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      “Transitivity”: A Code for Computing Kinetic and Related Parameters in Chemical Transformations and Transport Phenomena

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          Abstract

          The Transitivity function, defined in terms of the reciprocal of the apparent activation energy, measures the propensity for a reaction to proceed and can provide a tool for implementing phenomenological kinetic models. Applications to systems which deviate from the Arrhenius law at low temperature encouraged the development of a user-friendly graphical interface for estimating the kinetic and thermodynamic parameters of physical and chemical processes. Here, we document the Transitivity code, written in Python, a free open-source code compatible with Windows, Linux and macOS platforms. Procedures are made available to evaluate the phenomenology of the temperature dependence of rate constants for processes from the Arrhenius and Transitivity plots. Reaction rate constants can be calculated by the traditional Transition-State Theory using a set of one-dimensional tunneling corrections (Bell (1935), Bell (1958), Skodje and Truhlar and, in particular, the deformed ( d -TST) approach). To account for the solvent effect on reaction rate constant, implementation is given of the Kramers and of Collins–Kimball formulations. An input file generator is provided to run various molecular dynamics approaches in CPMD code. Examples are worked out and made available for testing. The novelty of this code is its general scope and particular exploit of d -formulations to cope with non-Arrhenius behavior at low temperatures, a topic which is the focus of recent intense investigations. We expect that this code serves as a quick and practical tool for data documentation from electronic structure calculations: It presents a very intuitive graphical interface which we believe to provide an excellent working tool for researchers and as courseware to teach statistical thermodynamics, thermochemistry, kinetics, and related areas.

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          ANALYSIS OF RECENT MEASUREMENTS OF THE VISCOSITY OF GLASSES

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            Die Abhängigkeit der Viscosität von der Temperatur bie unterkühlten Flüssigkeiten

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              Quantum mechanical transition state theory and a new semiclassical model for reaction rate constants

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Molecules
                Molecules
                molecules
                Molecules
                MDPI
                1420-3049
                25 September 2019
                October 2019
                : 24
                : 19
                : 3478
                Affiliations
                [1 ]Grupo de Química Teórica e Estrutural de Anápolis, Centro de Pesquisa e Pós-Graduação. Universidade Estadual de Goiás, 75132-400 Anápolis, GO, Brazil
                [2 ]Instituto de Química, Universidade de Brasília, Caixa Postal 4478, 70904-970 Brasília, Brazil; kcmundim@ 123456unb.br
                [3 ]Dipartimento di Chimica, Biologia e Biotecnologie, Università di Perugia, 06123 Perugia, Italy
                Author notes
                [* ]Correspondence: hugogontijomachado@ 123456gmail.com (H.G.M.); flavio_olimpio@ 123456outlook.com (F.O.S.-N.); nayaradcoutinho@ 123456gmail.com (N.D.C.); fede_75it@ 123456yahoo.it (F.P.); fatioleg@ 123456gmail.com (V.H.C.-S.); Tel.: +55 62 3328-1156 (V.H.C.-S)
                Author information
                https://orcid.org/0000-0001-6238-1513
                https://orcid.org/0000-0002-7411-0099
                Article
                molecules-24-03478
                10.3390/molecules24193478
                6803931
                31557893
                6cf04e70-6088-4a52-8076-9de35cc88fda
                © 2019 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 16 August 2019
                : 08 September 2019
                Categories
                Article

                d-tst,activation energy,transitivity plot,solution kinetic

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