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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >New Cu(I) halide complexes showing TADF combined with room temperature phosphorescence: the balance tuned by halogens
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New Cu(I) halide complexes showing TADF combined with room temperature phosphorescence: the balance tuned by halogens

机译:新的Cu(i)卤化物配合物,显示TADF与室温磷光相结合:卤素调谐的余量

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A series of Cu(I) halide complexes derived from tris(2-pyridyl)phosphine (Py3P), [Cu-2(Py3P)(2)X-2] (X = Cl, Br, I), have been synthesized by a straightforward reaction in solution or through a mechanochemical route. At room temperature, the solid complexes exhibit bright dual-mode photoluminescence (lambda(max) = 520-550 nm, tau = 14.5-20.0 mu s, and Phi(PL) approximate to 53%), expressed by thermally activated delayed fluorescence (TADF) combined with phosphorescence (PH), originating from (1)(M + X)LCT and (3)(M + X)LCT excited states, respectively. Remarkably, the balance of these radiative processes at 300 K is regulated by halogen atom nature, switching from TADF-assisted phosphorescence to PH-admixed TADF. The emission of [Cu-2(Py3P)(2)Cl-2] at 300 K is largely contributed by PH (73%) admixed with the TADF fraction (27%) and [Cu-2(Py3P)(2)Br-2] also emits mainly PH (65%) admixed with the larger TADF fraction (35%). Meanwhile, for [Cu-2(Py3P)(2)I-2], the TADF channel becomes dominating (61%) and PH contribution drops to 39%. The photophysical study corroborated by (TD)DFT computations has revealed that this effect arises mainly from the narrowing of the Delta E(S-1 - T-1) gap of the [Cu-2(Py3P)(2)X-2] complexes in the order Cl (1500 cm(-1)) > Br (1250 cm(-1)) > I (1000 cm(-1)) which facilitates the TADF pathway and suppresses PH in the same order.
机译:一系列来自Tris(2-吡啶基)膦(Py3P)的Cu(I)卤化物复合物(Py3P),[Cu-2(Py3P)(2)X-2](X = Cl,Br,I),通过在溶液中或通过机械化学途径的直接反应。在室温下,固体络合物表现出明亮的双模光致发光(Lambda(Max)= 520-550nm,Tau =14.5-20.0μm,并且Phi(PL)近似为53%),由热活化的延迟荧光表示( TADF)与磷光(pH)相结合,源自(1)(m + x)LCT和(3)(M + X)LCT激发态。值得注意的是,通过卤素原子性质对这些辐射过程的平衡受到卤素原子性质,从TADF辅助磷光切换到pH激活的TA​​DF。 300k的[Cu-2(Py3P)(2)Cl-2]的发射大部分通过与TADF级分(27%)和[Cu-2(PY3P)(2)BR混合的pH(73%)贡献-2]也以较大的TADF级分(35%)混合主要pH(65%)。同时,对于[Cu-2(Py3P)(2)I-2],TADF通道成为主导(61%)和pH贡献降至39%。由(TD)DFT计算证实的光物理研究表明,这种效果主要来自[Cu-2(py3p)(2)x-2]的Δe(s-1-t-1)间隙的缩小。顺序Cl(1500cm(-1))> Br(1250cm(-1))> i(1000cm(-1)),促进TADF途径并以相同的顺序抑制pH值。

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