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Steven R Spurgeon

Explore the profile of Steven R Spurgeon including associated specialties, affiliations and a list of published articles. Areas
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Articles 28
Citations 89
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Recent Articles
1.
Smeaton M, Abellan P, Spurgeon S, Unocic R, Jungjohann K
ACS Nano . 2024 Dec; 18(52):35091-35103. PMID: 39690460
In situ and (scanning) transmission electron microscopy [(S)TEM] is a powerful characterization technique that uses imaging, diffraction, and spectroscopy to gain nano-to-atomic scale insights into the structure-property relationships in materials....
2.
Gilbert D, Grutter A, Murray P, Chopdekar R, Kane A, Ionin A, et al.
Phys Rev Mater . 2024 Nov; 2(10). PMID: 39534697
Control of materials through custom design of ionic distributions represents a powerful new approach to develop future technologies ranging from spintronic logic and memory devices to energy storage. Perovskites have...
3.
Koirala K, Hossain M, Wang L, Zhuo Z, Yang W, Bowden M, et al.
Nano Lett . 2024 Oct; 24(45):14244-14251. PMID: 39481117
Understanding how doping influences physicochemical properties of ABO perovskite oxides is critical for tailoring their functionalities. In this study, SrFeCrO epitaxial thin films were used to examine the effects of...
4.
Hansen E, Niaouris V, Matthews B, Zimmermann C, Wang X, Kolodka R, et al.
Phys Rev Lett . 2024 Oct; 133(14):146902. PMID: 39423419
The shallow donor in zinc oxide (ZnO) is a promising semiconductor spin qubit with optical access. Single indium donors are isolated in a commercial ZnO substrate using plasma focused ion...
5.
Fiedler K, Olszta M, Yano K, Doty C, Hopkins D, Akers S, et al.
Microsc Microanal . 2023 Oct; 29(6):1931-1939. PMID: 37832144
Precise control is an essential and elusive quality of emerging self-driving transmission electron microscopes (TEMs). It is widely understood these instruments must be capable of performing rapid, high-volume, and arbitrary...
6.
Yama N, Chen I, Chakravarthi S, Li B, Pederson C, Matthews B, et al.
Adv Mater . 2023 Sep; 36(5):e2305434. PMID: 37660285
The compact size, scalability, and strongly confined fields in integrated photonic devices enable new functionalities in photonic networking and information processing, both classical and quantum. Gallium phosphide (GaP) is a...
7.
Adiga P, Wang L, Wong C, Matthews B, Bowden M, Spurgeon S, et al.
Nanoscale . 2023 Jan; 15(3):1119-1127. PMID: 36594352
Water electrolysis can use renewable electricity to produce green hydrogen, a portable fuel and sustainable chemical precursor. Improving electrolyzer efficiency hinges on the activity of the oxygen evolution reaction (OER)...
8.
Yoon H, Truttmann T, Liu F, Matthews B, Choo S, Su Q, et al.
Sci Adv . 2022 Dec; 8(51):eadd5328. PMID: 36563139
The epitaxial growth of functional oxides using a substrate with a graphene layer is a highly desirable method for improving structural quality and obtaining freestanding epitaxial nanomembranes for scientific study,...
9.
Kaspar T, Hatton P, Yano K, Taylor S, Spurgeon S, Uberuaga B, et al.
Nano Lett . 2022 Jun; 22(12):4963-4969. PMID: 35687425
Thin film deposition from the vapor phase is a complex process involving adatom adsorption, movement, and incorporation into the growing film. Here, we present quantitative experimental data that reveals anion...
10.
Olszta M, Hopkins D, Fiedler K, Oostrom M, Akers S, Spurgeon S
Microsc Microanal . 2022 Jun; :1-11. PMID: 35686442
Artificial intelligence (AI) promises to reshape scientific inquiry and enable breakthrough discoveries in areas such as energy storage, quantum computing, and biomedicine. Scanning transmission electron microscopy (STEM), a cornerstone of...