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寡膦-硫氰酸铜(I)和银(I)配合物及其硼烷衍生物的延迟荧光。

Oligophosphine-thiocyanate Copper(I) and Silver(I) Complexes and Their Borane Derivatives Showing Delayed Fluorescence.

机构信息

Department of Chemistry , University of Eastern Finland , 80101 Joensuu , Finland.

Peter the Great St. Petersburg Polytechnic University , Polytechnicheskaya, 29 , 195251 St. Petersburg , Russia.

出版信息

Inorg Chem. 2019 Mar 18;58(6):3646-3660. doi: 10.1021/acs.inorgchem.8b03166. Epub 2019 Feb 22.

Abstract

The series of chelating phosphine ligands, which contain bidentate P (bis[(2-diphenylphosphino)phenyl] ether, DPEphos; 4,5-bis(diphenylphosphino)-9,9-dimethylxanthene, Xantphos; 1,2-bis(diphenylphosphino)benzene, dppb), tridentate P (bis(2-diphenylphosphinophenyl)phenylphosphine), and tetradentate P (tris(2-diphenylphosphino)phenylphosphine) ligands, was used for the preparation of the corresponding dinuclear [M(μ-SCN)P] (M = Cu, 1, 3, 5; M = Ag, 2, 4, 6) and mononuclear [CuNCS(P/P)] (7, 9) and [AgSCN(P/P)] (8, 10) complexes. The reactions of P with silver salts in a 1:2 molar ratio produce tetranuclear clusters [Ag(μ-SCN)(t-SCN)(P)] (11) and [Ag(μ-SCN)(P)] (12). Complexes 7-11 bearing terminally coordinated SCN ligands were efficiently converted into derivatives 13-17 with the weakly coordinating SCN:B(CF) isothiocyanatoborate ligand. Compounds 1 and 5-17 exhibit thermally activated delayed fluorescence (TADF) behavior in the solid state. The excited states of thiocyanate species are dominated by the ligand to ligand SCN → π(phosphine) charge transfer transitions mixed with a variable contribution of MLCT. The boronation of SCN groups changes the nature of both the S and T states to (L + M)LCT d,p(M, P) → π(phosphine). The localization of the excited states on the aromatic systems of the phosphine ligands determines a wide range of luminescence energies achieved for the title complexes (λ varies from 448 nm for 1 to 630 nm for 10c). The emission of compounds 10 and 15, based on the P ligand, strongly depends on the solid-state packing (λ = 505 and 625 nm for two crystalline forms of 15), which affects structural reorganizations accompanying the formation of electronically excited states.

摘要

该系列螯合膦配体包含双齿 P(双[(2-二苯基膦基)苯基]醚,DPEphos;4,5-双(二苯基膦基)-9,9-二甲基氧杂蒽,Xantphos;1,2-双(二苯基膦基)苯,dppb)、三齿 P(双(2-二苯基膦基苯基)膦)和四齿 P(三(2-二苯基膦基)苯基膦)配体,用于制备相应的双核M(μ-SCN)P和单核[CuNCS(P/P)] (7,9)和[AgSCN(P/P)] (8,10)配合物。在 1:2 的摩尔比下,P 与银盐反应生成四核簇[Ag(μ-SCN)(t-SCN)(P)] (11)和[Ag(μ-SCN)(P)] (12)。末端配位 SCN 配体的配合物 7-11 被有效地转化为具有弱配位 SCN:B(CF)异硫氰酸根硼酸盐配体的衍生物 13-17。化合物 1 和 5-17 在固态下表现出热活化延迟荧光(TADF)行为。硫氰酸根物种的激发态主要由配体到配体 SCN→π(膦)电荷转移跃迁混合 MLCT 的可变贡献主导。SCN 基团的硼化改变了 S 和 T 态的性质,从(L + M)LCT d,p(M,P)→π(膦)。激发态在膦配体的芳环系统上的定位决定了标题配合物所达到的发光能量范围很广(λ 从 1 的 448nm 到 10c 的 630nm)。基于 P 配体的化合物 10 和 15 的发射强烈依赖于固态堆积(15 的两种结晶形式的λ=505nm 和 625nm),这影响了电子激发态形成时的结构重排。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/defe/6727211/573d4f4ba038/ic-2018-031668_0011.jpg

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