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Vibronic coupling densityunderstandi...
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Haruta, Naoki.
Vibronic coupling densityunderstanding molecular deformation /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Vibronic coupling densityby Tatsuhisa Kato, Naoki Haruta, Tohru Sato.
Reminder of title:
understanding molecular deformation /
Author:
Kato, Tatsuhisa.
other author:
Haruta, Naoki.
Published:
Singapore :Springer Singapore :2021.
Description:
xiv, 113 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Molecular structure.
Online resource:
https://doi.org/10.1007/978-981-16-1796-6
ISBN:
9789811617966$q(electronic bk.)
Vibronic coupling densityunderstanding molecular deformation /
Kato, Tatsuhisa.
Vibronic coupling density
understanding molecular deformation /[electronic resource] :by Tatsuhisa Kato, Naoki Haruta, Tohru Sato. - Singapore :Springer Singapore :2021. - xiv, 113 p. :ill., digital ;24 cm. - SpringerBriefs in molecular science,2191-5407. - SpringerBriefs in molecular science..
1. Introduction: What is understanding chemistry? -- 2. How the chemical processes are qualitatively explained by the simple molecular orbital theory -- 3. How the chemical processes are visualized and quantified by VCD and VCC -- 4. Relationship between Fukui function and VCD -- 5. Transition dipole moment density -- 6. Outlooks for new chemical systems by VCD and VCC -- 7. Appendix.
This book introduces vibronic coupling density and vibronic coupling constant analyses as a way to understand molecular structure and chemical reactions. After quantum study, the behavior of electrons circulating around nuclei led to the principal concept that underlies all explanations in chemistry. Many textbooks have given plausible explanations to clarify molecular structure-for example, the bond elongation of ethylene under anionization and the nonplanar structure of ammonia. Frontier molecular orbital concepts were proposed to visualize the path of chemical reactions, and conventional explanations gave students a familiarity with molecular structures in terms of the electronic state. By contrast, this book offers a more rational and more convincing path to understanding. It starts from the ab initio molecular Hamiltonian and provides systematic, rational approaches to comprehend chemical phenomena. In this way, the book leads the reader to a grasp of the quantitative evaluation of the force applied under the molecular deformation process. As well, guidelines are offered for integrating the traditional "hand-waving" approach of chemistry with more rational and general VCD and VCC alternatives along with the outlook for newly functionalized chemical systems.
ISBN: 9789811617966$q(electronic bk.)
Standard No.: 10.1007/978-981-16-1796-6doiSubjects--Topical Terms:
194951
Molecular structure.
LC Class. No.: QD461 / .K37 2021
Dewey Class. No.: 541.22
Vibronic coupling densityunderstanding molecular deformation /
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1. Introduction: What is understanding chemistry? -- 2. How the chemical processes are qualitatively explained by the simple molecular orbital theory -- 3. How the chemical processes are visualized and quantified by VCD and VCC -- 4. Relationship between Fukui function and VCD -- 5. Transition dipole moment density -- 6. Outlooks for new chemical systems by VCD and VCC -- 7. Appendix.
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This book introduces vibronic coupling density and vibronic coupling constant analyses as a way to understand molecular structure and chemical reactions. After quantum study, the behavior of electrons circulating around nuclei led to the principal concept that underlies all explanations in chemistry. Many textbooks have given plausible explanations to clarify molecular structure-for example, the bond elongation of ethylene under anionization and the nonplanar structure of ammonia. Frontier molecular orbital concepts were proposed to visualize the path of chemical reactions, and conventional explanations gave students a familiarity with molecular structures in terms of the electronic state. By contrast, this book offers a more rational and more convincing path to understanding. It starts from the ab initio molecular Hamiltonian and provides systematic, rational approaches to comprehend chemical phenomena. In this way, the book leads the reader to a grasp of the quantitative evaluation of the force applied under the molecular deformation process. As well, guidelines are offered for integrating the traditional "hand-waving" approach of chemistry with more rational and general VCD and VCC alternatives along with the outlook for newly functionalized chemical systems.
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EB QD461 .K19 2021 2021
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https://doi.org/10.1007/978-981-16-1796-6
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