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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Construction and photophysics study of supramolecular complexes composed of three-point binding fullerene-trispyridylporphyrin dyads and zinc porphyrin
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Construction and photophysics study of supramolecular complexes composed of three-point binding fullerene-trispyridylporphyrin dyads and zinc porphyrin

机译:三点结合富勒烯-三吡啶基卟啉二联体和卟啉锌的超分子复合物的构建和光物理研究

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摘要

A series of novel supramolecular complexes composed of a three-point binding C_(60)-trispyridylporphyrin dyad (1) or C_(70)-trispyr-idylporphyrin dyad (2) and zinc tetraphenylporphyrin (ZnP) were constructed by adopting a "covalent-coordinate" bonding approach, composed of three-point binding. The dyads and self-assembled supramolecular triads or pentads formed by coordinating die pyridine groups located on the dyads to ZnP, have been characterized by means of spectral and electrochemical techniques. The formation constants of ZnP-1 and ZnP-2 complexes were calculated as 1.4 x 10~4 M~(-1) and 2.0 x 10~4 M~(-1), respectively, and the Stern-Volmer quenching constants K_(sv) were founded to be 2.9 x 10~4 M~(-1) and 5.5 x 10~4 M~(-1) respectively, which are much higher than those of other supramolecular complexes such as previously reported ZnP-3 (N-ethyl-2-(4-pyridyl)-3,4-fulleropyrrolidine). The electrochemical investigations of these complexes suggest weak interactions between the constituents in the ground state. The excited states of the complexes were further monitored by time-resolved fluorescence measurements. The results revealed mat the presence of the multiple binding point dyads (1 or 2) slightly accelerated the fluorescence decay of ZnP in o-DCB relative to that of the "single-point" bound supramolecular complex ZnP-3. In comparison with 1 and 2, C_(70) is suggested as a better electron acceptor relative to C_(60) DFT calculations on a model of supramolecular complex ZnP-1 (with one ZnP entity) were performed. The results revealed mat the lowest unoccupied molecular orbital (LUMO) is mainly located on the fullerene cage, while the highest occupied molecular orbital (HOMO) is mainly located on the ZnP macrocycle ring, predicting the formation of radical ion pair ZnP~(+·)-H2P-C_(60)~(-·) during photo-induced reaction.
机译:通过采用“共价基团”,构建了一系列由三点结合的C_(60)-三吡啶基卟啉二联体(1)或C_(70)-三吡啶基卟啉二联体(2)和四苯基卟啉锌(ZnP)组成的一系列新型超分子复合物。坐标”绑定方法,由三点绑定组成。已通过光谱和电化学技术表征了通过将位于二元组上的吡啶基团与ZnP配位而形成的二元组和自组装的超分子三元组或五元组。 ZnP-1和ZnP-2配合物的形成常数分别计算为1.4 x 10〜4 M〜(-1)和2.0 x 10〜4 M〜(-1)以及Stern-Volmer猝灭常数K_( sv)分别为2.9 x 10〜4 M〜(-1)和5.5 x 10〜4 M〜(-1),远高于其他超分子配合物,如先前报道的ZnP-3(N -乙基-2-(4-吡啶基)-3,4-全吡咯烷)。这些配合物的电化学研究表明,基态组分之间的相互作用较弱。通过时间分辨荧光测量进一步监测复合物的激发态。结果表明,与“单点”结合的超分子复合物ZnP-3相比,存在多个结合点双标记(1或2)会稍微促进o-DCB中ZnP的荧光衰减。与1和2相比,在超分子复合物ZnP-1(具有一个ZnP实体)模型上,相对于C_(60)DFT计算,建议使用C_(70)作为更好的电子受体。结果表明,最低未占据分子轨道(LUMO)主要位于富勒烯笼中,而最高未占据分子轨道(HOMO)主要位于ZnP大环上,从而预测了自由基离子对ZnP〜(+· )-H2P-C_(60)〜(-·)在光诱导反应期间。

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