Observation of site-selective chemical bond changes via ultrafast chemical shifts

Author:

Al-Haddad Andre,Oberli Solène,González-Vázquez JesúsORCID,Bucher MaximilianORCID,Doumy GillesORCID,Ho Phay,Krzywinski Jacek,Lane Thomas J.ORCID,Lutman AlbertoORCID,Marinelli AgostinoORCID,Maxwell Timothy J.ORCID,Moeller Stefan,Pratt Stephen T.,Ray Dipanwita,Shepard Ron,Southworth Stephen H.ORCID,Vázquez-Mayagoitia Álvaro,Walter PeterORCID,Young LindaORCID,Picón AntonioORCID,Bostedt ChristophORCID

Abstract

AbstractThe concomitant motion of electrons and nuclei on the femtosecond time scale marks the fate of chemical and biological processes. Here we demonstrate the ability to initiate and track the ultrafast electron rearrangement and chemical bond breaking site-specifically in real time for the carbon monoxide diatomic molecule. We employ a local resonant x-ray pump at the oxygen atom and probe the chemical shifts of the carbon core-electron binding energy. We observe charge redistribution accompanying core-excitation followed by Auger decay, eventually leading to dissociation and hole trapping at one site of the molecule. The presented technique is general in nature with sensitivity to chemical environment changes including transient electronic excited state dynamics. This work provides a route to investigate energy and charge transport processes in more complex systems by tracking selective chemical bond changes on their natural timescale.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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