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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 >Probing the electronic structure of platinum(II) chromophores: Crystal structures, NMR structures, and photophysical properties of six new bis- and di-phenolate/thiolate Pt(II) diimine chromophores
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Probing the electronic structure of platinum(II) chromophores: Crystal structures, NMR structures, and photophysical properties of six new bis- and di-phenolate/thiolate Pt(II) diimine chromophores

机译:探测铂(II)发色团的电子结构:六种新的双酚和二酚盐/硫醇盐Pt(II)二亚胺发色团的晶体结构,NMR结构和光物理性质

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摘要

A general route for synthesis of six structurally similar Pt(II) diimine thiolate/phenolates chromophores possessing bulky phenolate or thiolate ligands is reported. The Pt chromophores were characterized using an array of techniques including H-1, C-13, and Pt-195 NMR, absorption, emission, (spectro) electrochemistry, and EPR spectroscopy. Systematic variation of the electronic structure of the Pt(II) chromophores studied was achieved by (i) changing solvent polarity; (ii) substituting oxygen for sulfur in the donor ligand; (iii) alternating donor ligands from bis- to di-coordination; and (iv) changing the electron donating/withdrawing properties of the ligand(s). The lowest excited state in these new chromophores was assigned to a [charge-transfer-to-diimine] transition from the HOMO of mixed Pt/S (or Pt/O) character on the basis of absorption and emission spectroscopy, UV/ vis (spectro) electrochemistry, and EPR spectroscopy. One of the chromophores, Pt(dpphen)(3,5-di-tert-butyl-catecholate) represents an example of a Pt( II) diimine phenolate chromophore that possesses a reversible oxidation centered predominantly on the donor ligand. Results from EPR spectroscopy indicate participation of the Pt(II) orbitals in the HOMO. There is a dramatic difference in the photophysical properties of carborane complexes compared to other mixed-ligand Pt(II) compounds, which includes room-temperature emission and photostability. The charge-transfer character of the lowest excited state in this series of chromophores is maintained throughout. Moreover, the absorption and emission energies and the redox properties of the excited state can be significantly tuned.
机译:报道了合成具有大体积酚盐或硫醇盐配体的六个结构相似的Pt(II)二亚胺硫醇盐/酚盐生色团的一般路线。使用包括H-1,C-13和Pt-195 NMR,吸收,发射,(光谱)电化学和EPR光谱在内的一系列技术对Pt发色团进行表征。 Pt(II)发色团电子结构的系统变化是通过(i)改变溶剂极性来实现的; (ii)用氧取代供体配体中的硫; (iii)从双配位到双配位交替的供体配体; (iv)改变配体的给电子/吸电子性质。这些新发色团的最低激发态基于吸收和发射光谱,UV / vis(从Pt / S(或Pt / O)混合特征的HOMO跃迁到[电荷转移至二亚胺]跃迁。光谱,电化学和EPR光谱。发色团之一Pt(dpphen)(3,5-二叔丁基-邻苯二酚)代表Pt(II)二亚胺酚盐发色团的一个例子,该发色团具有可逆氧化,主要集中在供体配体上。 EPR光谱的结果表明Pt(II)轨道参与了HOMO。与其他混合配体Pt(II)化合物相比,碳硼烷配合物的光物理性质存在显着差异,其中包括室温发射和光稳定性。始终保持该系列生色团中最低激发态的电荷转移特性。此外,可以显着调整激发态的吸收和发射能以及氧化还原特性。

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