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基于多重线性自由能关系预测多氟代1,3,5 - 三芳基吡唑啉中的光致电子转移热力学

Predicting the photoinduced electron transfer thermodynamics in polyfluorinated 1,3,5-triarylpyrazolines based on multiple linear free energy relationships.

作者信息

Verma Manjusha, Chaudhry Aneese F, Fahrni Christoph J

机构信息

School of Chemistry and Biochemistry, Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, 901 Atlantic Drive, Atlanta, Georgia 30332, USA.

出版信息

Org Biomol Chem. 2009 Apr 21;7(8):1536-46. doi: 10.1039/b821042j. Epub 2009 Feb 20.

Abstract

The photophysical properties of 1,3,5-triarylpyrazolines are strongly influenced by the nature and position of substituents attached to the aryl-rings, rendering this fluorophore platform well suited for the design of fluorescent probes utilizing a photoinduced electron transfer (PET) switching mechanism. To explore the tunability of two key parameters that govern the PET thermodynamics, the excited state energy DeltaE(00) and the acceptor potential E(A/A(-)), a library of polyfluoro-substituted 1,3-diaryl-5-phenyl-pyrazolines was synthesized and characterized. The observed trends for the PET parameters were effectively captured through multiple Hammett linear free energy relationships (LFER) using a set of independent substituent constants for each of the two aryl rings. Given the lack of experimental Hammett constants for polyfluoro-substituted aromatics, theoretically derived constants based on the electrostatic potential at the nucleus (EPN) of carbon atoms were employed as quantum chemical descriptors. The performance of the LFER was evaluated with a set of compounds that were not included in the training set, yielding a mean unsigned error of 0.05 eV for the prediction of the combined PET parameters. The outlined LFER approach should be well suited for designing and optimizing the performance of cation-responsive 1,3,5-triarylpyrazolines.

摘要

1,3,5-三芳基吡唑啉的光物理性质受到连接在芳基环上取代基的性质和位置的强烈影响,使得这种荧光团平台非常适合用于设计利用光诱导电子转移(PET)切换机制的荧光探针。为了探索控制PET热力学的两个关键参数——激发态能量ΔE(00)和受体电位E(A/A(-))的可调性,合成并表征了一系列多氟取代的1,3-二芳基-5-苯基-吡唑啉。通过使用针对两个芳基环各自的一组独立取代基常数的多个哈米特线性自由能关系(LFER),有效地捕捉了PET参数的观察趋势。鉴于缺乏多氟取代芳烃的实验哈米特常数,基于碳原子原子核处静电势(EPN)的理论推导常数被用作量子化学描述符。用一组未包含在训练集中的化合物评估了LFER的性能,对于组合PET参数的预测,平均无符号误差为0.05 eV。所概述的LFER方法应该非常适合设计和优化阳离子响应性1,3,5-三芳基吡唑啉的性能。

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