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Spectroelectrochemical characterization of dendrimer-porphyrin associates at polarized liquid|liquid interfaces

机译:树枝状聚合物 - 卟啉在极化液界面处的光谱电化学表征

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摘要

Molecular encapsulation of anionic porphyrins in NH2-terminated polyamidoamine (PAMAM) dendrimers and the interfacial behavior of the dendrimer-porphyrin associates were studied at the polarized water|1,2-dichloroethane (DCE) interface. Formation of the ion associates was significantly dependent on the pH condition and on generation of dendrimers. 5,10,15,20-Tetrakis(4-sulfonatophenyl)porphyrin (ZnTPPS4-) associated with the positively charged fourth-generation (G4) PAMAM dendrimer was highly stabilized in acidic aqueous solution without protolytic demetalation in a wide range of pH values (pH > 2). In contrast to the zinc(II) complex, the free base porphyrin (H2TPPS4-) was readily protonated under acidic conditions even in the presence of the dendrimers. In addition, the J-aggregates of diprotonated species, (H4TPPS2-) n, were preferably formed on the dendrimer. The interfacial mechanism of the dendrimer-porphyrin associates was analyzed in detail by potential-modulated fluorescence (PMF) spectroscopy. PMF results indicated that the dendrimers incorporating porphyrin molecules were transferred across the positively polarized water|DCE interface via adsorption step, whereas the transfer responses of the porphyrin ions released from the dendrimers were observed at negatively polarized conditions. A negative shift of the transfer potential of porphyrin ions compared to the intrinsic transfer potential was apparently observed for each ion association system. The ion association stability between the dendrimer and the porphyrin molecules could be estimated from a negative shift of the transfer potential. ZnTPPS4- exhibited relatively strong interaction with the higher generation dendrimer, whereas H2TPPS4- was less effectively associated with the dendrimers. © 2014 American Chemical Society.
机译:研究了在极化的1,2-二氯乙烷(DCE)界面上,阴离子卟啉在NH2末端的聚酰胺基胺(PAMAM)树枝状聚合物中的分子包封以及树枝状聚合物-卟啉缔合物的界面行为。离子缔合体的形成很大程度上取决于pH条件和树枝状聚合物的生成。在酸性水溶液中,与带正电的第四代(G4)PAMAM树状大分子缔合的5,10,15,20-四(4-磺酰基苯基)卟啉(ZnTPPS4-)在酸性水溶液中高度稳定,而在广泛的pH值范围内不进行蛋白水解脱金属( pH> 2)。与锌(II)配合物相反,即使在存在树枝状大分子的情况下,在酸性条件下,游离碱卟啉(H2TPPS4-)仍易于质子化。另外,优选在树枝状聚合物上形成双质子化物质(H 4 TPPS 2-)n的J-聚集体。通过电位调制荧光(PMF)光谱详细分析了树状聚合物-卟啉缔合物的界面机理。 PMF结果表明,结合了卟啉分子的树枝状聚合物通过吸附步骤转移到正极化水| DCE界面上,而在负极化条件下观察到了从树枝状聚合物中释放出的卟啉离子的转移响应。显然,对于每个离子缔合系统,卟啉离子的转移电势与固有转移电势相比均出现负移。树枝状大分子和卟啉分子之间的离子缔合稳定性可以通过转移电势的负移来估计。 ZnTPPS4-与较高年龄的树状聚合物表现出较强的相互作用,而H2TPPS4-与树状聚合物的结合效率较低。 ©2014美国化学学会。

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