Back to Search Start Over

Light-Induced Agglomeration of Single-Atom Platinum in Photocatalysis

Authors :
Denisov, Nikita
Qin, Shanshan
Will, Johannes
Vasiljevic, Bojana Nedić
Skorodumova, Natalia
Pašti, Igor
Sarma, Bidyut Bikash
Osuagwu, Benedict
Yokosawa, Tadahiro
Voss, Johannes
Wirth, Janis
Spiecker, Erdmann
Schmuki, Patrik
Denisov, Nikita
Qin, Shanshan
Will, Johannes
Vasiljevic, Bojana Nedić
Skorodumova, Natalia
Pašti, Igor
Sarma, Bidyut Bikash
Osuagwu, Benedict
Yokosawa, Tadahiro
Voss, Johannes
Wirth, Janis
Spiecker, Erdmann
Schmuki, Patrik
Publication Year :
2023

Abstract

With recent advances in the field of single-atoms (SAs) used in photocatalysis, an unprecedented performance of atomically dispersed co-catalysts has been achieved. However, the stability and agglomeration of SA co-catalysts on the semiconductor surface may represent a critical issue in potential applications. Here, the photoinduced destabilization of Pt SAs on the benchmark photocatalyst, TiO2, is described. In aqueous solutions within illumination timescales ranging from few minutes to several hours, light-induced agglomeration of Pt SAs to ensembles (dimers, multimers) and finally nanoparticles takes place. The kinetics critically depends on the presence of sacrificial hole scavengers and the used light intensity. Density-functional theory calculations attribute the light induced destabilization of the SA Pt species to binding of surface-coordinated Pt with solution-hydrogen (adsorbed H atoms), which consequently weakens the Pt SA bonding to the TiO2 surface. Despite the gradual aggregation of Pt SAs into surface clusters and their overall reduction to metallic state, which involves >90% of Pt SAs, the overall photocatalytic H2 evolution remains virtually unaffected.<br />QC 20230613

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1400069882
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1002.adma.202206569