Overview
Pantelides
and his group employ atomic-scale and multiscale theoretical calculations
(primarily density functional calculations) to investigate structural,
electronic, optical, magnetic, and thermal properties of nanoparticles,
nanostructures, two-dimensional materials, layered materials, complex oxides,
semiconductor devices, ferroelectrics, and catalysis. The group has extensive
collaborations with experimental groups that employ scanning transmission
electron microscopy (STEM) Z-contrast imaging and electron-energy-loss
spectroscopy at Oak Ridge National Laboratory, U.S. universities, and Beijing,
China. Another long-standing major collaboration is with Professors Ron
Schrimpf, Dan Fleetwood, and the
Radiation Effects in Microelectronics group at VU. Collaborations with
Professors Josh Caldwell (photonics) and Piran Kidambi (2D materials are
active. Some of Pantelides’s graduate students are trained in both theory and
microscopy.
Awards
-Award of the Chinese Academy of Science for International Scientific Cooperation, 2020
-Appointed Distinguished Visiting Professor at the University of the Chinese Academy of Sciences in Beijing, China
-Fellow, Institute of Electrical and Electronic Engineers, 2014
-Fellow, Materials Research Society, 2012
XXVI Panhellenic Conference on Solid State Physics Award for contributions to Physics in Greece and Cyprus, 2011
-Outstanding Referee Award, American Physical Society, 2008
-Fellow, American Associate for the Advancement of Science, 2003
-Chancellor’s Research Award, Vanderbilt University 2003
-Appointed Distinguished Visiting Scientist, Oak Ridge National Laboratory, 1995-2019
-Invited by the Swedish Royal Academy of Sciences to nominate candidates for the Nobel Prize in Physics (1982-2002, 2009, 2017)
-Fellow, American Physical Society, 1980
-IBM Outstanding Innovation Award, 1979
Selected Publications
Single-atom vibrational spectroscopy with chemical-bonding sensitivity. Xu M, Bao DL, Li A, Gao M, Meng D, Li A, Du S, Su G, Pennycook SJ, Pantelides ST, Zhou W, Nature Materials, 22, 612-618, (2023) View Abstract
Emergent interface vibrational structure of oxide superlattices. Haglund ER, Bao DL, O'Hara A, Makarem S, Piontkowski ZT, Matson JR, Yadav AK, Haislmaier RC, Engel-Herber R, Ihlefeld JF, Ravichandran J, Ramesh R, Caldwell JD, Beechem TE, Tomko JA, Hachtel JA, Pantelides, ST, Hopkins PE, Howe JM, Nature, 601, , (2022) View Abstract
The Concept of Negative Capacitance in Ionically Conductive Van der Waals Ferroelectrics. Neumayer SM, Tao L, O'Hara A, Susner MA, McGuire MA, Maksymovych P, Pantelides ST, Balke N, Advanced Energy Materials, , 2001726, (2020) View Abstract
Atomic-scale determination of spontaneous magnetic reversal in oxide heterostructures. Saghayezhian M, Kouser S, Wang Z, Guo H, Jina R, Zhang J, Zhu Y, Pantelides ST, Plummera EW, The Proceedings of the National Academy of Sciences, 116, 10309-10316, (2019) View Abstract
Atomically precise, custom-design origami graphene nanostructures. Chen H, Zhang XL, Zhang YY, Wang D, Bao DL, Que Y, Xiao W, Du S, Ouyang M, Pantelides ST, Gao HJ, Nanomaterials, 365, 1036-1040, (2019) View Abstract
Education
Ph.D. Physics, University of Illinois, Urbana-Champaign 1973M.S. Physics, University of Illinois, Urbana-Champaign, 1970
B.S. Physics, Northern Illinois University, with Highest Scholastic Honors, 1969