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Jan M. L. Martin

Researcher at Weizmann Institute of Science

Publications -  321
Citations -  28265

Jan M. L. Martin is an academic researcher from Weizmann Institute of Science. The author has contributed to research in topics: Ab initio & Coupled cluster. The author has an hindex of 83, co-authored 308 publications receiving 25411 citations. Previous affiliations of Jan M. L. Martin include Ames Research Center & San Diego Supercomputer Center.

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Development of density functionals for thermochemical kinetics

TL;DR: A density functional theory exchange-correlation functional for the exploration of reaction mechanisms is proposed, which has an accuracy in the 2 kcal/mol range for transition state barriers but, unlike previous attempts, this improved accuracy does not come at the expense of equilibrium properties.
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Development of Novel Density Functionals for Thermochemical Kinetics

TL;DR: In this article, a new density functional theory (DFT) exchange-correlation functional for the exploration of reaction mechanisms is proposed, denoted BMK (Boese-Martin for Kinetics).
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Correlation consistent valence basis sets for use with the Stuttgart–Dresden–Bonn relativistic effective core potentials: The atoms Ga–Kr and In–Xe

TL;DR: In this article, the SDB-cc-pVQZ pseudopotential basis set was optimized for use with the large core (valence-electrons only) Stuttgart-Dresden-Bonn relativistic pseudopotentials.
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Towards standard methods for benchmark quality ab initio thermochemistry :w1 and w2 theory

TL;DR: In this article, two new schemes for computing molecular total atomization energies (TAEs) and/or heats of formation (ΔHf∘) of first and second-row compounds to very high accuracy are presented.
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Ab initio total atomization energies of small molecules — towards the basis set limit

TL;DR: In this paper, the authors used correlation consistent basis sets of up to [7s6p5d4f3g2h] quality, including core correlation, to calculate the total atomization energies of polyatomic molecules.