Pāriet uz galveno navigāciju Pāriet uz meklēšanu Pāriet uz galveno saturu

Ultrafast Two-Color X-Ray Emission Spectroscopy Reveals Excited State Landscape in a Base Metal Dyad

  • Michal Nowakowski
  • , Marina Huber-Gedert
  • , Hossam Elgabarty
  • , Aleksandr Kalinko
  • , Jacek Kubicki
  • , Ahmet Kertmen
  • , Natalia Lindner
  • , Dmitry Khakhulin
  • , Frederico A. Lima
  • , Tae Kyu Choi
  • , Mykola Biednov
  • , Lennart Schmitz
  • , Natalia Piergies
  • , Peter Zalden
  • , Katharina Kubicek
  • , Angel Rodriguez-Fernandez
  • , Mohammad Alaraby Salem
  • , Sophie E. Canton
  • , Christian Bressler
  • , Thomas D. Kühne
  • Wojciech Gawelda*, Matthias Bauer*
*Šī darba korespondējošais autors

Pētījuma izpildes rezultāts: Devums žurnālamZinātniskais raksts (žurnālā)koleģiāli recenzēts

1 Atsauce (Scopus)

Kopsavilkums

Effective photoinduced charge transfer makes molecular bimetallic assemblies attractive for applications as active light-induced proton reduction systems. Developing competitive base metal dyads is mandatory for a more sustainable future. However, the electron transfer mechanisms from the photosensitizer to the proton reduction catalyst in base metal dyads remain so far unexplored. A Fe─Co dyad that exhibits photocatalytic H2 production activity is studied using femtosecond X-ray emission spectroscopy, complemented by ultrafast optical spectroscopy and theoretical time-dependent DFT calculations, to understand the electronic and structural dynamics after photoexcitation and during the subsequent charge transfer process from the FeII photosensitizer to the cobaloxime catalyst. This novel approach enables the simultaneous measurement of the transient X-ray emission at the iron and cobalt K-edges in a two-color experiment. With this methodology, the excited state dynamics are correlated to the electron transfer processes, and evidence of the Fe→Co electron transfer as an initial step of proton reduction activity is unraveled.

OriģinālvalodaAngļu
Raksta numurs2404348
ŽurnālsAdvanced Science
Sējums11
Izdevuma numurs38
DOIs
Publikācijas statussPublicēts - 16 okt. 2024
Ārēji publicēts

ANO IAM

Šis izpildes rezultāts palīdz sasniegt šādus ANO ilgtspējīgas attīstības mērķus (IAM)

  1. 7. IAM — Tīra Enerģija par Pieejamu Cenu
    7. IAM — Tīra Enerģija par Pieejamu Cenu

Nospiedums

Uzziniet vairāk par pētniecības tēmām “Ultrafast Two-Color X-Ray Emission Spectroscopy Reveals Excited State Landscape in a Base Metal Dyad”. Kopā tie veido unikālu nospiedumu.

Citēt šo