首页> 外文期刊>Bulletin of the Korean Chemical Society >Intramolecular Hydrogen Bonding Effect on the excited-State Intramolecular Charge Transfer of p-Aminosalicylic Acid
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Intramolecular Hydrogen Bonding Effect on the excited-State Intramolecular Charge Transfer of p-Aminosalicylic Acid

机译:分子内氢键对对氨基水杨酸的激发态分子内电荷转移的影响

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摘要

The excited-state intramolecular proton transfer (ESIPT) emission has been observed for 0.01 mM p-aminosalicylic acid (AS) in nonpolar aprotic solvents as demonstrated by the large Stokes` shifted fluorescence emission around 440 nm in addition to the normal emission at 330 nm. However in aprotic polar solvent such as acetonitrile, the large Stokes` shifted emission band becomes broadened, indicating existence of another emission band originated from intramolecular charge transfer (ICT). It is noteworthy that in protic solvents such as methanol and ethanol the normal and ICT emissions are quenched as the AS concentration decreases, followed by the appearance of new emission at 380 nm. These results are interpreted in terms of ESIPT coupled charge transfer in AS. Being consistent with these steady-state spectroscopic results, the picosecond time-resolved fluorescence study unravelled the decay dynamics of the ESIPT and ICT state ca. 300 ps and ca. 150 ps, respectively with ca. 40 ps for the relaxation time to form the ICT state.
机译:已在非极性非质子溶剂中观察到0.01 mM对氨基水杨酸(AS)的激发态分子内质子转移(ESIPT)发射,除了在330 nm处的正常发射外,大的Stokes位移荧光发射在440 nm附近也证明了这一点。然而,在非质子极性溶剂(如乙腈)中,较大的斯托克斯位移发射带变宽,表明存在另一个源自分子内电荷转移(ICT)的发射带。值得注意的是,在质子传递溶剂(例如甲醇和乙醇)中,随着AS浓度的降低,正常和ICT的发射会被抑制,然后在380 nm处出现新的发射。这些结果根据AS中的ESIPT耦合电荷转移来解释。与这些稳态光谱结果一致,皮秒级时间分辨荧光研究揭示了ESIPT和ICT状态ca的衰减动力学。 300 ps和ca. 150 ps,分别约为40 ps的松弛时间形成ICT状态。

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