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Advances in molecular quantum chemistry contained in the Q-Chem 4 program package

Molecular Physics · 2014 · Vol. 113(2) · pp. 184–215
Yihan ShaoZhengting GanEvgeny EpifanovskyAndrew T. B. GilbertMichael WormitJörg KußmannAdrian W. LangeAndrew BehnJia DengXintian FengDebashree GhoshMatthew GoldeyPaul R. HornLeif D. JacobsonIlya KalimanRustam Z. KhaliullinTomasz KuśArie LandauJie LiuEmil ProynovYoung Min RheeRyan M. RichardMary A. RohrdanzRyan P. SteeleEric J. SundstromH. Lee WoodcockPaul M. ZimmermanDmitry ZuevBen AlbrechtEthan AlguireBrian AustinGregory J. O. BeranYves BernardEric BerquistKai BrandhorstKsenia B. BravayaShawn T. BrownDavid CasanovaC C ChangYunqing ChenSiu Hung ChienKristina D. ClosserDeborah L. CrittendenMichael DiedenhofenRobert A. DiStasioHainam DoAnthony D. DutoiRichard G. EdgarShervin FatehiLászló Füsti-MolnárAn GhyselsAnna Golubeva-ZadorozhnayaJoseph GomesMagnus W. D. Hanson‐HeinePhilipp H. P. HarbachAndreas HauserEdward G. HohensteinZachary C. HoldenThomas‐C. JagauHyunjun JiBenjamin KadukKirill KhistyaevJaehoon KimJihan KimRollin A. KingPhil KlunzingerDmytro KosenkovTim KowalczykCaroline M. KrauterKa Un LaoAdèle D. LaurentKeith V. LawlerSergey V. LevchenkoChing Yeh LinFenglai LiuEster LivshitsRohini C. LochanArne LuenserPrashant Uday ManoharSamuel F. ManzerShan-Ping MaoNarbe MardirossianAleksandr V. MarenichSimon A. MaurerNicholas J. MayhallEric NeuscammanC. Melania OanaRoberto Olivares‐AmayaD.P. O'NeillJohn ParkhillTrilisa M. PerrineRoberto PeveratiAlexander ProciukDirk R. RehnEdina RostaNicholas J. RussShaama Mallikarjun SharadaSandeep SharmaDavid W. SmallAlexander J. SodtTamar SteinDavid StückYu-Chuan SuAlex J. W. ThomTakashi TsuchimochiVitalii VanovschiLeslie Vogt-MarantoOleg A. VydrovTao WangMark A. WatsonJan WenzelAlec F. WhiteChristopher F. WilliamsJun YangSina YeganehShane R. YostZhi‐Qiang YouIgor Ying ZhangXing ZhangYan ZhaoBernard R. BrooksGarnet Kin‐Lic ChanDaniel M. ChipmanChristopher J. CramerWilliam A. GoddardMark S. GordonWarren J. HehreAndreas KlamtHenry F. SchaeferMichael W. SchmidtC. David SherrillDonald G. TruhlarArieh WarshelXin XuAlán Aspuru‐GuzikRoi BaerAlexis T. BellNicholas A. BesleyJeng‐Da ChaiAndreas DreuwBarry D. DunietzThomas R. FurlaniSteven R. GwaltneyChao‐Ping HsuYousung JungJing KongDaniel S. LambrechtWanZhen LiangChristian OchsenfeldVitaly A. RassolovLyudmila V. SlipchenkoJoseph E. SubotnikTroy Van VoorhisJohn M. HerbertAnna I. KrylovPeter M. W. GillMartin Head‐Gordon

Abstract

A summary of the technical advances that are incorporated in the fourth major release of the Q-Chem quantum chemistry program is provided, covering approximately the last seven years. These include developments in density functional theory methods and algorithms, nuclear magnetic resonance (NMR) property evaluation, coupled cluster and perturbation theories, methods for electronically excited and open-shell species, tools for treating extended environments, algorithms for walking on potential surfaces, analysis tools, energy and electron transfer modelling, parallel computing capabilities, and graphical user interfaces. In addition, a selection of example case studies that illustrate these capabilities is given. These include extensive benchmarks of the comparative accuracy of modern density functionals for bonded and non-bonded interactions, tests of attenuated second order Møller–Plesset (MP2) methods for intermolecular interactions, a variety of parallel performance benchmarks, and tests of the accuracy of implicit solvation models. Some specific chemical examples include calculations on the strongly correlated Cr2 dimer, exploring zeolite-catalysed ethane dehydrogenation, energy decomposition analysis of a charged ter-molecular complex arising from glycerol photoionisation, and natural transition orbitals for a Frenkel exciton state in a nine-unit model of a self-assembling nanotube.

Advanced Chemical Physics StudiesSpectroscopy and Quantum Chemical StudiesCatalysis and Oxidation ReactionsChemistryExcited stateQuantum chemistryDensity functional theoryComputational chemistryIntermolecular forceAtomic orbitalPerturbation theory (quantum mechanics)Computer scienceChemical physics
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