首页> 外文期刊>Journal of the American Chemical Society >ELECTRIC FIELD EFFECTS OF PHOTOGENERATED ION PAIRS ON NEARBY MOLECULES - A MODEL FOR THE CAROTENOID BAND SHIFT IN PHOTOSYNTHESIS
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ELECTRIC FIELD EFFECTS OF PHOTOGENERATED ION PAIRS ON NEARBY MOLECULES - A MODEL FOR THE CAROTENOID BAND SHIFT IN PHOTOSYNTHESIS

机译:光生离子对对附近分子的电场作用-光合作用中类胡萝卜素带移位的模型

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Photoinduced charge separation within a zinc porphyrin electron donor-pyromellitimide electron acceptor pair possessing an 8.4 Angstrom center-to-center distance and a linear orientation is shown to induce large electrochromic effects on the ground state absorption spectrum of a nearby carotenoid molecule. The orientation of the C-C backbone of the carotenoid is restricted relative to the direction of the electric field produced by the photogenerated ion pair. This is accomplished by covalently linking the electron donor-acceptor pair to the carotenoid with a calix[4]arene bridge. The bridge maintains its cone conformation resulting in an average dihedral angle of 35 degrees between the donor-acceptor axis and the C-C backbone of the carotenoid. Using picosecond transient absorption spectroscopy, a 15 nm electrochromic red shift in the ground state absorption spectrum of the carotenoid was readily observed during the 3.7 ns lifetime of the photogenerated ion pair. The magnitude of this shift depends on the dielectric constant of the surrounding solvent. The data is used to calculate an electric field strength of about 5.5 MV/cm at the carotenoid in toluene. The magnitude of the electric field produced by the ion pair at the carotenoid is larger than the highest fields that can be applied externally, This approach can be used to study the influence of electric fields produced by ion pairs on the photophysics and photochemistry of nearby molecules. [References: 32]
机译:锌卟啉电子供体-均苯四甲酰亚胺电子受体对中的光诱导电荷分离具有8.4埃的中心到中心距离和线性方向,显示出对附近类胡萝卜素分子的基态吸收光谱产生大的电致变色效应。类胡萝卜素的C-C主链的方向相对于光生离子对产生的电场方向受到限制。这是通过使用杯[4]芳烃桥将电子供体-受体对与类胡萝卜素共价连接而实现的。桥保持其圆锥构象,导致供体-受体轴与类胡萝卜素的C-C主链之间的平均二面角为35度。使用皮秒瞬态吸收光谱法,在光生离子对的3.7 ns寿命中,很容易观察到类胡萝卜素基态吸收光谱中的15 nm电致变色红移。该位移的大小取决于周围溶剂的介电常数。该数据用于计算在甲苯中的类胡萝卜素处的约5.5MV / cm的电场强度。类胡萝卜素离子对产生的电场强度大于外部可施加的最大电场,该方法可用于研究离子对产生的电场对附近分子的光物理和光化学的影响。 [参考:32]

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