Energy Relaxation of Porphycene in Atomic and Molecular Cryogenic Matrices

Photochem Pub Date : 2022-04-06 DOI:10.3390/photochem2020021
J. Dobkowski, I. Sazanovich, A. Gorski, J. Waluk
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引用次数: 0

Abstract

The kinetics of relaxation of high-lying electronic states of porphycene (porphyrin isomer) embedded in different cryogenic matrices were studied using picosecond time-resolved fluorescence (TRF) and transient absorption (TA) techniques. The molecule was excited into the Soret band, i.e., with a large energy excess compared to that of the lowest (Q) excited state. The TRF and TA time profiles obtained for porphycene embedded in argon and methane matrices were remarkably different: the overall relaxation in argon occurred in 64 ps, whereas the corresponding value for methane matrix was 18 ps. Analysis of the evolution over time of different spectral ranges of TRF spectra indicates the multidimensional character of relaxation kinetics.
卟啉在原子和分子低温基质中的能量弛豫
采用皮秒时间分辨荧光(TRF)和瞬态吸收(TA)技术研究了嵌入不同低温基质中的卟啉(卟啉异构体)的高电子态弛豫动力学。分子被激发到Soret带,即与最低(Q)激发态相比,有很大的能量过剩。卟啉包埋在氩气和甲烷基质中的TRF和TA时间曲线存在显著差异,氩气的总体弛豫发生在64 ps,而甲烷基质的相应值为18 ps。不同光谱范围的TRF光谱随时间的演化分析表明了弛豫动力学的多维度特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
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0.00%
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