首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Nonlinear Optical Pulse Suppression via Ultrafast Photoinduced Electron Transfer in an Aggregated Perylene Diimide/ Oligothiophene Molecular Triad
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Nonlinear Optical Pulse Suppression via Ultrafast Photoinduced Electron Transfer in an Aggregated Perylene Diimide/ Oligothiophene Molecular Triad

机译:通过聚集的Per二酰亚胺/低聚噻吩分子三重态中超快光诱导电子转移的非线性光脉冲抑制

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摘要

A donor?acceptor?donor triad material in which two quinquethiophene moieties are attached via nonconjugated, flexible bridges to the 1,7-positions (80% isomer) and 1,6-positions (20% isomer) of a perylene diimide (PDI-5T) has been synthesized, and its nonlinear suppression of nanosecond laser pulses in the 680?750 nm range has been studied. The kinetics of the photoinduced charge separation processes have been characterized using femtosecond transient pump?probe spectroscopy. Excitation of either the quinquethiophene donor or perylene diimide acceptor leads to ultrafast (<700 fs) photoinduced charge separation, yielding quinquethiophene and perylene diimide radical ions that are strongly absorbing in the red?near-IR region. Despite the short lifetime (52 ps) of the charge-separated state, reasonably strong nonlinear suppression of nanosecond pulses, with figures-of-merit up to 14, has been realized with 4 mM solutions of PDI-5T. Although the radical ion absorption (RIA) is much stronger at 750 nm than that at 680 or 700 nm, the best optical suppression figures-of-merit were observed at 680 and 700 nm. Comparison of the optical parameters at these wavelengths suggests that the stronger ground-state absorption, due to aggregates of PDI-5T, is responsible for the enhanced figure-of-merit at the shorter wavelength.
机译:供体-受体-供体三联体材料,其中两个喹啉噻吩部分通过非共轭的柔性桥连接到per二酰亚胺(PDI-)的1,7位(80%异构体)和1,6-位(20%异构体)上合成了5T),并研究了其在680?750 nm范围内对纳秒激光脉冲的非线性抑制。飞秒瞬态泵浦-探针光谱法已经表征了光诱导电荷分离过程的动力学。喹喹噻吩供体或per二酰亚胺受体的激发会导致超快(<700 fs)的光诱导电荷分离,产生喹噻吩和region二酰亚胺自由基离子,它们在红色近红外区具有很强的吸收能力。尽管电荷分离状态的寿命很短(52 ps),但用4 mM PDI-5T解决方案仍能实现对纳秒脉冲的相当强的非线性抑制,其品质因数高达14。尽管自由基离子吸收(RIA)在750 nm处比在680或700 nm处要强得多,但是在680和700 nm处观察到了最佳的光学抑制品质因数。在这些波长下比较光学参数表明,由于PDI-5T的聚集,较强的基态吸收会导致较短波长下的品质因数提高。

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