Ultrafast internal conversion and photochromism in gas-phase salicylideneaniline

Fuente: arXiv
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Main Authors: Silfies, Myles C., Mehmood, Arshad, Kowzan, Grzegorz, Hohenstein, Edward G., Levine, Benjamin G., Allison, Thomas K.
Format: Preprint
Published: 2023
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_version_ 1866910303800786944
author Silfies, Myles C.
Mehmood, Arshad
Kowzan, Grzegorz
Hohenstein, Edward G.
Levine, Benjamin G.
Allison, Thomas K.
author_facet Silfies, Myles C.
Mehmood, Arshad
Kowzan, Grzegorz
Hohenstein, Edward G.
Levine, Benjamin G.
Allison, Thomas K.
contents Salicylidenaniline (SA) is an archetypal system for excited-state intramolecular proton transfer (ESIPT) in non-planar systems. Multiple channels for relaxation involving both the keto and enol forms have been proposed after excitation to S$_1$ with near-UV light. Here we present transient absorption measurements of hot gas-phase SA, jet-cooled SA, and SA in Ar clusters using cavity-enhanced transient absorption spectroscopy (CE-TAS). Assignment of the spectra is aided by simulated TAS spectra, computed by applying time-dependent complete active space configuration interaction (TD-CASCI) to structures drawn from nonadiabatic molecular dynamics simulations. We find prompt ESIPT in all conditions followed by the rapid parallel generation of the trans-keto metastable photochrome state and fluorescent keto state in parallel. Increasing the internal energy increases the photochrome yield and decreases the fluorescent yield and fluorescent state lifetime observed in TAS. In Ar clusters, internal conversion of SA is severely hindered but the photochrome yield is unchanged. Taken together, these results are consistent with the photochrome being produced via the vibrationally excited keto population after ESIPT.
format Preprint
id arxiv_https___arxiv_org_abs_2306_05645
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Ultrafast internal conversion and photochromism in gas-phase salicylideneaniline
Silfies, Myles C.
Mehmood, Arshad
Kowzan, Grzegorz
Hohenstein, Edward G.
Levine, Benjamin G.
Allison, Thomas K.
Chemical Physics
Salicylidenaniline (SA) is an archetypal system for excited-state intramolecular proton transfer (ESIPT) in non-planar systems. Multiple channels for relaxation involving both the keto and enol forms have been proposed after excitation to S$_1$ with near-UV light. Here we present transient absorption measurements of hot gas-phase SA, jet-cooled SA, and SA in Ar clusters using cavity-enhanced transient absorption spectroscopy (CE-TAS). Assignment of the spectra is aided by simulated TAS spectra, computed by applying time-dependent complete active space configuration interaction (TD-CASCI) to structures drawn from nonadiabatic molecular dynamics simulations. We find prompt ESIPT in all conditions followed by the rapid parallel generation of the trans-keto metastable photochrome state and fluorescent keto state in parallel. Increasing the internal energy increases the photochrome yield and decreases the fluorescent yield and fluorescent state lifetime observed in TAS. In Ar clusters, internal conversion of SA is severely hindered but the photochrome yield is unchanged. Taken together, these results are consistent with the photochrome being produced via the vibrationally excited keto population after ESIPT.
title Ultrafast internal conversion and photochromism in gas-phase salicylideneaniline
topic Chemical Physics
url https://arxiv.org/abs/2306.05645