Andrew Doran
Overview
Explore the profile of Andrew Doran including associated specialties, affiliations and a list of published articles.
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Articles
32
Citations
215
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Recent Articles
1.
Gotsch T, Schlicker L, Bekheet M, Doran A, Grunbacher M, Praty C, et al.
RSC Adv
. 2022 May;
8(6):3120-3131.
PMID: 35541190
The crystal structure changes and iron exsolution behavior of a series of oxygen-deficient lanthanum strontium ferrite (LaSrFeO , LSF) samples under various inert and reducing conditions up to a maximum...
2.
Delir Kheyrollahi Nezhad P, Bekheet M, Bonmassar N, Gili A, Kamutzki F, Gurlo A, et al.
Catal Sci Technol
. 2022 Mar;
12(4):1229-1244.
PMID: 35310768
To elucidate the role of earth alkaline doping in perovskite-based dry reforming of methane (DRM) catalysts, we embarked on a comparative and exemplary study of a Ni-based Sm perovskite with...
3.
Ploner K, Doran A, Kunz M, Gili A, Gurlo A, Kowitsch N, et al.
Catal Sci Technol
. 2021 Aug;
11(16):5518-5533.
PMID: 34457240
To compare the inherent methanol steam reforming properties of intermetallic compounds and a corresponding intermetallic compound-oxide interface, we selected the Cu-In system as a model to correlate the stability limits,...
4.
Ploner K, Delir Kheyrollahi Nezhad P, Gili A, Kamutzki F, Gurlo A, Doran A, et al.
Mater Chem Front
. 2021 Jul;
5(13):5093-5105.
PMID: 34262777
The adaption of the sol-gel autocombustion method to the Cu/ZrO system opens new pathways for the specific optimisation of the activity, long-term stability and CO selectivity of methanol steam reforming...
5.
Bekheet M, Delir Kheyrollahi Nezhad P, Bonmassar N, Schlicker L, Gili A, Praetz S, et al.
ACS Catal
. 2021 Jan;
11(1):43-59.
PMID: 33425477
The influence of A- and/or B-site doping of Ruddlesden-Popper perovskite materials on the crystal structure, stability, and dry reforming of methane (DRM) reactivity of specific ABO phases (A = La,...
6.
Parakh A, Lee S, Kiani M, Doan D, Kunz M, Doran A, et al.
Nano Lett
. 2020 Oct;
20(10):7767-7773.
PMID: 33016704
Nanocrystals can exist in multiply twinned structures like icosahedron or single crystalline structures like cuboctahedron. Transformations between these structures can proceed through diffusion or displacive motion. Experimental studies on nanocrystal...
7.
Parakh A, Lee S, Harkins K, Kiani M, Doan D, Kunz M, et al.
Phys Rev Lett
. 2020 Mar;
124(10):106104.
PMID: 32216385
As circuitry approaches single nanometer length scales, it has become important to predict the stability of single nanometer-sized metals. The behavior of metals at larger scales can be predicted based...
8.
Shakibi Nia N, Hauser D, Schlicker L, Gili A, Doran A, Gurlo A, et al.
Chemphyschem
. 2019 Jun;
20(22):3067-3073.
PMID: 31247128
Metal carbides and oxycarbides have recently gained considerable interest due to their (electro)catalytic properties that differ from those of transition metals and that have potential to outperform them as well....
9.
Schlicker L, Popescu R, Bekheet M, Doran A, Gerthsen D, Gurlo A
Nanoscale
. 2019 Jun;
11(25):12242-12249.
PMID: 31206118
A time-resolved series of high-resolution transmission electron microscopy (HRTEM) images are used to monitor phase and morphology transformation of rod-like and spherical particles with the initial orthorhombic InOOH phase in...
10.
Ploner K, Schlicker L, Gili A, Gurlo A, Doran A, Zhang L, et al.
Sci Technol Adv Mater
. 2019 May;
20(1):356-366.
PMID: 31068984
The reactive metal-support interaction in the Cu-InO system and its implications on the CO selectivity in methanol steam reforming (MSR) have been assessed using nanosized Cu particles on a powdered...