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铂二亚胺双(乙炔化物)配合物:合成、表征及发光性质

Platinum diimine bis(acetylide) complexes: synthesis, characterization, and luminescence properties.

作者信息

Hissler M, Connick W B, Geiger D K, McGarrah J E, Lipa D, Lachicotte R J, Eisenberg R

机构信息

Department of Chemistry, University of Rochester, New York 14627-0216, USA.

出版信息

Inorg Chem. 2000 Feb 7;39(3):447-57. doi: 10.1021/ic991250n.

Abstract

A new set of luminescent platinum(II) diimine complexes has been synthesized and characterized. The anionic ligands in these complexes are arylacetylides. The complexes are brightly emissive in fluid solution with relative emission quantum yields phiem ranging from 3 x 10(-3) to 10(-1). Two series of complexes have been investigated. The first has the formula Pt(Rphen)(C...CC6H5)2 where Rphen is 1,10-phenanthroline substituted in the 5-position with R = H, Me, Cl, Br, NO2, or C...CC6H5, while the second has the formula Pt(dbbpy)(C=CC6H4X)2 where dbbpy = 4,4'-di(tert-butyl)bipyridine and X = H, Me, F, or NO2. From NMR, IR, and electronic spectroscopies, all of the complexes are assigned a square planar coordination geometry with cis-alkynyl ligands. The crystal structure of Pt(phen)(Ce-CC6H4CH3)2 confirms this assignment. All of the complexes exhibit an absorption band at ca. 400 nm that corresponds to a Pt d-->pi*diimine charge-transfer transition. The variation of lambdamax for this band with substituent variation supports this assignment. From similar changes in the energy of the solution luminescence as a function of substituents R and X, the emissive excited state is also of MLCT origin, but with spin-forbidden character on the basis of excited-state lifetime measurements (0.01-5.6 micros). The complexes undergo electron-transfer quenching, showing good Stern-Volmer behavior using 10-methylphenothiazine and N,N,N',N'-tetramethylbenzidine as reductive quenchers. Excited-state reduction potentials are estimated on the basis of a simple thermochemical analysis. Crystal data for Pt(phen)(C...CC6H4CH3)2: monoclinic, space group C2/c, a = 19.0961(1) A, b = 10.4498(1) A, c = 11.8124(2) A, beta = 108.413(1) degrees, V = 2236.49 A3, number of reflections 1614, number of variables 150, R1 = 0.0163, wR2 (I > 2sigma) = 0.0410.

摘要

合成并表征了一组新的发光铂(II)二亚胺配合物。这些配合物中的阴离子配体是芳基乙炔化物。这些配合物在流体溶液中发出明亮的光,相对发射量子产率φem范围从3×10⁻³到10⁻¹。研究了两个系列的配合物。第一个系列的化学式为Pt(Rphen)(C≡CC₆H₅)₂,其中Rphen是在5-位被R = H、Me、Cl、Br、NO₂或C≡CC₆H₅取代的1,10-菲咯啉,而第二个系列的化学式为Pt(dbbpy)(C≡CC₆H₄X)₂,其中dbbpy = 4,4'-二(叔丁基)联吡啶且X = H、Me、F或NO₂。通过核磁共振、红外和电子光谱,所有配合物都被确定为具有顺式炔基配体的平面正方形配位几何结构。Pt(phen)(C≡CC₆H₄CH₃)₂的晶体结构证实了这一归属。所有配合物在约400 nm处都有一个吸收带,该吸收带对应于Pt d→π*二亚胺电荷转移跃迁。该吸收带的λmax随取代基变化的情况支持了这一归属。从溶液发光能量随取代基R和X的类似变化可以看出,发光激发态也是MLCT起源,但根据激发态寿命测量(0.01 - 5.6微秒)具有自旋禁阻特性。这些配合物会发生电子转移猝灭,使用10-甲基吩噻嗪和N,N,N',N'-四甲基联苯胺作为还原猝灭剂时表现出良好的斯特恩-沃尔默行为。基于简单的热化学分析估算了激发态还原电位。Pt(phen)(C≡CC₆H₄CH₃)₂的晶体数据:单斜晶系,空间群C2/c,a = 19.0961(1) Å,b = 10.4498(1) Å,c = 11.8124(2) Å,β = 108.413(1)°,V = 2236.49 ų,反射次数1614,变量数150,R1 = 0.0163,wR2(I > 2σ) = 0.0410。

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