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Novel highly emissive tetracyanotetraphenylporphyrazine ytterbium complex for optoelectronic and biophotonic applications

机译:用于光电子和生物光子应用的新型高发射四氰基四苯基卟啉phy络合物

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The preparation is described of a novel highly emissive ytterbium complex with a proposed unusual structure obtained by reaction of tricyanovinylbenzene (TCNVB) with bis(indenyl)ytterbium(II) in THF. The reaction occurs under extremely mild conditions, the tetraphenyltetracyanoporphyrazine macrocycle being assembled in high yield from TCNVB building-blocks by Yb~(3+)-template synthesis. The analytical, spectral and electrochemical investigations of the obtained ytterbium complex indicate its existence in the form of a binuclear adduct with Yb(TCNVB)_3 species in which a one doubly reduced TCNVB molecule bridges two Yb~(3+) cations. The formation of a disordered polynuclear coordination polymer network including a macrocyclic structure and metal cations bridged through the nitrile nitrogen atoms is proposed. The complex is readily soluble and is compatible with a variety of polymeric matrices giving doped polymeric glasses and films which are highly luminescent in the biologically relevant optical window covering the visible and near infrared range (640-1000 nm). In addition, doped polymeric glasses and films highly emissive at the telecommunication wavelength (1540 nm) including the novel ytterbium complex and originally not luminescent erbium chelate in an equimolar ratio have been obtained. The compound is found to be an extraordinarily strong sensitizer of near-IR Er~(3+) emission. Use of the Yb complex as a fluorescent marker for biomedical in vitro investigations has been demonstrated.
机译:描述了一种新型高发射配合物的制备方法,该配合物具有拟议的不寻常结构,该结构通过三氰基乙烯基苯(TCNVB)与双(茚基)y(II)在THF中的反应获得。该反应在极端温和的条件下发生,四苯基四氰基卟啉大环化合物通过Yb〜(3 +)-模板合成从TCNVB结构单元以高收率组装。所获得的complex配合物的分析,光谱和电化学研究表明其以具有Yb(TCNVB)_3物种的双核加合物的形式存在,其中一个双还原的TCNVB分子桥接了两个Yb〜(3+)阳离子。提出了一种无序的多核配位聚合物网络的形成,该网络包括大环结构和通过腈氮原子桥接的金属阳离子。该络合物易于溶解并且与多种聚合物基质相容,从而得到掺杂的聚合物玻璃和薄膜,该聚合物玻璃和薄膜在覆盖可见光和近红外范围(640-1000 nm)的生物学相关光学窗口中具有高发光性。另外,已经获得了在电信波长(1540nm)处高度发射的掺杂的聚合物玻璃和膜,包括等摩尔比的新型novel络合物和最初不发光的che螯合物。发现该化合物是近红外Er〜(3+)发射的超强增感剂。已证明将Yb复合物用作荧光标记物用于生物医学体外研究。

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