Arena Giuseppe, Calogero Giuseppe, Campagna Sebastiano, Monsù Scolaro Luigi, Ricevuto Vittorio, Romeo Raffaello
Dipartimento di Chimica Inorganica, Chimica Analitica e Chimica Fisica, Università di Messina, Messina, Italy, and Istituto di Chimica e Tecnologia dei Prodotti Naturali, (ICTPN-CNR), Sezione di Messina, Messina, Italy.
Inorg Chem. 1998 Jun 1;37(11):2763-2769. doi: 10.1021/ic9704896.
A series of new organometallic platinum(II) complexes containing terdentate polypyridine ligands has been prepared and characterized. Their absorption spectra in 4:1 (v/v) MeOH/EtOH fluid solution at room temperature and luminescence in the same matrix at 77 K have been investigated. The new species are [Pt(terpy)Ph]Cl (3, terpy = 2,2':6',2"-terpyridine, Ph = phenyl), [Pt(Ph-terpy)Cl]Cl (4, Ph-terpy = 4'-phenyl-2,2':6',2"-terpyridine), [Pt(Ph-terpy)Me]Cl (5), and [Pt(Ph-terpy)Ph]Cl (6). The results have been compared with those for [Pt(terpy)Cl]Cl (1) and [Pt(terpy)Me]Cl (2). NMR data evidence that all the complexes but 3 and 6 oligomerize in solution leading to stacked species. The absorption spectra are dominated by moderately intense metal-to-ligand charge-transfer (MLCT) bands in the visible region and by intense ligand-centered (LC) bands in the UV region. All the compounds are luminescent in a 4:1 (v/v) MeOH/EtOH rigid matrix at 77 K, exhibiting a structured emission within the range 460-600 nm. This feature is assigned to formally (3)LC excited states which receive substantial contribution from closely lying (3)MLCT levels. Complexes 1, 2, 4, and 5 also exhibit a relatively narrow and unstructured luminescence band within the range 680-800 nm, which dominates the luminescence spectrum on increasing concentration and exciting at longer wavelengths. The band is assigned to a dsigma(metal) --> pi(polypyridine) ((3)MMLCT) state, originating from metal-metal interactions occurring in head-to-tail dimers (or polymers). A third broad band is shown by 1 and 4 under all concentration conditions and by 2 and 5 only in concentrated solutions and is attributed to excimeric species originating from pi-pi interactions due to stacking between polypyridine ligands.
已制备并表征了一系列含有三齿多吡啶配体的新型有机金属铂(II)配合物。研究了它们在室温下4:1(v/v)甲醇/乙醇流体溶液中的吸收光谱以及在77K下相同基质中的发光情况。新的化合物有[Pt(terpy)Ph]Cl(3,terpy = 2,2':6',2"-三联吡啶,Ph = 苯基)、[Pt(Ph-terpy)Cl]Cl(4,Ph-terpy = 4'-苯基-2,2':6',2"-三联吡啶)、[Pt(Ph-terpy)Me]Cl(5)和[Pt(Ph-terpy)Ph]Cl(6)。已将结果与[Pt(terpy)Cl]Cl(1)和[Pt(terpy)Me]Cl(2)的结果进行了比较。核磁共振数据表明,除3和6外,所有配合物在溶液中都会发生低聚反应,形成堆积物种。吸收光谱在可见光区域以中等强度的金属到配体电荷转移(MLCT)带为主,在紫外区域以强烈的配体中心(LC)带为主。所有化合物在77K下的4:1(v/v)甲醇/乙醇刚性基质中都有发光现象,在460 - 600nm范围内呈现出结构化发射。此特征归因于形式上的(3)LC激发态,该激发态从紧密相邻的(3)MLCT能级获得了大量贡献。配合物1、2、4和5在680 - 800nm范围内还表现出相对较窄且无结构的发光带,随着浓度增加以及在更长波长激发时,该带在发光光谱中占主导地位。该带归因于源自头对头二聚体(或聚合物)中发生的金属 - 金属相互作用的dsigma(金属)-->pi(多吡啶)((3)MMLCT)态。在所有浓度条件下,1和4以及仅在浓溶液中的2和5都显示出第三条宽带,这归因于由于多吡啶配体之间的堆积导致的π-π相互作用产生的准分子物种。