Artikel

Uncovering Energetic Positions of Surface Trap States in α‐Fe2O3 Treated with Cobalt Phosphate (Co−Pi) Using Charge Carrier‐Selective Heterodyne Transient Grating Technique

05.03.2024

The energetic positions of the surface states in α-Fe2O3 treated with Co−Pi, in which the photo-generated holes were trapped, were determined by the charge carrier-selective heterodyne transient grating (CS-HD-TG) technique.


Abstract

Near-field heterodyne transient grating (NF-HD-TG) responses of hematite (α-Fe2O3) treated with cobalt phosphate (Co−Pi) were measured with the burn lasers inducing the depletion of the response by the removal of the trapped charge carriers in the target state, which is called charge carrier-selective heterodyne transient grating (CS-HD-TG) spectroscopic technique. We found that two distinct trap states co-existed in Co−Pi loaded on the surface of α-Fe2O3. One of them named r-SS2, of which potential was similar to that of r-SS1 in the surface of α-Fe2O3, acted as a recombination centre but could increase the lifetime of the trapped holes by the charge separation. We also revealed that the energetic position of the other (i-SS2), which has been regarded as the intermediate state for oxygen evolution reaction with low overpotential, was higher than that of i-SS1 in α-Fe2O3 but lower than those of r-SS1 and r-SS2.

Verwandte Artikel
Uncovering Energetic Positions of Surface Trap States in α‐Fe2O3 Treated with Cobalt Phosphate (Co−Pi) Using Charge Carrier‐Selective Heterodyne Transient Grating Technique
In Kürze
Uncovering Energetic Positions of Surface Trap States in α‐Fe2O3 Treated with Cobalt Phosphate (Co−Pi) Using Charge Carrier‐Selective Heterodyne Transient Grating Technique
Ehrungen, Karriere
Uncovering Energetic Positions of Surface Trap States in α‐Fe2O3 Treated with Cobalt Phosphate (Co−Pi) Using Charge Carrier‐Selective Heterodyne Transient Grating Technique
Aus den Fachgruppen
Uncovering Energetic Positions of Surface Trap States in α‐Fe2O3 Treated with Cobalt Phosphate (Co−Pi) Using Charge Carrier‐Selective Heterodyne Transient Grating Technique
EuChemS Policy Workshop „PFAS”
Uncovering Energetic Positions of Surface Trap States in α‐Fe2O3 Treated with Cobalt Phosphate (Co−Pi) Using Charge Carrier‐Selective Heterodyne Transient Grating Technique
Bafög beantragen

Das könnte Sie auch interessieren

GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

In Kürze

GÖCH

Termin vormerken: Generalversammlung am 21. September Die diesjährige Generalversammlung ist im Rahmen der Chemietage am...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Ehrungen, Karriere

Service

Ehrungen Finnian Freeling, Dr.: Promotionspreis Wasserchemie der Wasserchemischen Gesellschaft, Fachgruppe der GDCh, für...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Aus den Fachgruppen

GDCh

Bauchemie Neuer Vorstand Die GDCh-Fachgruppe Bauchemie hat ihren Vorstand für die Amtszeit 1. Januar 2026 bis 31. Dezemb...

30.04.2026