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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Tetrathiafulvalene-fused porphyrins via quinoxaline linkers: Symmetric and asymmetric donor-acceptor systems
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Tetrathiafulvalene-fused porphyrins via quinoxaline linkers: Symmetric and asymmetric donor-acceptor systems

机译:通过喹喔啉连接基融合四硫富瓦烯的卟啉:对称和不对称的供体-受体系统

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A tetrathiafulvalene (TTF) donor is annulated to porphyrins (P) via quinoxaline linkers to form novel symmetric P-TTF-P triads 1 a-c and asymmetric P-TTF dyads 2 a,b in good yields. These planar and extended π-conjugated molecules absorb light over a wide region of the UV/Vis spectrum as a result of additional charge-transfer excitations within the donor-acceptor assemblies. Quantum-chemical calculations elucidate the nature of the electronically excited states. The compounds are electrochemically amphoteric and primarily exhibit low oxidation potentials. Cyclic voltammetric and spectroelectrochemical studies allow differentiation between the TTF and porphyrin sites with respect to the multiple redox processes occurring within these molecular assemblies. Transient absorption measurements give insight into the excited-state events and deliver corresponding kinetic data. Femtosecond transient absorption spectra in benzonitrile may suggest the occurrence of fast charge separation from TTF to porphyrin in dyads 2 a,b but not in triads 1 a-c. Clear evidence for a photoinduced and relatively long lived charge-separated state (385 ps lifetime) is obtained for a supramolecular coordination compound built from the ZnP-TTF dyad and a pyridine-functionalized C 60 acceptor unit. This specific excited state results in a (ZnP-TTF)~(?+)?(C 60py)~(?-) state. The binding constant of Zn~(II)?py is evaluated by constructing a Benesi-Hildebrand plot based on fluorescence data. This plot yields a binding constant K of 7.20×10~4 M~(-1), which is remarkably high for bonding of pyridine to ZnP.
机译:将四硫富瓦烯(TTF)供体通过喹喔啉接头与卟啉(P)环化,以高收率形成新型对称的P-TTF-P三联体1a-c和不对称的P-TTF二联体2a,b。这些平面的和扩展的π共轭分子由于在施主-受体组件中进行了额外的电荷转移激发,因此在UV / Vis光谱的宽范围内吸收了光。量子化学计算阐明了电子激发态的性质。该化合物是电化学两性的,主要表现出低氧化电位。循环伏安法和光谱电化学研究允许在这些分子组装体中发生的多个氧化还原过程方面区分TTF和卟啉位点。瞬态吸收测量可洞悉激发态事件并提供相应的动力学数据。飞秒在苯甲腈中的瞬态吸收光谱可能表明在二元组2a,b中发生了从TTF到卟啉的快速电荷分离,而在三元组1a-c中则没有。对于由ZnP-TTF二聚体和吡啶官能化的C 60受体单元构建的超分子配位化合物,获得了光诱导的且寿命较长的电荷分离状态(寿命为385 ps)的明确证据。该特定的激发态导致(ZnP-TTF)〜(α+)2(C 60py)〜(α-)状态。通过基于荧光数据构建Benesi-Hildebrand图来评估Zn〜(II)?py的结合常数。该图产生的结合常数K为7.20×10〜4 M〜(-1),对于吡啶与ZnP的结合而言非常高。

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