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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Pt(ii) diimine complexes bearing carbazolyl-capped acetylide ligands: Synthesis, tunable photophysics and nonlinear absorption
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Pt(ii) diimine complexes bearing carbazolyl-capped acetylide ligands: Synthesis, tunable photophysics and nonlinear absorption

机译:带有咔唑基封端的乙炔配体的Pt(ii)二亚胺配合物:合成,可调谐光物理和非线性吸收

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A series of new Pt(ii) diimine complexes with different carbazolyl-capped acetylide ligands (Pt-1-Pt-5) were synthesized and characterized. Their photophysical properties were investigated systematically via spectroscopic and theoretical methods. All complexes exhibit ligand-centered ~1π, π~* transitions in the UV region, and broad, structureless metal-to-ligand charge transfer (~1MLCT)/ligand-to-ligand charge transfer (~1LLCT) absorption bands in the visible spectral region. All complexes are emissive in solution at room temperature, with the emitting state being tentatively assigned to the ~3MLCT/~3LLCT states for Pt-1-Pt-4, and the emitting state of Pt-5 exhibiting a switch from the ~3π,π~* state in high-polarity solvents to the ~3MLCT state in low-polarity solvents. Complexes Pt-1-Pt-5 all exhibit moderate triplet transient absorption (TA) from the visible to the NIR region, where reverse saturable absorption (RSA) could occur. The spectroscopic studies and theoretical calculations indicate that the photophysical properties of these Pt complexes can be tuned drastically by the carbazolyl-capped acetylide ligand, which would be useful for rational design of transition-metal complexes with high emission quantum yield, long excited-state lifetime, broadband excited-state absorption, and strong nonlinear transmittance for organic light-emitting and/or broadband nonlinear transmission applications.
机译:合成并表征了一系列具有不同咔唑基封端的乙炔配体(Pt-1-Pt-5)的新的Pt(ii)二亚胺配合物。通过光谱学和理论方法对它们的光物理性质进行了系统的研究。所有复合物在可见光区域均表现出以配体为中心的〜1π,π〜*跃迁,并且在可见光范围内具有宽阔,无结构的金属至配体电荷转移(〜1MLCT)/配体至配体电荷转移(〜1LLCT)吸收带光谱区域。在室温下,所有络合物在溶液中都是发射态,对于Pt-1-Pt-4,发射态被暂时分配为〜3MLCT /〜3LLCT状态,而Pt-5的发射态呈现出从〜3π的转换,在高极性溶剂中,π〜*状态变为低极性溶剂中的〜3MLCT状态。复合物Pt-1-Pt-5均显示出从可见光到NIR区域的中等三重态瞬态吸收(TA),在该区域可能发生反向饱和吸收(RSA)。光谱研究和理论计算表明,可通过咔唑基封端的乙炔配体极大地调节这些Pt配合物的光物理性质,这对于合理设计过渡金属配合物具有很高的发射量子产率,长激发态寿命是有用的,宽带激发态吸收和强非线性透射率,适用于有机发光和/或宽带非线性传输应用。

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