Zobrazeno 1 - 10
of 378
pro vyhledávání: '"John P, Perdew"'
Publikováno v:
APL Materials, Vol 11, Iss 6, Pp 060702-060702-7 (2023)
Transition metal oxide materials are of great utility, with a diversity of topical applications ranging from catalysis to electronic devices. Because of their widespread importance in materials science, there is increasing interest in developing comp
Externí odkaz:
https://doaj.org/article/cdb4cb7987384f4cb93b79dd6679f6f9
Publikováno v:
Nature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
No existing density functional correctly describes the properties of water across the entire phase diagram. The authors report a data-driven many-body potential energy function based on density-corrected SCAN functional that quantitatively reproduces
Externí odkaz:
https://doaj.org/article/8f6f89275964408183eb0721c9300153
Publikováno v:
npj Computational Materials, Vol 7, Iss 1, Pp 1-10 (2021)
Abstract Classical turning surfaces of Kohn–Sham potentials separate classically allowed regions (CARs) from classically forbidden regions (CFRs). They are useful for understanding many chemical properties of molecules but need not exist in solids,
Externí odkaz:
https://doaj.org/article/60b73c6794b3451ab2f81e2999f99cfe
Autor:
John P. Perdew, Shah Tanvir ur Rahman Chowdhury, Chandra Shahi, Aaron D. Kaplan, Duo Song, Eric J. Bylaska
Publikováno v:
The Journal of Physical Chemistry A. 127:384-389
The SCAN (strongly constrained and appropriately normed) meta-generalized gradient approximation (meta-GGA), which satisfies all 17 exact constraints that a meta-GGA can satisfy, accurately describes equilibrium bonds that are normally correlated. Wi
Autor:
Manish Kothakonda, Aaron D. Kaplan, Eric B. Isaacs, Christopher J. Bartel, James W. Furness, Jinliang Ning, Chris Wolverton, John P. Perdew, Jianwei Sun
Publikováno v:
ACS Materials Au. 3:102-111
Autor:
Andrew M. Teale, Trygve Helgaker, Andreas Savin, Carlo Adamo, Bálint Aradi, Alexei V. Arbuznikov, Paul W. Ayers, Evert Jan Baerends, Vincenzo Barone, Patrizia Calaminici, Eric Cancès, Emily A. Carter, Pratim Kumar Chattaraj, Henry Chermette, Ilaria Ciofini, T. Daniel Crawford, Frank De Proft, John F. Dobson, Claudia Draxl, Thomas Frauenheim, Emmanuel Fromager, Patricio Fuentealba, Laura Gagliardi, Giulia Galli, Jiali Gao, Paul Geerlings, Nikitas Gidopoulos, Peter M. W. Gill, Paola Gori-Giorgi, Andreas Görling, Tim Gould, Stefan Grimme, Oleg Gritsenko, Hans Jørgen Aagaard Jensen, Erin R. Johnson, Robert O. Jones, Martin Kaupp, Andreas M. Köster, Leeor Kronik, Anna I. Krylov, Simen Kvaal, Andre Laestadius, Mel Levy, Mathieu Lewin, Shubin Liu, Pierre-François Loos, Neepa T. Maitra, Frank Neese, John P. Perdew, Katarzyna Pernal, Pascal Pernot, Piotr Piecuch, Elisa Rebolini, Lucia Reining, Pina Romaniello, Adrienn Ruzsinszky, Dennis R. Salahub, Matthias Scheffler, Peter Schwerdtfeger, Viktor N. Staroverov, Jianwei Sun, Erik Tellgren, David J. Tozer, Samuel B. Trickey, Carsten A. Ullrich, Alberto Vela, Giovanni Vignale, Tomasz A. Wesolowski, Xin Xu, Weitao Yang
Publikováno v:
Physical Chemistry Chemical Physics
Physical chemistry, chemical physics 24(47), 28700-28781 (2022). doi:10.1039/D2CP02827A
Physical chemistry chemical physics, 2022, Vol.24(47), pp.28700-28781 [Peer Reviewed Journal]
Teale, A M, Helgaker, T, Savin, A, Adamo, C, Aradi, B, Arbuznikov, A V, Ayers, P W, Baerends, E J, Barone, V, Calaminici, P, Cancès, E, Carter, E A, Chattaraj, P K, Chermette, H, Ciofini, I, Crawford, T D, De Proft, F, Dobson, J F, Draxl, C, Frauenheim, T, Fromager, E, Fuentealba, P, Gagliardi, L, Galli, G, Gao, J, Geerlings, P, Gidopoulos, N, Gill, P M W, Gori-Giorgi, P, Görling, A, Gould, T, Grimme, S, Gritsenko, O, Jensen, H J A, Johnson, E R, Jones, R O, Kaupp, M, Köster, A M, Kronik, L, Krylov, A I, Kvaal, S, Laestadius, A, Levy, M, Lewin, M, Liu, S, Loos, P F, Maitra, N T, Neese, F, Perdew, J P, Pernal, K, Pernot, P, Piecuch, P, Rebolini, E, Reining, L, Romaniello, P, Ruzsinszky, A, Salahub, D R, Scheffler, M, Schwerdtfeger, P, Staroverov, V N, Sun, J, Tellgren, E, Tozer, D J, Trickey, S B, Ullrich, C A, Vela, A, Vignale, G, Wesolowski, T A, Xu, X & Yang, W 2022, ' DFT exchange: sharing perspectives on the workhorse of quantum chemistry and materials science ', Physical Chemistry Chemical Physics, vol. 24, no. 47, pp. 28700-28781 . https://doi.org/10.1039/d2cp02827a
Physical Chemistry Chemical Physics, 2022, ⟨10.1039/D2CP02827A⟩
Physical chemistry, chemical physics 24(47), 28700-28781 (2022). doi:10.1039/D2CP02827A
Physical chemistry chemical physics, 2022, Vol.24(47), pp.28700-28781 [Peer Reviewed Journal]
Teale, A M, Helgaker, T, Savin, A, Adamo, C, Aradi, B, Arbuznikov, A V, Ayers, P W, Baerends, E J, Barone, V, Calaminici, P, Cancès, E, Carter, E A, Chattaraj, P K, Chermette, H, Ciofini, I, Crawford, T D, De Proft, F, Dobson, J F, Draxl, C, Frauenheim, T, Fromager, E, Fuentealba, P, Gagliardi, L, Galli, G, Gao, J, Geerlings, P, Gidopoulos, N, Gill, P M W, Gori-Giorgi, P, Görling, A, Gould, T, Grimme, S, Gritsenko, O, Jensen, H J A, Johnson, E R, Jones, R O, Kaupp, M, Köster, A M, Kronik, L, Krylov, A I, Kvaal, S, Laestadius, A, Levy, M, Lewin, M, Liu, S, Loos, P F, Maitra, N T, Neese, F, Perdew, J P, Pernal, K, Pernot, P, Piecuch, P, Rebolini, E, Reining, L, Romaniello, P, Ruzsinszky, A, Salahub, D R, Scheffler, M, Schwerdtfeger, P, Staroverov, V N, Sun, J, Tellgren, E, Tozer, D J, Trickey, S B, Ullrich, C A, Vela, A, Vignale, G, Wesolowski, T A, Xu, X & Yang, W 2022, ' DFT exchange: sharing perspectives on the workhorse of quantum chemistry and materials science ', Physical Chemistry Chemical Physics, vol. 24, no. 47, pp. 28700-28781 . https://doi.org/10.1039/d2cp02827a
Physical Chemistry Chemical Physics, 2022, ⟨10.1039/D2CP02827A⟩
In this paper, the history, present status, and future of density-functional theory (DFT) is informally reviewed and discussed by 70 workers in the field, including molecular scientists, materials scientists, method developers and practitioners. The
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::296d84e7ec2aabfb5c8e2a85f197cdb2
https://hdl.handle.net/21.11116/0000-000C-06E3-D21.11116/0000-000C-06E5-B
https://hdl.handle.net/21.11116/0000-000C-06E3-D21.11116/0000-000C-06E5-B
Autor:
John P. Perdew, Jianhang Xu, Chunyi Zhang, Linfeng Zhang, Xifan Wu, Michael L. Klein, Fujie Tang, Diana Y. Qiu, Mohan Chen
Publikováno v:
The Journal of Physical Chemistry B. 125:11444-11456
Within the framework of Kohn-Sham density functional theory (DFT), the ability to provide good predictions of water properties by employing a strongly constrained and appropriately normed (SCAN) functional has been extensively demonstrated in recent
Autor:
Aaron D. Kaplan, John P. Perdew
Publikováno v:
Physical Review Materials. 6
We derive and motivate a Laplacian-level, orbital-free meta-generalized-gradient approximation (LL-MGGA) for the exchange-correlation energy, targeting accurate ground-state properties of $sp$ and $sd$ metallic condensed matter, in which the density
Autor:
Jinliang Ning, Manish Kothakonda, James W. Furness, Aaron D. Kaplan, Sebastian Ehlert, Jan Gerit Brandenburg, John P. Perdew, Jianwei Sun
Publikováno v:
Physical Review B. 106
Delocalization errors, such as charge-transfer and some self-interaction errors, plague computationally-efficient and otherwise-accurate density functional approximations (DFAs). Evaluating a semi-local DFA non-self-consistently on the Hartree-Fock (
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b6d4dfc185495e257019dd9618f0a2d2
http://arxiv.org/abs/2207.13509
http://arxiv.org/abs/2207.13509