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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Metallophthalocyanines: Versatile electron-donating building blocks for fullerene dyads
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Metallophthalocyanines: Versatile electron-donating building blocks for fullerene dyads

机译:金属酞菁:富勒烯二元体的多功能给电子体

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A thorough investigation on the physicochemical properties, including electrochemisty and photophysics, of a new class of donor-acceptor hybrids, namely, phthalocyanine-fullerene dyads, consisting of free base 1a and zinc and copper complexes 1b and 1c, respectively, brings new insights into the stabilization of charge-separated radical ion pairs and the impact of redoxactive transition-metal centers on the photoperformance of macrocyclic phthalocyanines. In these dyads, the role of the phthalocyanines is twofold: First, it functions as an antenna (i.e., absorbing very efficiently light in the visible region of the solar spectrum) and, second, as a donor molecule-once photoexcited. The initial photoexcitation is succeeded by an ultrafast electron transfer largely due to the strong electronic coupling between electron donor (Pc) and electron acceptor (C-60) generating surprisingly long-lived radical ion pairs Pc.+-C-60(.-) with lifetimes of several nanoseconds. Large driving forces for the charge recombination and small reorganization energies of the Pc-C-60 ensembles corroborate slow charge recombination dynamics, which, in turn, helps to rationalize the long lifetimes of PC.+-C-60(.-).
机译:对新型供体-受体杂化物,即分别由游离碱1a和锌及铜络合物1b和1c组成的酞菁-富勒烯二元化合物的物理化学性质(包括电化学和光物理性质)的深入研究,为我们提供了新的见解电荷分离的自由基离子对的稳定性以及氧化还原活性过渡金属中心对大环酞菁的光性能的影响。在这些二元化合物中,酞菁的作用是双重的:首先,它起着天线的作用(即,非常有效地吸收太阳光谱可见光区域中的光),其次,一次供体分子被光激发。最初的光激发是通过超快电子转移来实现的,这主要归因于电子供体(Pc)和电子受体(C-60)之间的强电子耦合,产生了出奇长寿命的自由基离子对Pc。+-C-60(.-)使用寿命为几纳秒。用于Pc-C-60的电荷重组的大驱动力和小的重组能量证实了缓慢的电荷重组动力学,从而有助于合理化PC.-C-60(.-)的长寿命。

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