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基于三苯胺的六方金属大环化合物的设计、合成及光电化学性质:[M6(4,4'-双(2,2':6',2''-三联吡啶基)三苯胺)6(X)12];[M = 亚铁(II),六氟磷酸根和锌(II),四氟硼酸根]

Design, synthesis and photoelectrochemical properties of hexagonal metallomacrocycles based on triphenylamine: [M6(4,4'-bis(2,2':6',2''-terpyridinyl)triphenylamine)6(X)12]; [M = Fe(II), PF6- and Zn(II), BF4-].

作者信息

Hwang Seok-Ho, Moorefield Charles N, Wang Pingshan, Fronczek Frank R, Courtney Brandy H, Newkome George R

机构信息

Departments of Polymer Science and Chemistry, University of Akron, Akron, OH 44325-3909, USA.

出版信息

Dalton Trans. 2006 Aug 7(29):3518-22. doi: 10.1039/b603691k. Epub 2006 May 30.

DOI:10.1039/b603691k
PMID:16855752
Abstract

Synthesis of a novel bis(terpyridine) ligand, 4,4'-bis(2,2':6',2''-terpyridinyl)triphenylamine, utilizing triphenylamine, as a specific angle controller, has led to the self-assembly of a unique hexagonal metallomacrocycle family, [Fe6(2)6(PF6)12] and [Zn6(2)6(BF4)12], utilizing terpyridine-metal(II)-terpyridine connectivity. The crystal structure of the novel ligand shows that the angle between the two terpyridinyl moieties is 119.69 degrees , which enabled the formation of the hexagonal-shaped macrocycles. The crystal packing architectures of this starting ligand revealed channels induced by solvent encapsulation. Following complexation of this ligand with transition metals [Fe(II) or Zn(II)] in a one-pot reaction, the resultant structures were characterized by (1)H and (13)C NMR, UV/Vis and mass spectroscopies. The expected metal-to-ligand charge transfer (MLCT; lambda(max) = 582 nm) and emission (lambda(em) = 575 nm) characteristics were exhibited by both [Fe6(2)6(PF6)12] and[Zn6(2)6(BF4)12]. The photoelectrochemical characteristics of these hexagonal metallomacrocycles demonstrate that they can be used as sensitizers in dye-sensitized solar cells.

摘要

利用三苯胺作为特定角度控制器合成了一种新型双(三联吡啶)配体4,4'-双(2,2':6',2''-三联吡啶基)三苯胺,通过三联吡啶-金属(II)-三联吡啶连接,导致了独特的六方金属大环家族[Fe6(2)6(PF6)12]和[Zn6(2)6(BF4)12]的自组装。新型配体的晶体结构表明,两个三联吡啶基部分之间的夹角为119.69度,这使得能够形成六边形大环。这种起始配体的晶体堆积结构揭示了由溶剂包封诱导的通道。在一锅反应中,将该配体与过渡金属[Fe(II)或Zn(II)]络合后,通过(1)H和(13)C NMR、UV/Vis和质谱对所得结构进行了表征。[Fe6(2)6(PF6)12]和[Zn6(2)6(BF4)12]均表现出预期的金属到配体的电荷转移(MLCT;λ(max)=582 nm)和发射(λ(em)=575 nm)特性。这些六方金属大环的光电化学特性表明,它们可以用作染料敏化太阳能电池中的敏化剂。

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