Аннотация
Porous TiO thin films with a double-layered structure were successfully prepared using a conventional spin-coating deposition method. A range of characterization techniques, such as scanning electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and photoluminescence were
employed to assess the morphology, structural and optical properties of prepared TiO films. Photoelectrochemical (PEC) measurement tests revealed that prepared double-layered TiO thin films exhibitporosity-dependent photocatalytic activity. For example, TiO films with optimized porous structure
demonstrated an increase in photocurrent density by a factor of ~ 2.23 (to 141.7 μA/cm2 ) and photoconversion efficiency improvement by a factor of ~ 2.14 as compared to non-porous double-layered TiO reference films. Possible mechanisms responsible for these experimental observations are proposed, discussed, and validated experimentally.
employed to assess the morphology, structural and optical properties of prepared TiO films. Photoelectrochemical (PEC) measurement tests revealed that prepared double-layered TiO thin films exhibitporosity-dependent photocatalytic activity. For example, TiO films with optimized porous structure
demonstrated an increase in photocurrent density by a factor of ~ 2.23 (to 141.7 μA/cm2 ) and photoconversion efficiency improvement by a factor of ~ 2.14 as compared to non-porous double-layered TiO reference films. Possible mechanisms responsible for these experimental observations are proposed, discussed, and validated experimentally.
| Язык оригинала | English |
|---|---|
| Страницы | 3977881 |
| Состояние | Published - дек. 5 2023 |
| Событие | 2023 MRS Fall Meeting & Exhibit - Boston Продолжительность: нояб. 26 2023 → дек. 7 2023 https://www.mrs.org/meetings-events/fall-meetings-exhibits/2023-mrs-fall-meeting |
Conference
| Conference | 2023 MRS Fall Meeting & Exhibit |
|---|---|
| Страна/Tерритория | United States |
| Город | Boston |
| Период | 11/26/23 → 12/7/23 |
| Адрес в сети Интернет |
ЦУР ООН
Работа этого автора способствует достижению следующих Целей устойчивого развития
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Affordable and clean energy
ASJC Scopus subject areas
- General Materials Science
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