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环肽同二聚体自组装形成具有高效光诱导分子内电子转移过程的异二聚体组件。

Self-Sorting of cyclic peptide homodimers into a heterodimeric assembly featuring an efficient photoinduced intramolecular electron-transfer process.

作者信息

Aragay Gemma, Ventura Barbara, Guerra Arcadio, Pintre Inmaculada, Chiorboli Claudio, García-Fandiño Rebeca, Flamigni Lucia, Granja Juan R, Ballester Pablo

出版信息

Chemistry. 2014 Mar 17;20(12):3427-38. doi: 10.1002/chem.201304200.

Abstract

We describe the thermodynamic characterisation of the self-sorting process experienced by two homodimers assembled by hydrogen-bonding interactions through their cyclopeptide scaffolds and decorated with Zn-porphyrin and fullerene units into a heterodimeric assembly that contains one electron-donor (Zn–porphyrin) and one electron-acceptor group (fullerene). The fluorescence of the Zn-porphyrin unit is strongly quenched upon heterodimer formation. This phenomenon is demonstrated to be the result of an efficient photoinduced electron-transfer (PET) process occurring between the Zn-porphyrin and the fullerene units of the heterodimeric system. The recombination lifetime of the charge-separated state of the heterodimer complex is in the order of 180 ns. In solution, both homo- and heterodimers are present as a mixture of three regioisomers: two staggered and one eclipsed. At the concentration used for this study, the high stability constant determined for the heterodimer suggests that the eclipsed conformer is the main component in solution. The application of the bound-state scenario allowed us to calculate that the heterodimer exists mainly as the eclipsed regioisomer (75-90 %). The attractive interaction that exists between the donor and acceptor chromophores in the heterodimeric assembly favours their arrangement in close contact. This is confirmed by the presence of charge-transfer bands centred at 720 nm in the absorption spectrum of the heterodimer. PET occurs in approximately 75% of the chromophores after excitation of both Zn-porphyrin and fullerene chromophores. Conversely, analogous systems, reported previously, decorated with extended tetrathiafulvalene and fullerene units showed a PET process in a significantly reduced extent (33%). We conclude that the strength (stability constant (K) x effective molarity (EM)) of the intramolecular interaction established between the two chromophores in the Zn-porphyrin/fullerene cyclopeptide-based heterodimers controls the regioisomeric distribution and regulates the high extent to which the PET process takes place in this system.

摘要

我们描述了由两个同二聚体通过其环肽支架上的氢键相互作用组装而成的自分类过程的热力学特征,这两个同二聚体分别用锌卟啉和富勒烯单元修饰,形成一个包含一个电子供体(锌卟啉)和一个电子受体基团(富勒烯)的异二聚体组装体。异二聚体形成时,锌卟啉单元的荧光被强烈淬灭。这种现象被证明是异二聚体系统中锌卟啉和富勒烯单元之间发生有效光致电子转移(PET)过程的结果。异二聚体复合物电荷分离态的复合寿命约为180纳秒。在溶液中,同二聚体和异二聚体均以三种区域异构体的混合物形式存在:两种交错构象和一种重叠构象。在本研究使用的浓度下,为异二聚体测定的高稳定性常数表明重叠构象是溶液中的主要成分。结合态情况的应用使我们能够计算出异二聚体主要以重叠区域异构体(75 - 90%)的形式存在。异二聚体组装体中供体和受体发色团之间存在的吸引相互作用有利于它们紧密接触的排列。异二聚体吸收光谱中以720纳米为中心的电荷转移带的存在证实了这一点。在锌卟啉和富勒烯发色团均被激发后,约75%的发色团发生PET。相反,先前报道的用扩展四硫富瓦烯和富勒烯单元修饰的类似系统显示PET过程的程度显著降低(33%)。我们得出结论,基于锌卟啉/富勒烯环肽的异二聚体中两个发色团之间建立的分子内相互作用的强度(稳定性常数(K)×有效摩尔浓度(EM))控制区域异构体分布,并调节该系统中PET过程发生的高程度。

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