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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Syntheses, structures, and fluxionality of blue luminescent zinc(II) complexes: Zn(2,2 ',2 ''-tpa)Cl-2, Zn(2,2 ',2 ''-tpa)(2)(O2CCF3)(2), and Zn(2,2 ',3 ''-tpa)(4)(O2CCF3)(2) (tpa = tripyridylamine)
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Syntheses, structures, and fluxionality of blue luminescent zinc(II) complexes: Zn(2,2 ',2 ''-tpa)Cl-2, Zn(2,2 ',2 ''-tpa)(2)(O2CCF3)(2), and Zn(2,2 ',3 ''-tpa)(4)(O2CCF3)(2) (tpa = tripyridylamine)

机译:蓝色发光锌(II)配合物的合成,结构和通量:Zn(2,2',2''-tpa)Cl-2,Zn(2,2',2''-tpa)(2)(O2CCF3 )(2)和Zn(2,2',3''-tpa)(4)(O2CCF3)(2)(tpa =三吡啶胺)

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Three novel Zn(II) complexes containing either 2,2',2"-tripyridylamine (2,2',2"-tpa) or 2,2',3"-tripyridylamine (2,2',3"-tpa) have been synthesized and structurally characterized. Compound 1, Zn(2,2',2"-tpa)Cl-2, has a tetrahedral geometry while compounds 2, Zn(2,2',2"- tpa)(2)(O2CCF3)(2), and 3, Zn(2,2',3 "-tpa)(4)(O2CCF3)(2), have an octahedral geometry. The 2,2',2"-tpa ligand in I and 2 functions as a bidentate ligand, chelating to the zinc center, while the 2,2",3"-tpa ligand in 3 functions as a terminal ligand, binding to the zinc center through the 3-pyridyl nitrogen atom. All three compounds emit a blue color in solution and in the solid state. The emission maxima for the three compounds in solution are at lambda = 422, 426, and 432 nm, respectively. The blue luminescence of the complexes is due to a pi* --> pi transition of the tpa ligand as established by an ab initio calculation on the free Ligand 2,2',2"-tpa and complex 1. Compounds 1 and 2 are fluxional in solution owing to an exchange process between the coordinate and noncoordinate 2-pyridyl rings of the 2,2',2"-tpa ligand. Compound 2 is also fluxional owing to a cis-trans isomerization process, as determined by variable-temperature H-1 NMR spectroscopic analysis. [References: 37]
机译:包含2,2',2“-三吡啶胺(2,2',2” -tpa)或2,2',3“-三吡啶胺(2,2',3” -tpa)的三种新型Zn(II)络合物已经合成并在结构上表征。化合物1,Zn(2,2',2“ -tpa)Cl-2具有四面体几何形状,而化合物2,Zn(2,2',2” -tpa)(2)(O2CCF3)(2)和3,Zn(2,2',3“ -tpa)(4)(O2CCF3)(2),具有八面体几何形状。I和2中的2,2',2” -tpa配体起双齿配体的作用,螯合到锌中心,而3中的2,2“,3” -tpa配体用作末端配体,通过3-吡啶基氮原子与锌中心结合。这三种化合物在溶液中和固态时均发出蓝色。溶液中这三种化合物的发射最大值分别为λ= 422、426和432 nm。配合物的蓝色发光归因于tpa配体的pi *-> pi过渡,这是通过对游离配体2,2',2“ -tpa和配合物1的从头算来确定的。由于2,2',2“ -tpa配体的配位环和不配位的2-吡啶基环之间的交换过程而在溶液中流动。如通过可变温度H-1 NMR光谱分析所确定的,由于顺-反异构化过程,化合物2也是通量的。 [参考:37]

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