Electronegativity and its multiple faces: persistence and measurement
Electronegativity is a quantified, typical chemical concept, which correlates the ability of chemical species (atoms, molecules, ions, radicals, elements) to attract electrons during their contact with other species with measurable quantities such as dissociation energies, dipole moments, ionic radi...
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Published in | Foundations of chemistry Vol. 19; no. 1; pp. 61 - 75 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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Dordrecht
Springer Netherlands
01.04.2017
Springer Springer Nature B.V |
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Abstract | Electronegativity is a quantified, typical chemical concept, which correlates the ability of chemical species (atoms, molecules, ions, radicals, elements) to attract electrons during their contact with other species with measurable quantities such as dissociation energies, dipole moments, ionic radii, ionization potentials, electron affinities and spectroscopic data. It is applied to the description and explanation of chemical polarity, reaction mechanisms, other concepts such as acidity and oxidation, the estimation of types of chemical compounds and periodicity. Although this concept is very successful and widely used, and in spite of the fact that it is still subject to scientific investigations, neither a more than intuitive definition nor a generally accepted, logically clear and standardized quantification model has been developed. In the present work, electronegativity is presented and discussed with respect to its main conceptual and operational continuities and discontinuities. We try to analyze the epistemological status of electronegativity, conceived as a typical notion of chemical sciences. Under ‘epistemological status’ we subsume the issues of its reference, its historical persistence, and the relationship between its measurement and quantification. |
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AbstractList | Electronegativity is a quantified, typical chemical concept, which correlates the ability of chemical species (atoms, molecules, ions, radicals, elements) to attract electrons during their contact with other species with measurable quantities such as dissociation energies, dipole moments, ionic radii, ionization potentials, electron affinities and spectroscopic data. It is applied to the description and explanation of chemical polarity, reaction mechanisms, other concepts such as acidity and oxidation, the estimation of types of chemical compounds and periodicity. Although this concept is very successful and widely used, and in spite of the fact that it is still subject to scientific investigations, neither a more than intuitive definition nor a generally accepted, logically clear and standardized quantification model has been developed. In the present work, electronegativity is presented and discussed with respect to its main conceptual and operational continuities and discontinuities. We try to analyze the epistemological status of electronegativity, conceived as a typical notion of chemical sciences. Under ‘epistemological status’ we subsume the issues of its reference, its historical persistence, and the relationship between its measurement and quantification. |
Audience | Academic |
Author | González, Juan Camilo Martínez Ruthenberg, Klaus |
Author_xml | – sequence: 1 givenname: Klaus surname: Ruthenberg fullname: Ruthenberg, Klaus organization: Coburg University of Applied Sciences and Arts – sequence: 2 givenname: Juan Camilo Martínez surname: González fullname: González, Juan Camilo Martínez email: olimac62@hotmail.com organization: Consejo Nacional de Investigaciones Científicas y Técnicas – CONICET |
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SubjectTerms | Chemical compounds Chemical research Chemistry/Food Science Dipole moments Education Electronegativity Electrons Epistemology History Ionization potentials Oxidation Philosophy Philosophy of Science Physical Chemistry Reaction mechanisms |
Title | Electronegativity and its multiple faces: persistence and measurement |
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