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电场和磁场对聚合物膜中光诱导电子转移体系局域激发态荧光的协同效应。

Synergy effects of electric and magnetic fields on locally excited-state fluorescence of photoinduced electron transfer systems in a polymer film.

机构信息

Research Institute for Electronic Science, Hokkaido University, Sapporo 001-0020, Japan.

出版信息

J Phys Chem A. 2009 Oct 8;113(40):10603-9. doi: 10.1021/jp905579p.

Abstract

Photoluminescence of electron donor-acceptor pairs that show photoinduced electron transfer (PIET) has been measured in a polymer film under simultaneous application of electric field and magnetic field. Fluorescence emitted from the locally excited state (LE fluorescence) of 9-methylanthracene (MAnt) and pyrene (Py) is quenched by an electric field in a mixture of 1,3-dicyanobenzene (DCB) with MAnt or Py, indicating that PIET from the excited state of MAnt or Py to DCB is enhanced by an electric field. Simultaneous application of electric and magnetic fields enhances the reverse process from the radical-ion pair produced by PIET to the LE fluorescent state of MAnt or Py. As a result, the electric-field-induced quenching of the LE fluorescence is reduced by application of the magnetic fields. Thus, the synergy effect of electric and magnetic fields is observed on the LE fluorescence of MAnt or Py. Exciplex fluorescence spectra resulting from PIET can be obtained by analyzing the field effects on photoluminescence spectra, even when the exciplex fluorescence is too weak to be determined from the steady-state or time-resolved photoluminescence spectra at zero field.

摘要

在聚合物薄膜中,同时施加电场和磁场,测量了显示光致电子转移(PIET)的电子给体-受体对的光致发光。在 1,3-二氰基苯(DCB)与 9-甲基蒽(MAnt)或芘(Py)的混合物中,MAnt 或 Py 的局部激发态(LE 荧光)发射的荧光被电场猝灭,表明 MAnt 或 Py 的激发态到 DCB 的 PIET 被电场增强。同时施加电场和磁场增强了从 PIET 产生的自由基离子对到 MAnt 或 Py 的 LE 荧光态的逆过程。结果,磁场的施加减少了电场诱导的 LE 荧光猝灭。因此,在 MAnt 或 Py 的 LE 荧光中观察到电场和磁场的协同效应。通过分析对光致发光光谱的场效应,可以获得由 PIET 产生的激基复合物荧光光谱,即使在零场时,激基复合物荧光太弱,无法从稳态或时间分辨光致发光光谱中确定。

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