
Thomas Devereaux
Stanford University · Materials Science and Engineering
Active 1989–2026
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About
Thomas Devereaux is a Professor of Photon Science and of Materials Science and Engineering at Stanford University. He is also a Senior Fellow at the Precourt Institute for Energy. His professional titles indicate a focus on photon science and materials science and engineering, suggesting his research and academic contributions lie at the intersection of these fields. The page lists him among other faculty members in the Materials Science and Engineering department, highlighting his role within the Stanford academic community and his involvement with the Precourt Institute for Energy, which is dedicated to advancing energy science and technology.
Research topics
- Crystallography
- Chemistry
- Computer Science
- Materials science
- Physical chemistry
- Geometry
- Physics
- Mathematics
- Computational chemistry
- Inorganic chemistry
Selected publications
Preserving a robust CsPbI3 perovskite phase via pressure-directed octahedral tilt
Nature Communications · 2021 · 166 citations
. Here, we present a high-pressure strategy for manipulating the (meta)stability of halide perovskites for the synthesis of desirable phases with enhanced materials functionality.
Angewandte Chemie International Edition · 2020 · 67 citations
and the stabilization mechanism of anionic redox could determine the extent of structural disorder in the materials. These findings shed light on the design principles in TM and anion redox for positive electrodes to improve the performance of Na-ion batteries.
Physical Review Letters · 2025-04-08 · 5 citations
articleOpen accessRecent photoemission experiments on the quasi-one-dimensional Ba-based cuprates suggest that doped holes experience an attractive potential not captured using the simple Hubbard model. This observation has garnered significant attention due to its potential relevance to Cooper pair formation in high-T_{c} cuprate superconductors. To scrutinize this assertion, we examined signatures of such an attractive potential in doped 1D cuprates Ba_{2}CuO_{3+δ} by measuring the dispersion of the 2-spinon ex…
Electronic structure of compressively strained thin film La$_2$PrNi$_2$O$_7$
ArXiv.org · 2025-04-23 · 4 citations
preprintOpen accessThe discovery of superconductivity in the bulk nickelates under high pressure is a major advance in physics. The recent observation of superconductivity at ambient pressure in compressively strained bilayer nickelate thin films has now enabled direct characterization of the superconducting phase through angle resolved photoemission spectroscopy (ARPES). Here we present an in-situ ARPES study of compressively strained La$_2$PrNi$_2$O$_7$ films grown by oxide molecular beam epitaxy, and the ozone…
Detection of chiral spin fluctuations driven by frustration in Mott insulators
Physical review. B./Physical review. B · 2025-05-12 · 4 citations
articleOpen accessSenior authorTopologically ordered states, such as chiral spin liquids, have been proposed as candidates that host fraction alized excitations. However, detecting chiral character or proximity to these nontrivial states remains a challenge. Resonant Raman scattering can be a powerful tool for detecting chiral fluctuations, as the ${A}_{2g}$ channel probes excitations with broken time-reversal symmetry and local chiral order. Here, we use exact diagonalization to characterize the resonant ${A}_{2g}$ channel,…
Frequent coauthors
- 654 shared
Brian Moritz
Stanford University
- 639 shared
Zhi‐Xun Shen
Stanford University
- 432 shared
Dong-Hui Lu
Stanford Synchrotron Radiation Lightsource
- 410 shared
Makoto Hashimoto
SLAC National Accelerator Laboratory
- 305 shared
Su-Di Chen
Kavli Energy NanoScience Institute
- 291 shared
Yu He
Yale University
- 288 shared
Jun-Feng He
- 286 shared
Hiroshi Eisaki
National Institute of Advanced Industrial Science and Technology
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