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6-苯基-2,2-联吡啶的发光单核和双核环金属化钯(II)配合物:与铂(II)类似物的光谱和结构比较

Luminescent mononuclear and binuclear cyclometalated palladium(II) complexes of 6-phenyl-2,2 bipyridines: spectroscopic and structural comparisons with platinum(II) analogues.

作者信息

Lai S W, Cheung T C, Chan M C, Cheung K K, Peng S M, Che C M

机构信息

Department of Chemistry, The University of Hong Kong, Hong Kong.

出版信息

Inorg Chem. 2000 Jan 24;39(2):255-62. doi: 10.1021/ic991089g.

Abstract

The mononuclear cyclometalated Pd(II) complexes [Pd(L1)X] (HL1 = 6-phenyl-2,2'-bipyridine; X = Cl, la; Br, 1b; I, 1c), [Pd(L1)PPh3]+ (1d), [Pd(L2-5)Cl] [2a-5a, HL2-5 = 4-(aryl)-6-phenyl-2,2'-bipyridine; aryl = phenyl (2), 4-chlorophenyl (3), 4-tolyl (4), 4-methoxyphenyl (5)] and the binuclear derivatives [Pd2(L1-5)2(mu-dppm)]2+ (1e-5e, dppm = bis(diphenylphosphino)methane) and [Pd2(L1)2(mu-dppCs)]2+, (1f, dppC5 = 1,5-bis(diphenylphosphino)pentane) were prepared. The crystal structures of 1d(ClO4), 1e(ClO4)2 x DMF, and 2e(ClO4)2 have been determined by X-ray crystallography. The magnitude of the Pd-Pd distances in le and 2e (3.230(1) and 3.320(2) A, respectively) suggest minimal metal-metal interaction, although pi-stacking of the aromatic ligands (interplanar separations 3.34 and 3.35 A, respectively) is evident. All complexes display low-energy UV absorptions at lambda approximately 390 nm, which are tentatively assigned to 1MLCT transitions; red shifts resulting from Pd-Pd interactions in the binuclear species are not apparent. The complexes in this work are non-emissive at 298 K, but the cationic derivatives exhibit intense luminescence at 77 K. The structured emissions of 1d and 1f in MeOH/EtOH glass (lambdamax 467-586 nm) and all cationic species in the solid state (lambdamax 493-578 nm) are assigned to intraligand excited states. Complexes le-5e display dual emissions in MeOH/EtOH glass at 77 K, and the broad structureless bands at lambdamax 626-658 nm are attributed to pi-pi excimeric IL transitions. A comparison between the photophysical properties of Pd(II) and Pt(II) congeners is presented.

摘要

制备了单核环金属化钯(II)配合物[Pd(L1)X](HL1 = 6-苯基-2,2'-联吡啶;X = Cl,1a;Br,1b;I,1c)、[Pd(L1)PPh3]+(1d)、[Pd(L2 - 5)Cl] [2a - 5a,HL2 - 5 = 4-(芳基)-6-苯基-2,2'-联吡啶;芳基 = 苯基(2)、4-氯苯基(3)、4-甲苯基(4)、4-甲氧基苯基(5)]以及双核衍生物[Pd2(L1 - 5)2(μ - dppm)]2+(1e - 5e,dppm = 双(二苯基膦基)甲烷)和[Pd2(L1)2(μ - dppC5)]2+(1f,dppC5 = 1,5 - 双(二苯基膦基)戊烷)。通过X射线晶体学测定了1d(ClO4)、1e(ClO4)2·DMF和2e(ClO4)2的晶体结构。1e和2e中Pd - Pd距离的大小(分别为3.230(1)和3.320(2) Å)表明金属 - 金属相互作用最小,尽管芳族配体的π堆积(平面间距离分别为3.34和3.35 Å)很明显。所有配合物在λ约为390 nm处显示低能量紫外吸收,初步归因于单重态金属到配体电荷转移(1MLCT)跃迁;双核物种中由于Pd - Pd相互作用导致的红移不明显。本工作中的配合物在298 K时不发光,但阳离子衍生物在77 K时表现出强烈的发光。1d和1f在甲醇/乙醇玻璃中的结构化发射(λmax 467 - 586 nm)以及固态下所有阳离子物种的发射(λmax 493 - 578 nm)归因于配体内激发态。配合物1e - 5e在77 K的甲醇/乙醇玻璃中显示双重发射,λmax 626 - 658 nm处的宽无结构带归因于π - π准分子内配体跃迁。给出了钯(II)和铂(II)同系物光物理性质的比较。

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