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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 >Synthesis, structure, and photophysical properties of luminescent platinum(II) complexes containing cyclometalated 4-styryl-functionalized 2-phenylpyridine ligands
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Synthesis, structure, and photophysical properties of luminescent platinum(II) complexes containing cyclometalated 4-styryl-functionalized 2-phenylpyridine ligands

机译:含环金属化的4-苯乙烯基官能化的2-苯基吡啶配体的发光铂(II)配合物的合成,结构和光物理性质

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摘要

A series of new luminescent cyclometalated platinum(II) complexes functionalized with various substituted styryl groups on the cyclometallating ligand [Pt(C boolean AND N-ppy-4-styryl-R)(O boolean AND O-(O)CCR'CHCR'C(O))] (ppy-4-styryl-R = E-4(4-(R)styryl-2-phenylpyridine) (3, R' = Me (acac); 4, R' = Bu-t (dpm); R = H, OMe, NEt2, NO2) have been prepared. All complexes undergo an E-Z photoisomerization process in CH2Cl2 solution under sunlight, as monitored by H-1 NMR. The solid-state structures of 3-OMe, 3-NEt2, 3-NO2, and 4-OMe have been determined by X-ray diffraction studies and compare well with optimized geometries obtained by density functional theory (DFT) calculations. The orbital pictures of 3-H, 3-OMe, and 3-NO2 are very similar, the highest occupied molecular orbital (HOMO) being highly Pt(5d) metal-based. For 3-NMe2, an additional contribution from the amino-styryl fragment leads to a decreased metal parentage of the HOMO, suggesting a predominantly ILCT character transition. Complexes 3-H, 3-OMe, and 3-NO2 show a low-energy band (350-400 nm) assigned to predominantly charge-transfer transitions. The amino derivative 3-NEt2 displays a very strong absorption band at 432 nm, tentatively assigned to a mixture of ILCT (Et2N -> CH=CH*) and metal-to-ligand charge-transfer (MLCT) (d pi(Pt) -> pi*) transitions. Complexes 3 are weakly luminescent in CH2Cl2 solution at room temperature; the low intensity may be due to a competitive quenching through the E-Z photoisomerization process. All complexes exhibit similar structured emission bands under these conditions (lambda(max)(em) around 520 nm), independent of the nature of the styryl-R group. In a frozen EPA glass (77 K), the spectrum of the representative complex 3-H exhibits two sets of vibronically structured bands (460-560, 570-800 nm; lambda(max) = 596 nm), due to the presence of two emitting species, the E and Z isomers, which have significantly different triplet excited-state energies. The other three complexes show similar behavior to 3-H at 77 K, but the lower-energy emission bands are progressively red-shifted in the order H < OMe < NO2 < NEt2 (e.g., for 3-NEt2, lambda(max)(em) = 658 nm; tau = 26 mu s). The very large red-shift compared to related unsubstituted complexes (e.g., to [Pt(C boolean AND N-ppy)(O boolean AND O-acac)]) is the result of the extension of the pi-conjugated system and the electronic effects of substituent R.
机译:在环金属化配体[Pt(C布尔和N-ppy-4-styryl-R)(O布尔和O-(O)CCR'CHCR'上,用各种取代的苯乙烯基官能化的一系列新型发光环金属化铂(II)配合物C(O))](ppy-4-styryl-R = E-4(4-(R)styryl-2-phenylpyridine)(3,R'= Me(acac); 4,R'= Bu-t( dpm); R = H,OMe,NEt2,NO2)。所有配合物在H2 NMR监测下,在CH2Cl2溶液中于阳光下进行EZ光异构化过程。3-OMe,3-的固态结构NEt2、3-NO2和4-OMe已通过X射线衍射研究确定,并与通过密度泛函理论(DFT)计算获得的优化几何形状进行了很好的比较。3-H,3-OMe和3- NO2非常相似,占据最高的分子轨道(HOMO)是高度基于Pt(5d)的金属;对于3-NMe2,氨基苯乙烯基片段的额外贡献导致HOMO的金属亲合力降低,这主要是由于ILCT字符过渡。配合物3-H,3-OMe和3-NO2显示出一个低能带(350-400 nm),主要分配给电荷转移跃迁。氨基衍生物3-NEt2在432 nm处显示出非常强的吸收带,暂时分配给ILCT(Et2N-> CH = CH *)和金属至配体电荷转移(MLCT)(d pi(Pt) -> pi *)转换。在室温下,配合物3在CH2Cl2溶液中微弱发光;低强度可能归因于通过E-Z光异构化过程的竞争性猝灭。在这些条件下,所有配合物均表现出相似的结构发射带(520 nm附近的λ(max)(em)),而与苯乙烯基-R基团的性质无关。在冷冻的EPA玻璃(77 K)中,由于存在以下原因,代表性的复合物3-H的光谱显示出两组由纤维形成的谱带(460-560、570-800 nm;λ(max)= 596 nm)。两种发射物质,E和Z异构体,其三线态激发态能量明显不同。其他三个配合物在77 K时表现出与3-H相似的行为,但低能发射带按H

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