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.

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S. T. Pantelides, L. Tsetseris, M. J. Beck, S. N. Rashkeev, G. Hadjisawas, I. G. batyrev, B. R. Tuttle, A. G. Marinopoulos, X. J. Zhou, D. M. Fleetwood, and R. D. Schrimpf,”Performance, reliability, radiation effects, and aging issues in microelectronics: from atomic-scale physics to engineering-level modeling”, Solid State Electron. 54, 841-848 (2010).

Nano letters 13 (8), 3626 Publication Topics density functional theory,aluminium compounds,passivation,radiation hardening (electronics),III-V semiconductors,annealing,semiconductor device noise,wide band gap semiconductors,MOSFET,boron compounds,dielectric materials,field effect transistors,hafnium compounds,molybdenum compounds,noise measurement,proton effects,semiconductor device measurement,1/f noise,Monte Carlo Sokrates T. Pantelides The surfaces of rutile transition-metal oxides (TMO2) are widely investigated for catalysis, photoelectrochemical solar cells, memristors, and supercapacitors, but their Jin X, Zhang YY, Pantelides ST, et al. (2020) Integration of graphene and two-dimensional ferroelectrics: properties and related functional devices. Nanoscale Horizons: Ma RS, Ma J, Yan J, et al. (2020) Wrinkle-induced highly conductive channels in graphene on SiO/Si substrates. Nanoscale Online shopping from a great selection at Books Store.

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Vanderbilt University. Verified email at vanderbilt.edu JI Ziegler, RF Haglund Jr, ST Pantelides, KI Bolotin. Nano letters 13 (8), 3626 Sokrates T. Pantelides The surfaces of rutile transition-metal oxides (TMO2) are widely investigated for catalysis, photoelectrochemical solar cells, memristors, and supercapacitors, but their Contact Info Sokrates T. Pantelides. e-mail: pantelides _at_ Vanderbilt.edu. phone: (615) 343 – 4321.

Vanderbilt University. Verified email at vanderbilt.edu JI Ziegler, RF Haglund Jr, ST Pantelides, KI Bolotin. Nano letters 13 (8), 3626 Sokrates T. Pantelides The surfaces of rutile transition-metal oxides (TMO2) are widely investigated for catalysis, photoelectrochemical solar cells, memristors, and supercapacitors, but their Contact Info Sokrates T. Pantelides.

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.

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Sokrates Pantelides University Distinguished Professor of Physics and Engineering at Vanderbilt University Greater Nashville Area, TN 2 connections

* Corresponding authors. Sokrates Pantelides at Vanderbilt University. There he taught Quantum Mechanics II and advanced the simulation of Energy Loss Near Edge Structure in Electron  3 Mar 2020 Sokrates T. Pantelides,. 4,1.

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Sokrates pantelides

Prof. Sokrates Pantelides giving an Invited Talk at the Workshop on Frontiers in DFT and Beyond–Advances and Challenges, Kavli Institute, University of Chinese Academy of Sciences, Beijing, China, May 30-June 1, 2019.

Dec. 10, 2014— Sokrates Pantelides (Joe Howell / Vanderbilt) Sokrates Pantelides is one of a select group of members of the Institute of Electrical and Electronics Engineers who have been elevated to IEEE Fellow in recognition of their accomplishments in the field of electrical engineering. View Socrates Pantelides’ profile on LinkedIn, the world’s largest professional community. Socrates has 6 jobs listed on their profile.
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‡a Yujue Yang,‡ab Yu-Ning Wu,‡cd Xiao-Guang Zhang,d Sokrates T. Pantelides e and Gerasimos Konstantatos*af. Author affiliations. * Corresponding authors.

inbunden, 1992. Skickas inom 4-8 vardagar. Beställ boken Deep Centers in Semiconductors av Sokrates T. Pantelides (ISBN 9782881245626)  J Ren, H Guo, J Pan, YY Zhang, X Wu, HG Luo, S Du, ST Pantelides, Nano letters 14 (7), 4011-4015, 2014. 44, 2014.

News Laura Nichols has received a DOE CSGF Fellowship! September 9, 2020—Laura Nichols, a doctoral candidate in Sokrates Pantelides’ research group at Vanderbilt University, has received a Department of Energy Computational Science Graduate Fellowship (DOE CSGF) to support her Computational Solid State Physics research.

S. T. Pantelides, L. Tsetseris, M. J. Beck, S. N. Rashkeev, G. Hadjisawas, I. G. batyrev, B. R. Tuttle, A. G. Marinopoulos, X. J. Zhou, D. M. Fleetwood, and R. D. Schrimpf,”Performance, reliability, radiation effects, and aging issues in microelectronics: from atomic-scale physics to engineering-level modeling”, Solid State Electron. 54, 841-848 (2010). Prof. Sokrates Pantelides giving an Invited Talk at the Workshop on Frontiers in DFT and Beyond–Advances and Challenges, Kavli Institute, University of Chinese Academy of Sciences, Beijing, China, May 30-June 1, 2019. Workshop on Surfaces and Interfaces of Quantum Materials, Institute of Physics, Beijing, China, June 2-4, 2019. 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. Sokrates T. Pantelides The surfaces of rutile transition-metal oxides (TMO2) are widely investigated for catalysis, photoelectrochemical solar cells, memristors, and supercapacitors, but their Contact Info Sokrates T. Pantelides.

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. Sokrates T. Pantelides The surfaces of rutile transition-metal oxides (TMO2) are widely investigated for catalysis, photoelectrochemical solar cells, memristors, and supercapacitors, but their Contact Info Sokrates T. Pantelides. e-mail: pantelides _at_ Vanderbilt.edu. phone: (615) 343 – 4321. Address:. Vanderbilt University Dept. of Physics & Astronomy Box 1807-B 6631 Stevenson Center Nashville, TN 37235.