Departamento de Química Orgánica, Universidad Autónoma de Madrid , Cantoblanco, 28049 Madrid, Spain.
Department of Chemistry and Pharmacy & Interdisciplinary Center for Molecular Materials (ICMM), University of Erlangen-Nuremberg , Egerlandstraße 3, 91058 Erlangen, Germany.
J Am Chem Soc. 2016 Oct 5;138(39):12963-12974. doi: 10.1021/jacs.6b07432. Epub 2016 Sep 20.
The electronic features of Zn(II) and Ru(II) phthalocyanines (Pcs) have been modulated by direct peripheral attachment of up to eight ferrocenes. The presence of peripheral ferrocenes noticeably impacts the electronic properties of the corresponding ZnPc and RuPc complexes 7, 12 and 9, 15, respectively-a notion that is supported by optical spectroscopy with bathochromic shifts of up to 8-10 nm per ferrocene unit. Cyclic voltammetry and optical spectroscopy reveal long-distance (10-11 bonds) electronic interaction between ferrocene units. The ZnPc and RuPc complexes have been integrated into a series of orthogonal, supramolecular bis(phthalocyanine)-perylenediimide electron donor-acceptor conjugates, 2a,b and 3a,b. In these cart-wheel-shaped arrays, coordination of ditopic perylenediimide 16, containing two pyridyl substituents at its imido positions, enabled selective interactions with the metal centers of phthalocyanines 7, 12, 9, and 15. The presence of ferrocenes in, for example, Zn complexes 2a and 3a triggers a fast energy transfer from the excited-state PDI to ZnPc. In the RuPc-PDI conjugates, substitution with ferrocenes produces a slight acceleration of the charge separation upon photoexcitation of the PDI chromophore. However, charge recombination is accelerated by 2 orders of magnitude in ferrocene-containing conjugates when compared to that in the analogous tert-butyl-substituted array 1b.
通过直接在锌(II)和钌(II)酞菁(Pc)的外围连接多达八个二茂铁单元,调节了它们的电子特性。外围二茂铁单元的存在显著影响了相应的 ZnPc 和 RuPc 配合物 7、12 和 9、15 的电子特性-这一概念得到了光学光谱的支持,其具有高达 8-10nm/个二茂铁单元的红移。循环伏安法和光学光谱揭示了二茂铁单元之间的长程(10-11 个键)电子相互作用。将 ZnPc 和 RuPc 配合物整合到一系列正交的、超分子双(酞菁)-苝二酰亚胺给体-受体轭合物 2a、b 和 3a、b 中。在这些轮辐状排列中,二位点苝二酰亚胺 16 的配位,其亚胺位置含有两个吡啶取代基,使其能够与酞菁 7、12、9 和 15 的金属中心选择性相互作用。例如,在 Zn 配合物 2a 和 3a 中存在二茂铁单元会触发从 PDI 的激发态到 ZnPc 的快速能量转移。在 RuPc-PDI 轭合物中,用二茂铁取代会略微加速 PDI 生色团光激发时的电荷分离。然而,与类似的叔丁基取代的阵列 1b 相比,在含二茂铁的轭合物中,电荷复合被加速了 2 个数量级。