High Resolution Imaging, Spectroscopy and Nuclear Quantum Effects of Interfacial Water: Springer Theses
Autor Jing Guoen Limba Engleză Paperback – 23 dec 2018
Toate formatele și edițiile | Preț | Express |
---|---|---|
Paperback (1) | 632.55 lei 6-8 săpt. | |
Springer Nature Singapore – 23 dec 2018 | 632.55 lei 6-8 săpt. | |
Hardback (1) | 638.76 lei 6-8 săpt. | |
Springer Nature Singapore – 25 iul 2018 | 638.76 lei 6-8 săpt. |
Din seria Springer Theses
- 18% Preț: 997.88 lei
- Preț: 389.88 lei
- 15% Preț: 646.94 lei
- 18% Preț: 943.43 lei
- Preț: 399.29 lei
- 18% Preț: 944.99 lei
- 15% Preț: 636.80 lei
- 18% Preț: 941.05 lei
- 15% Preț: 643.16 lei
- 15% Preț: 642.68 lei
- 18% Preț: 1103.62 lei
- 20% Preț: 558.82 lei
- 18% Preț: 1112.30 lei
- 18% Preț: 944.19 lei
- 18% Preț: 1109.92 lei
- 18% Preț: 1217.27 lei
- 15% Preț: 640.06 lei
- 15% Preț: 636.45 lei
- 15% Preț: 640.06 lei
- 15% Preț: 640.88 lei
- Preț: 389.70 lei
- 20% Preț: 563.89 lei
- Preț: 393.35 lei
- 15% Preț: 637.93 lei
- 15% Preț: 641.85 lei
- 18% Preț: 1225.94 lei
- 20% Preț: 551.36 lei
- 18% Preț: 1229.10 lei
- 15% Preț: 639.25 lei
- 18% Preț: 999.45 lei
- 15% Preț: 640.06 lei
- 18% Preț: 1220.45 lei
- 18% Preț: 1116.26 lei
- 18% Preț: 1110.72 lei
- 18% Preț: 1000.87 lei
- 18% Preț: 891.17 lei
- 15% Preț: 640.06 lei
- 5% Preț: 1154.07 lei
- 15% Preț: 635.96 lei
- 15% Preț: 640.88 lei
- Preț: 387.20 lei
- 18% Preț: 1109.92 lei
- Preț: 385.25 lei
- Preț: 385.25 lei
- 18% Preț: 1112.30 lei
- 18% Preț: 999.45 lei
- Preț: 386.99 lei
- 15% Preț: 637.13 lei
- 20% Preț: 554.20 lei
- 20% Preț: 555.57 lei
Preț: 632.55 lei
Preț vechi: 744.18 lei
-15% Nou
Puncte Express: 949
Preț estimativ în valută:
121.05€ • 125.66$ • 100.94£
121.05€ • 125.66$ • 100.94£
Carte tipărită la comandă
Livrare economică 22 martie-05 aprilie
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9789811346620
ISBN-10: 9811346623
Pagini: 136
Ilustrații: XVIII, 115 p. 49 illus., 48 illus. in color.
Dimensiuni: 155 x 235 x 7 mm
Greutate: 0.2 kg
Ediția:Softcover reprint of the original 1st ed. 2018
Editura: Springer Nature Singapore
Colecția Springer
Seria Springer Theses
Locul publicării:Singapore, Singapore
ISBN-10: 9811346623
Pagini: 136
Ilustrații: XVIII, 115 p. 49 illus., 48 illus. in color.
Dimensiuni: 155 x 235 x 7 mm
Greutate: 0.2 kg
Ediția:Softcover reprint of the original 1st ed. 2018
Editura: Springer Nature Singapore
Colecția Springer
Seria Springer Theses
Locul publicării:Singapore, Singapore
Cuprins
Introduction.- Submolecular resolution imaging of interfacial water.- Vibrational spectroscopy of interfacial water.- Nuclear quantum effects of interfacial water.- Summary and outlook.
Notă biografică
Jing Guo grew up in Henan Province, China and received her B.S. in Physics from Lanzhou University, China in 2011. Under the supervision of Prof. Ying Jiang, she obtained her Ph.D. from the School of Physics, Peking University in July 2016. Subsequently, she became a postdoc fellow in the same group and continued to investigate the structure and dynamics of interfacial ice on various substrates.
Textul de pe ultima copertă
This thesis presents a series of experimental techniques based on scanning probe microscopy, which make it possible access the degree of freedom of protons both in real and energy space. These novel techniques and methods allow direct visualization of the concerted quantum tunneling of protons within the hydrogen-bonded network and quantification of the quantum component of a single hydrogen bond at a water–solid interface for the first time. Furthermore, the thesis demonstrates that the anharmonic quantum fluctuations of hydrogen nuclei further weaken the weak hydrogen bonds and strengthen the strong ones. However, this trend was reversed when the hydrogen bond coupled to the local environment. These pioneering findings substantially advance our understanding of the quantum nature of H bonds at the molecular level.
Caracteristici
Nominated as an outstanding Ph.D. thesis by Peking University Introduces vibrational spectroscopy of water at single-molecule level Presents atomic-scale characterization of nuclear quantum effects