Many-body van der Waals interactions in molecules and condensed matter

被引:175
作者
DiStasio, Robert A., Jr. [1 ]
Gobre, Vivekanand V. [2 ]
Tkatchenko, Alexandre [2 ]
机构
[1] Princeton Univ, Dept Chem, Princeton, NJ 08544 USA
[2] Max Planck Gesell, Fritz Haber Inst, D-14195 Berlin, Germany
基金
欧洲研究理事会;
关键词
van der Waals dispersion interactions; intermolecular interactions; electron correlation; random phase approximation; density functional theory; adiabatic connection fluctuation-dissipation theorem; CRYSTAL-STRUCTURE PREDICTION; PLESSET PERTURBATION-THEORY; DENSITY-FUNCTIONAL THEORY; DISPERSION FORCES; INTERACTION ENERGIES; DIELECTRIC-CONSTANT; MODEL; GAS; APPROXIMATION; SPECTROSCOPY;
D O I
10.1088/0953-8984/26/21/213202
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interactions play a crucial role in the structure, stability and function of a wide variety of systems in biology, chemistry and physics. Starting with the exact expression for the electron correlation energy provided by the adiabatic connection fluctuation-dissipation theorem, we derive both pairwise and many-body interatomic methods for computing the long-range dispersion energy by considering a model system of coupled quantum harmonic oscillators within the random-phase approximation. By coupling this approach to density functional theory, the resulting many-body dispersion (MBD) method provides an accurate and efficient scheme for computing the frequency- dependent polarizability and many-body vdW energy in molecules and materials with a finite electronic gap. A select collection of applications are presented that ascertain the fundamental importance of these non-bonded interactions across the spectrum of intermolecular (the S22 and S66 benchmark databases), intramolecular (conformational energies of alanine tetrapeptide) and supramolecular (binding energy of the 'buckyball catcher') complexes, as well as molecular crystals (cohesive energies in oligoacenes). These applications demonstrate that electrodynamic response screening and beyond-pairwise many-body vdW interactions-both captured at the MBD level of theory-play a quantitative, and sometimes even qualitative, role in describing the properties considered herein. This work is then concluded with an in-depth discussion of the challenges that remain in the future development of reliable (accurate and efficient) methods for treating many- body vdW interactions in complex materials and provides a roadmap for navigating many of the research avenues that are yet to be explored.
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页数:16
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共 126 条
[91]   Random-phase approximation and its applications in computational chemistry and materials science [J].
Ren, Xinguo ;
Rinke, Patrick ;
Joas, Christian ;
Scheffler, Matthias .
JOURNAL OF MATERIALS SCIENCE, 2012, 47 (21) :7447-7471
[92]   Resolution-of-identity approach to Hartree-Fock, hybrid density functionals, RPA, MP2 and GW with numeric atom-centered orbital basis functions [J].
Ren, Xinguo ;
Rinke, Patrick ;
Blum, Volker ;
Wieferink, Juergen ;
Tkatchenko, Alexandre ;
Sanfilippo, Andrea ;
Reuter, Karsten ;
Scheffler, Matthias .
NEW JOURNAL OF PHYSICS, 2012, 14
[93]   Beyond the Random-Phase Approximation for the Electron Correlation Energy: The Importance of Single Excitations [J].
Ren, Xinguo ;
Tkatchenko, Alexandre ;
Rinke, Patrick ;
Scheffler, Matthias .
PHYSICAL REVIEW LETTERS, 2011, 106 (15)
[94]   S66: A Well-balanced Database of Benchmark Interaction Energies Relevant to Biomolecular Structures [J].
Rezac, Jan ;
Riley, Kevin E. ;
Hobza, Pavel .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2011, 7 (08) :2427-2438
[95]   Stabilization and Structure Calculations for Noncovalent Interactions in Extended Molecular Systems Based on Wave Function and Density Functional Theories [J].
Riley, Kevin E. ;
Pitonak, Michel ;
Jurecka, Petr ;
Hobza, Pavel .
CHEMICAL REVIEWS, 2010, 110 (09) :5023-5063
[96]   Binding Energy of Adsorbates on a Noble-Metal Surface: Exchange and Correlation Effects [J].
Rohlfing, Michael ;
Bredow, Thomas .
PHYSICAL REVIEW LETTERS, 2008, 101 (26)
[97]   Secondary Structure of Ac-Alan-LysH+ Polyalanine Peptides (n=5, 10, 15) in Vacuo: Helical or Not? [J].
Rossi, Mariana ;
Blum, Volker ;
Kupser, Peter ;
von Helden, Gert ;
Bierau, Frauke ;
Pagel, Kevin ;
Meijer, Gerard ;
Scheffler, Matthias .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2010, 1 (24) :3465-3470
[98]   Density-Functional Theory with Screened van der Waals Interactions for the Modeling of Hybrid Inorganic-Organic Systems [J].
Ruiz, Victor G. ;
Liu, Wei ;
Zojer, Egbert ;
Scheffler, Matthias ;
Tkatchenko, Alexandre .
PHYSICAL REVIEW LETTERS, 2012, 108 (14)
[99]   Fast and Accurate Modeling of Molecular Atomization Energies with Machine Learning [J].
Rupp, Matthias ;
Tkatchenko, Alexandre ;
Mueller, Klaus-Robert ;
von Lilienfeld, O. Anatole .
PHYSICAL REVIEW LETTERS, 2012, 108 (05)
[100]   Electrodynamic response and stability of molecular crystals [J].
Schatschneider, Bohdan ;
Liang, Jian-Jie ;
Reilly, Anthony M. ;
Marom, Noa ;
Zhang, Guo-Xu ;
Tkatchenko, Alexandre .
PHYSICAL REVIEW B, 2013, 87 (06)