Understanding interfacial charge-transfer processes on the atomic level is crucial to support the rational design of energy-challenge relevant systems such as solar cells, batteries, and photocatalysts. A femtosecond time-resolved core-level photoelectron spectroscopy study is performed that probes the electronic structure of the interface between ruthenium-based N3 dye molecules and ZnO nanocrystals within the first picosecond after photoexcitation and from the unique perspective of the Ru reporter atom at the center of the dye. A transient chemical shift of the Ru 3d inner-shell photolines by (2.3 ± 0.2) eV to higher binding energies is observed 500 fs after photoexcitation of the dye. The experimental results are interpreted with the aid...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
This study uses transient X-ray absorption (XA) spectroscopy and time-dependent density functional t...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
*S Supporting Information ABSTRACT: Understanding interfacial charge-transfer processes on the atomi...
Charge transfer processes across hybrid interfaces, such as formed by the connection of molecules to...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
This study uses transient X-ray absorption (XA) spectroscopy and time-dependent density functional t...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the ra...
*S Supporting Information ABSTRACT: Understanding interfacial charge-transfer processes on the atomi...
Charge transfer processes across hybrid interfaces, such as formed by the connection of molecules to...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium based N3 dye molecules into ZnO thin films r...
Interfacial charge transfer from photoexcited ruthenium-based N3 dye molecules into ZnO thin films r...
This study uses transient X-ray absorption (XA) spectroscopy and time-dependent density functional t...