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Development and use of quantum mechanical molecular models. 76. AM1: a new general purpose quantum mechanical molecular model

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TLDR
In this paper, a new parametric quantum mechanical molecular model, AM1 (Austin Model l), based on the NDDO approximation, is described, in which the major weaknesses of MNDO, in particular failure to reproduce hydrogen bonds, have been overcome without any increase in computing time.
Abstract
A new parametric quantum mechanical molecular model, AM1 (Austin Model l), based on the NDDO approximation, is described. In it the major weaknesses of MNDO, in particular failure to reproduce hydrogen bonds, have been overcome without any increase in computing time. Results for 167 molecules are reported. Parameters are currently available for C, H, 0, and N.

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Temperature dependence of the lowest excited singlet‐state lifetime of all‐trans‐β‐carotene and fully deuterated all‐trans‐β‐carotene

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1H NMR and Molecular Modeling Study on the Inclusion Complex β-Cyclodextrin−Indomethacin

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Atom based parametrization for a conformationally dependent hydrophobic index

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Theoretical study on pyrolysis and sensitivity of energetic compounds: (3) Nitro derivatives of aminobenzenes

TL;DR: In this paper, the UHF-SCF-AM1 MO method has been applied to study pyrolysis initiation reactions (homolysis of bond C-NO2 into radicals) of seven nitro derivatives of aminobenzenes.
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Semiempirical Quantum-Chemical Orthogonalization-Corrected Methods: Benchmarks for Ground-State Properties.

TL;DR: Statistical evaluations show that the OMx and OMx-Dn methods outperform the other methods for most of the benchmark sets and offer a fast and robust treatment of noncovalent interactions.
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