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自组装光捕获系统:围绕Rh-Rh核心组装的Ru(II)配合物。

Self-assembled light-harvesting systems: Ru(II) complexes assembled about Rh-Rh cores.

作者信息

Cooke Michael W, Hanan Garry S, Loiseau Frédérique, Campagna Sebastiano, Watanabe Masashi, Tanaka Yasutaka

机构信息

Department of Chemistry, Université de Montréal, Montréal, Québec, H3T-1J4, Canada.

出版信息

J Am Chem Soc. 2007 Aug 29;129(34):10479-88. doi: 10.1021/ja072153t. Epub 2007 Aug 2.

Abstract

Ru(II) polypyridine species have been assembled about dirhodium(II, II) tetracarboxylate cores. The complexes prepared have general formulas [{(terpy)Ru(La)}n{Rh2(CH3COO)4-n(CH3CN)2}]2n+ (a-type compounds: terpy = 2,2':6',2' '-terpyridine; La = 4'-(p-carboxyphenyl)-2,2':6',2' '-terpyridine; n = 1, 1a; n = 2, cis-2a and trans-2a-cis and trans refer to the arrangement of the Ru(II) species around the dirhodium core; n = 3, 3a), [{(Lb)Ru(La)}n{Rh2(CH3COO)4-n(CH3CN)2}]2n+ (b-type compounds: Lb = 6-phenyl-2,4-di(2-pyridyl)-s-triazine; n = 1, 1b; n = 2, an inseparable mixture of cis-2b and trans-2b; n = 3, 3b; n = 4, 4b), and [{(terpy)Ru(Lc)}{Rh2(CH3COO)3(CH3CN)2}]2+ (1c; Lc = 6-(p-carboxyphenyl)-2,4-di(2-pyridyl)-s-triazine). As model species, also the mononuclear [(terpy)Ru(La)]2+ (5a), [(La)Ru(Lb)]2+ (5b), and [(terpy)Ru(Lc)]2+ (5c) have been prepared. All of the complexes have been characterized by several techniques, including NMR and mass spectra, and the stability of the various species is discussed. The absorption spectra of all of the compounds are dominated by the Ru(II) polypyridine moieties, showing intense ligand-centered (LC) bands in the UV region and intense metal-to-ligand charge-transfer (MLCT) bands in the visible. The compounds exhibit several metal-centered oxidation and ligand-centered reduction processes, which have been assigned to specific subunits. Both absorption and redox data indicate a supramolecular nature of the assembled systems. Efficient energy transfer from the MLCT triplet state of the Ru-based components to the lowest-energy excited state of the dirhodium core takes place for the a-type compounds at 298 K in acetonitrile solution, whereas such a process is inefficient for the b-type and c-type species, which exhibit the typical MLCT emission. At 77 K in butyronitrile matrix, Ru-to-Rh2 energy transfer is partly efficient for both the a-type and the b-type compounds and is inefficient for 1c. The reasons for such behavior are discussed by taking into account arguments concerning the driving force and reorganization energy of the complexes.

摘要

钌(II)多吡啶物种已围绕二铑(II,II)四羧酸盐核心组装。所制备的配合物具有通式[{(三联吡啶)Ru(La)}n{Rh2(CH3COO)4 - n(CH3CN)2}]2n +(a型化合物:三联吡啶 = 2,2':6',2'' - 三联吡啶;La = 4' -(对羧基苯基)- 2,2':6',2'' - 三联吡啶;n = 1,1a;n = 2,顺式 - 2a和反式 - 2a - 顺式和反式指钌(II)物种围绕二铑核心的排列;n = 3,3a),[{(Lb)Ru(La)}n{Rh2(CH3COO)4 - n(CH3CN)2}]2n +(b型化合物:Lb = 6 - 苯基 - 2,4 - 二(2 - 吡啶基)- s - 三嗪;n = 1,1b;n = 2,顺式 - 2b和反式 - 2b的不可分离混合物;n = 3,3b;n = 4,4b),以及[{(三联吡啶)Ru(Lc)}{Rh2(CH3COO)3(CH3CN)2}]2 +(1c;Lc = 6 -(对羧基苯基)- 2,4 - 二(2 - 吡啶基)- s - 三嗪)。作为模型物种,还制备了单核[(三联吡啶)Ru(La)]2 +(5a)、[(La)Ru(Lb)]2 +(5b)和[(三联吡啶)Ru(Lc)]2 +(5c)。所有配合物均通过多种技术进行了表征,包括核磁共振和质谱,并讨论了各种物种的稳定性。所有化合物的吸收光谱均以钌(II)多吡啶部分为主,在紫外区域显示出强烈的配体中心(LC)带,在可见光区域显示出强烈的金属到配体电荷转移(MLCT)带。这些化合物表现出几种金属中心氧化和配体中心还原过程,这些过程已被归因于特定的亚基。吸收和氧化还原数据均表明组装体系具有超分子性质。对于a型化合物,在298 K的乙腈溶液中,从基于钌的组分的MLCT三重态到二铑核心的最低能量激发态发生了有效的能量转移,而对于b型和c型物种,该过程效率低下,它们表现出典型的MLCT发射。在77 K的丁腈基质中,对于a型和b型化合物,Ru到Rh2的能量转移部分有效,而对于1c则效率低下。通过考虑有关配合物的驱动力和重组能的论点来讨论这种行为的原因。

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