Ursel Bangert
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Explore the profile of Ursel Bangert including associated specialties, affiliations and a list of published articles.
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37
Citations
331
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Recent Articles
1.
Conroy M, Smabraten D, Ophus C, Shapovalov K, Ramasse Q, Hunnestad K, et al.
Adv Mater
. 2024 Aug;
36(39):e2405150.
PMID: 39118561
Ferroelectric domain walls are a rich source of emergent electronic properties and unusual polar order. Recent studies show that the configuration of ferroelectric walls can go well beyond the conventional...
2.
Real-Time TEM Observation of the Role of Defects on Nickel Silicide Propagation in Silicon Nanowires
Adegoke T, Bekarevich R, Geaney H, Belochapkine S, Bangert U, Ryan K
ACS Nano
. 2024 Mar;
18(14):10270-10278.
PMID: 38512077
Metal silicides have received significant attention due to their high process compatibility, low resistivity, and structural stability. In nanowire (NW) form, they have been widely prepared using metal diffusion into...
3.
Adegoke T, Abdul Ahad S, Bangert U, Geaney H, Ryan K
Nanoscale Adv
. 2023 Nov;
5(23):6514-6523.
PMID: 38024317
Here, we report the solution phase synthesis of axial heterostructure Si and Ge (hSG) nanowires (NWs). The NWs were grown in a high boiling point solvent from a low-cost Sn...
4.
Kapuria N, Nan B, Adegoke T, Bangert U, Cabot A, Singh S, et al.
Chem Mater
. 2023 Jul;
35(12):4810-4820.
PMID: 37396682
The growth mechanism and synthetic controls for colloidal multinary metal chalcogenide nanocrystals (NCs) involving alkali metals and the pnictogen metals Sb and Bi are unknown. Sb and Bi are prone...
5.
McCluskey C, Colbear M, McConville J, McCartan S, Maguire J, Conroy M, et al.
Adv Mater
. 2022 Jun;
34(32):e2204298.
PMID: 35733393
Recently, electrically conducting heterointerfaces between dissimilar band insulators (such as lanthanum aluminate and strontium titanate) have attracted considerable research interest. Charge transport and fundamental aspects of conduction have been thoroughly...
6.
Hennessy M, OConnell E, Auge M, Moynihan E, Hofsass H, Bangert U
Microsc Microanal
. 2022 Jun;
:1-10.
PMID: 35722923
In recent years, atomic resolution imaging of two-dimensional (2D) materials using scanning transmission electron microscopy (STEM) has become routine. Individual dopant atoms in 2D materials can be located and identified...
7.
Kapuria N, Conroy M, Lebedev V, Adegoke T, Zhang Y, Amiinu I, et al.
ACS Nano
. 2022 May;
16(6):8917-8927.
PMID: 35593407
Direct colloidal synthesis of multinary metal chalcogenide nanocrystals typically develops dynamically from the binary metal chalcogenide nanocrystals with the subsequent incorporation of additional metal cations from solution during the growth...
8.
OConnell E, Moore K, McFall E, Hennessy M, Moynihan E, Bangert U, et al.
Microsc Microanal
. 2022 Mar;
:1-9.
PMID: 35318910
The exotic internal structure of polar topologies in multiferroic materials offers a rich landscape for materials science research. As the spatial scale of these entities is often subatomic in nature,...
9.
Lehane R, Gamero-Quijano A, Malijauskaite S, Holzinger A, Conroy M, Laffir F, et al.
J Am Chem Soc
. 2022 Mar;
144(11):4853-4862.
PMID: 35262332
Conducting polymers (CPs) find applications in energy conversion and storage, sensors, and biomedical technologies once processed into thin films. Hydrophobic CPs, like poly(3,4-ethylenedioxythiophene) (PEDOT), typically require surfactant additives, such as...
10.
Li Y, Zatterin E, Conroy M, Pylypets A, Borodavka F, Bjorling A, et al.
Adv Mater
. 2022 Jan;
34(15):e2106826.
PMID: 35064954
The combination of strain and electrostatic engineering in epitaxial heterostructures of ferroelectric oxides offers many possibilities for inducing new phases, complex polar topologies, and enhanced electrical properties. However, the dominant...