Vibronic Coupling Density: Understanding Molecular Deformation: SpringerBriefs in Molecular Science
Autor Tatsuhisa Kato, Naoki Haruta, Tohru Satoen Limba Engleză Paperback – 19 iun 2021
Din seria SpringerBriefs in Molecular Science
- Preț: 411.46 lei
- Preț: 379.09 lei
- Preț: 356.49 lei
- Preț: 441.25 lei
- Preț: 389.70 lei
- Preț: 376.22 lei
- Preț: 348.77 lei
- Preț: 345.14 lei
- Preț: 347.68 lei
- Preț: 346.70 lei
- Preț: 376.43 lei
- Preț: 342.14 lei
- Preț: 375.23 lei
- Preț: 375.23 lei
- Preț: 379.09 lei
- Preț: 376.59 lei
- Preț: 476.79 lei
- Preț: 378.12 lei
- Preț: 376.59 lei
- Preț: 376.59 lei
- Preț: 375.23 lei
- Preț: 351.18 lei
- Preț: 377.73 lei
- Preț: 372.73 lei
- Preț: 378.54 lei
- Preț: 376.96 lei
- Preț: 377.35 lei
- Preț: 378.12 lei
- Preț: 376.04 lei
- Preț: 346.59 lei
- Preț: 375.45 lei
- Preț: 377.73 lei
- Preț: 381.00 lei
- Preț: 377.18 lei
- Preț: 376.96 lei
- Preț: 380.07 lei
- Preț: 376.22 lei
- Preț: 343.72 lei
- Preț: 376.22 lei
- Preț: 377.35 lei
- Preț: 343.72 lei
- Preț: 376.22 lei
- Preț: 375.07 lei
- Preț: 374.85 lei
- 15% Preț: 464.97 lei
- Preț: 376.43 lei
- Preț: 341.75 lei
- Preț: 374.30 lei
- Preț: 375.23 lei
- Preț: 377.57 lei
Preț: 462.88 lei
Preț vechi: 544.56 lei
-15% Nou
Puncte Express: 694
Preț estimativ în valută:
88.59€ • 92.14$ • 74.24£
88.59€ • 92.14$ • 74.24£
Carte tipărită la comandă
Livrare economică 14-28 martie
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9789811617959
ISBN-10: 9811617953
Pagini: 113
Ilustrații: XIV, 113 p. 66 illus., 45 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.19 kg
Ediția:1st ed. 2021
Editura: Springer Nature Singapore
Colecția Springer
Seria SpringerBriefs in Molecular Science
Locul publicării:Singapore, Singapore
ISBN-10: 9811617953
Pagini: 113
Ilustrații: XIV, 113 p. 66 illus., 45 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.19 kg
Ediția:1st ed. 2021
Editura: Springer Nature Singapore
Colecția Springer
Seria SpringerBriefs in Molecular Science
Locul publicării:Singapore, Singapore
Cuprins
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.
Notă biografică
Tatsuhisa Kato received his Ph.D. from Kyoto University in 1984. His research interests include molecular spectroscopy, especially electron magnetic resonance and electron spin resonance (ESR) spectroscopy. He has clearly characterized the electronic and spin states of fullerene species by ESR spectroscopy and exercises worldwide leadership in fullerene chemistry. As of April 2020, he has published 157 articles in internationally renowned journals such as Nature, Science, and the Journal of the American Chemical Society. He was awarded the Society Award by the Society of Electron Spin Science and Technology, Japan, in 2017.
Tohru Sato received his Ph.D. from Kyoto University in 1997. He is now the head of the theoretical research division and a professor at the Fukui Institute of Fundamental Chemistry (FIFC) at Kyoto University. He has continued his theoretical investigation of the interaction of the electronic state with molecular vibration and has proposed vibroniccoupling density (VCD) analysis. He applied his VCD analysis to many chemical processes, especially in chemical reactions, photo-excited processes, and the Jahn–Teller effect. Now he is expanding his VCD analysis into the application of predicting newly functionalized chemical systems. He has published 106 articles as of April 2020, and he won the Society of Computer Chemistry, Japan, (SCCJ) Award of the Year in 2016.Naoki Haruta received his Ph.D. from Kyoto University in 2016. He is now spending an exciting experience as a young theoretician collaborating with Prof. Sato at the Fukui Institute of Fundamental Chemistry (FIFC). His Ph.D. work on VCD analysis was carried out under Prof. Sato. He recently has expanded the scope of his work to include theoretical research into metal clusters and nano-structures. He has published 21 articles as of April 2020 and received the Kenichi Fukui Encouragement Award in 2019, the Young Scholar Lecture Award from theChemical Society of Japan in 2020, the PCCP Prize from the Royal Society of Chemistry in 2021, and others.
Tohru Sato received his Ph.D. from Kyoto University in 1997. He is now the head of the theoretical research division and a professor at the Fukui Institute of Fundamental Chemistry (FIFC) at Kyoto University. He has continued his theoretical investigation of the interaction of the electronic state with molecular vibration and has proposed vibroniccoupling density (VCD) analysis. He applied his VCD analysis to many chemical processes, especially in chemical reactions, photo-excited processes, and the Jahn–Teller effect. Now he is expanding his VCD analysis into the application of predicting newly functionalized chemical systems. He has published 106 articles as of April 2020, and he won the Society of Computer Chemistry, Japan, (SCCJ) Award of the Year in 2016.Naoki Haruta received his Ph.D. from Kyoto University in 2016. He is now spending an exciting experience as a young theoretician collaborating with Prof. Sato at the Fukui Institute of Fundamental Chemistry (FIFC). His Ph.D. work on VCD analysis was carried out under Prof. Sato. He recently has expanded the scope of his work to include theoretical research into metal clusters and nano-structures. He has published 21 articles as of April 2020 and received the Kenichi Fukui Encouragement Award in 2019, the Young Scholar Lecture Award from theChemical Society of Japan in 2020, the PCCP Prize from the Royal Society of Chemistry in 2021, and others.
Caracteristici
Provides a rational and convincing understanding of the frontier orbital theory Includes figures that are visualizations for tracing the paths of chemical reactions Leads the reader to a systematic realization of molecular structure in terms of electronic states