• English
    • Latviešu
    • Deutsch
    • русский
  • Help
  • русский 
    • English
    • Latviešu
    • Deutsch
    • русский
  • Войти
Просмотр элемента 
  •   Главная
  • B5 – LU institūti un aģentūras / Institutes and agencies of the UL
  • Cietvielu fizikas institūts / Institute of Solid State Physics
  • Zinātniskie raksti (CFI) / Scientific articles
  • Просмотр элемента
  •   Главная
  • B5 – LU institūti un aģentūras / Institutes and agencies of the UL
  • Cietvielu fizikas institūts / Institute of Solid State Physics
  • Zinātniskie raksti (CFI) / Scientific articles
  • Просмотр элемента
JavaScript is disabled for your browser. Some features of this site may not work without it.

Chlorine Adsorption on TiO2(110)/Water Interface: Nonadiabatic Molecular Dynamics Simulations for Photocatalytic Water Splitting

Thumbnail
Открыть
Article (4.954Mb)
Автор
Lin, Yin-Pai
Bocharov, Dmitry
Isakoviča, Inta
Pankratov, Vladimir
Popov, Aleksandr A.
Popov, Anatoli I.
Piskunov, Sergei
Дата
2023
Metadata
Показать полную информацию
Аннотации
Chloride is one of the most abundant ions in sea water, which is more available than fresh water. Due to lack of H2O adsorbate states near the valence band maximum (VBM) edge, the difficulty of water dissociation incidents has been reported on the rutile TiO2 surface as the excitation energy is around the band gap energy of TiO2. It is interesting whether the extra chloride can be a benefit to the water dissociation or not. In this study, the models of chlorine adatoms placed on the rutile TiO2 (110)/water interface are constructed using ab initio methods. The time-dependent spatial charges, bond-lengths of water molecules, and Hirshfeld charges are calculated by real-time time-dependent density functional theory and the Ehrenfest dynamics theory for investigating the excited state nonadiabatic dynamics of water dissociation. This study presents two photoinduced water-splitting pathways related to chlorine and analyzes the photogenerated hole along the reactions. The first step of water dissociation relies on the localized competition of oxygen charges between the dissociated water and the bridge site of TiO2 for transforming the water into hydroxyl and hydrogen by photoinduced driving force. --//-- This is an open access article Y.-P. Lin, D. Bocharov, I. Isakoviča, V. Pankratov, A.A. Popov, A.I. Popov, S. Piskunov; Chlorine adsorption on TiO2(110)/water interface: Nonadiabatic molecular dynamics simulations for potocatalytic water splitting; Electron. Mater., 2023, 4, pp. 33-48; DOI: 10.3390/electronicmat4010004; https://www.mdpi.com/2673-3978/4/1/4 published under the CC BY 4.0 licence.
URI
https://www.mdpi.com/2673-3978/4/1/4
https://dspace.lu.lv/dspace/handle/7/64989
DOI
10.3390/electronicmat4010004
Collections
  • Zinātniskie raksti (CFI) / Scientific articles [604]

University of Latvia
Контакты | Отправить отзыв
Theme by 
@mire NV
 

 

Просмотр

Весь DSpaceСообщества и коллекцииДата публикацииАвторыНазванияТематикаЭта коллекцияДата публикацииАвторыНазванияТематика

Моя учетная запись

Войти

Статистика

Просмотр статистики использования

University of Latvia
Контакты | Отправить отзыв
Theme by 
@mire NV