of attention. Herein, we report for the first time, the synthesis of two-dimensional (2D) FeOOH...
10.
Lamoth M, Gries T, Girgsdies F, Seitz F, Hashagen M, Rosowski F, et al.
Chemistry
. 2020 May;
26(50):11571-11583.
PMID: 32428318
A systematic variation of the SBA-15 synthesis conditions and their impact on the structural and chemical characteristics are reported. An incremental alteration of the hydrothermal aging temperature and time was...