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Advances in methods and algorithms in a modern quantum chemistry program package

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TLDR
Specific developments discussed include fast methods for density functional theory calculations, linear scaling evaluation of energies, NMR chemical shifts and electric properties, fast auxiliary basis function methods for correlated energies and gradients, equation-of-motion coupled cluster methods for ground and excited states, geminal wavefunctions, embedding methods and techniques for exploring potential energy surfaces.
Abstract
Advances in theory and algorithms for electronic structure calculations must be incorporated into program packages to enable them to become routinely used by the broader chemical community. This work reviews advances made over the past five years or so that constitute the major improvements contained in a new release of the Q-Chem quantum chemistry package, together with illustrative timings and applications. Specific developments discussed include fast methods for density functional theory calculations, linear scaling evaluation of energies, NMR chemical shifts and electric properties, fast auxiliary basis function methods for correlated energies and gradients, equation-of-motion coupled cluster methods for ground and excited states, geminal wavefunctions, embedding methods and techniques for exploring potential energy surfaces.

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Multiwfn: a multifunctional wavefunction analyzer.

TL;DR: Five practical examples involving a wide variety of systems and analysis methods are given to illustrate the usefulness of Multiwfn, a multifunctional program for wavefunction analysis.
Journal ArticleDOI

Long-range corrected hybrid density functionals with damped atom–atom dispersion corrections

TL;DR: The re-optimization of a recently proposed long-range corrected hybrid density functional, omegaB97X-D, to include empirical atom-atom dispersion corrections yields satisfactory accuracy for thermochemistry, kinetics, and non-covalent interactions.
Journal Article

Long-Range Corrected Hybrid Density Functionals with Damped Atom-Atom Dispersion Corrections

TL;DR: Chai and Head-Gordon as discussed by the authors proposed a long-range corrected (LC) hybrid density functional with Damped Atom-Atom Dispersion corrections, which is called ωB97X-D.
References
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Journal ArticleDOI

New operators for electronic density calculation. II. Application to hydrogen, first-row atoms, and first-row diatomic hydrides

TL;DR: The first practical calculations using two new operators specifically designed for determination of electronic spin and charge density at nuclei are reported in this paper, where the new operators are generally found to have performance superior to the usual delta function formulation and to an alternative one based on the Hiller-Sucher-Feinberg identity.
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Fast methods for resumming matrix polynomials and Chebyshev matrix polynomials

TL;DR: A few numerical tests are presented, showing that evaluation of matrix functions via polynomial expansions can be preferable when the matrix is sparse and these fast resummation algorithms are employed.
Journal ArticleDOI

Reactivity and Structure of the 5-Dehydro-m-xylylene Anion

TL;DR: The electronic structure of dehydro-m-xylylene anion (DMX-) has been investigated by using chemical reactivity studies and electronic structure calculations, and Reactivity and thermochemical properties indicate a phenyl-like anion, consistent with theoretical predictions.
Journal ArticleDOI

An optimal point-charge model for molecular electrostatic potentials

TL;DR: In this article, a method for obtaining atomic point-charges for a molecule based on reproducing the low-order multipole moments of the system was proposed, and the resulting multipole-derived charges (MDCs) are well defined, do not require sampling of the ESP at grid points around the molecule and provide excellent reproduction of the electrostatic potential.
Journal ArticleDOI

Absolute and relative energies from polarized atomic orbital self-consistent field calculations and a second order correction. Convergence with size and composition of the secondary basis

TL;DR: In this article, the Hartree-Fock calculation is performed in the PAO basis, and the results show that the quality of PAO calculations converges smoothly with X. To correct a PAO-HF calculation for residual deficiencies, a noniterative second order correction is introduced.
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