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Probing ultrafast ππ*/nπ* internal conversion in organic chromophores via K-edge resonant absorption
- Source :
- Wolf , T J A , Myhre , R H , Cryan , J P , Coriani , S , Squibb , R J , Battistoni , A , Berrah , N , Bostedt , C , Bucksbaum , P , Coslovich , G , Feifel , R , Gaffney , K J , Grilj , J , Martinez , T J , Miyabe , S , Moeller , S P , Mucke , M , Natan , A , Obaid , R , Osipov , T , Plekan , O , Wang , S , Koch , H & Güehr , M 2017 , ' Probing ultrafast ππ*/nπ* internal conversion in organic chromophores via K-edge resonant absorption ' , Nature Communications , vol. 8 , no. 1 , 29 .
- Publication Year :
- 2017
-
Abstract
- Many photoinduced processes including photosynthesis and human vision happen in organic molecules and involve coupled femtosecond dynamics of nuclei and electrons. Organic molecules with heteroatoms often possess an important excited-state relaxation channel from an optically allowed ππ* to a dark nπ* state. The ππ*/nπ * internal conversion is difficult to investigate, as most spectroscopic methods are not exclusively sensitive to changes in the excited-state electronic structure. Here, we report achieving the required sensitivity by exploiting the element and site specificity of near-edge soft X-ray absorption spectroscopy. As a hole forms in the n orbital during ππ*/nπ* internal conversion, the absorption spectrum at the heteroatom K-edge exhibits an additional resonance. We demonstrate the concept using the nucleobase thymine at the oxygen K-edge, and unambiguously show that ππ*/nπ* internal conversion takes place within (60 +/- 30) fs. High-level-coupled cluster calculations confirm the method's impressive electronic structure sensitivity for excited-state investigations.
Details
- Database :
- OAIster
- Journal :
- Wolf , T J A , Myhre , R H , Cryan , J P , Coriani , S , Squibb , R J , Battistoni , A , Berrah , N , Bostedt , C , Bucksbaum , P , Coslovich , G , Feifel , R , Gaffney , K J , Grilj , J , Martinez , T J , Miyabe , S , Moeller , S P , Mucke , M , Natan , A , Obaid , R , Osipov , T , Plekan , O , Wang , S , Koch , H & Güehr , M 2017 , ' Probing ultrafast ππ*/nπ* internal conversion in organic chromophores via K-edge resonant absorption ' , Nature Communications , vol. 8 , no. 1 , 29 .
- Notes :
- application/pdf, English
- Publication Type :
- Electronic Resource
- Accession number :
- edsoai.on1007881700
- Document Type :
- Electronic Resource