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Kalani Moore

Explore the profile of Kalani Moore including associated specialties, affiliations and a list of published articles. Areas
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Articles 13
Citations 47
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Recent Articles
1.
Della Ventura N, Ericks A, Echlin M, Moore K, Pollock T, Begley M, et al.
Ultramicroscopy . 2024 Nov; 268():114079. PMID: 39603111
Electron backscatter diffraction (EBSD) is a powerful tool for determining the orientations of near-surface grains in engineering materials. However, many ceramics present challenges for routine EBSD data collection and indexing...
2.
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...
3.
Wei J, Moore K, Bammes B, Levin B, Hagopian N, Jacobs R, et al.
Microsc Microanal . 2023 Dec; 29(6):2026-2036. PMID: 38066670
Electron counting can be performed algorithmically for monolithic active pixel sensor direct electron detectors to eliminate readout noise and Landau noise arising from the variability in the amount of deposited...
4.
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...
5.
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,...
6.
Moore K, OConnell E, Griffin S, Downing C, Colfer L, Schmidt M, et al.
ACS Appl Mater Interfaces . 2022 Jan; 14(4):5525-5536. PMID: 35044754
Multiferroic topologies are an emerging solution for future low-power magnetic nanoelectronics due to their combined tuneable functionality and mobility. Here, we show that in addition to being magnetoelectric multiferroic at...
7.
Guy J, Cochard C, Aguado-Puente P, Soergel E, Whatmore R, Conroy M, et al.
Adv Mater . 2021 Mar; 33(16):e2008068. PMID: 33734520
During switching, the microstructure of a ferroelectric normally adapts to align internal dipoles with external electric fields. Favorably oriented dipolar regions (domains) grow at the expense of those in unfavorable...
8.
Hadjimichael M, Li Y, Zatterin E, Chahine G, Conroy M, Moore K, et al.
Nat Mater . 2021 Jan; 20(4):495-502. PMID: 33398118
Simultaneous manipulation of multiple boundary conditions in nanoscale heterostructures offers a versatile route to stabilizing unusual structures and emergent phases. Here, we show that a stable supercrystal phase comprising a...
9.
Subedi R, Min J, Mitra S, Li K, Ajia I, Stegenburgs E, et al.
ACS Appl Mater Interfaces . 2020 Sep; 12(37):41649-41658. PMID: 32869977
There has been a relentless pursuit of transverse electric (TE)-dominant deep ultraviolet (UV) optoelectronic devices for efficient surface emitters to replace the environmentally unfriendly mercury lamps. To date, the use...
10.
McConville J, Lu H, Wang B, Tan Y, Cochard C, Conroy M, et al.
Adv Funct Mater . 2020 Jul; 30(28):2000109. PMID: 32684905
A domain wall-enabled memristor is created, in thin film lithium niobate capacitors, which shows up to twelve orders of magnitude variation in resistance. Such dramatic changes are caused by the...