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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 >Photophysical properties of platinum(II)-acetylide complexes: The effect of a strongly electron-accepting diimine ligand on excited-state structure
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Photophysical properties of platinum(II)-acetylide complexes: The effect of a strongly electron-accepting diimine ligand on excited-state structure

机译:铂(II)-乙炔化物络合物的光物理性质:强电子接受二亚胺配体对激发态结构的影响

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The compounds [Pt(MesBIAN)(-C C-R)(2)] (R = C6H4-CN-p, 1; SiMe3, 2; C6H4-CF3-p, 3; C6H5, 4; C6H4-CH3-p 5) {MesBIAN = bis(mesitylimino)acenaphthene} have been synthesized; the X-ray crystal structure determinations of 4 and 5 and the starting material [Pt(MesBIAN)Cl-2] are reported. Chemical oxidation of 4 with diiodine leads to generation of an intermediate platinum(IV) bis(acetylide) diiodide complex, which then couples and reductively eliminates the acetylide ligands as a diyne, leading to the generation of [Pt(MesBIAN)I-2] 6. Compound 2 readily forms an adduct 2a with copper(l) chloride, in which the copper atom is bonded to the two acetylide triple bonds. 1-5 each undergo an irreversible oxidation, and a reversible one-electron reduction to generate a stable anion. ESR studies of 1(-)-5(-) show that the unpaired electron is localized mainly on the pi* orbital of the coordinated MesBIAN ligand, with about 10% platinum contribution to the singly occupied molecular orbital (SOMO). The compounds show a strong absorption at around 500 nm in the UV/visible spectrum, which is assigned to a "mixed metal-ligand to ligand charge transfer" (MMLL'CT) transition; this assignment is supported by time-dependent density-functional theory (TD-DFT) calculations on 5. 1-5 emit in the near-infrared region from a (MMLL)-M-3'CT excited state, with lifetimes ranging from 8 to 36 ns. Picosecond and nanosecond time-resolved infrared (TRIR) spectroscopy has been used to probe directly the nature and dynamics of the excited state of 5. The TRIR data show a decrease of the energy of the C C vibration upon excitation, by about 90 cm(-1) in comparison to the ground state, and formation of a new, very intense, and very broad band at 1820 cm-1. We propose that the excited-state structure contains some contribution from a pseudo-cumulenic form of the platinum-acetylide moiety, which is supported by TD-DFT calculations. Picosecond TRIR allowed determination of the rate of vibrational relaxation (14 ps) of the vibrationally "hot" electronic excited state of 5 formed upon initial laser excitation.
机译:化合物[Pt(MesBIAN)(-C CR)(2)](R = C6H4-CN-p,1; SiMe3,2; C6H4-CF3-p,3; C6H5,4; C6H4-CH3-p 5) {MesBIAN = bis(mesitylimino)acenaphthene}已合成;报告了4和5的X射线晶体结构测定以及起始原料[Pt(MesBIAN)Cl-2]。用二碘对4进行化学氧化导致生成中间的二价铂(IV)双(乙炔)二碘化物络合物,然后偶联并还原性地消除乙炔配体作为二炔,从而导致[Pt(MesBIAN)I-2]的产生6.化合物2容易与氯化铜(l)形成加合物2a,其中铜原子键合至两个乙炔三键。 1-5各自经历不可逆的氧化和可逆的单电子还原以产生稳定的阴离子。 1(-)-5(-)的ESR研究表明,未配对的电子主要位于配位MesBIAN配体的pi *轨道上,其中约10%的铂对单占据的分子轨道(SOMO)起作用。该化合物在紫外/可见光谱中约500 nm处显示强吸收,这归因于“混合的金属-配体到配体的电荷转移”(MMLL'CT)跃迁;这种分配得到了基于时间的密度泛函理论(TD-DFT)在5上的计算的支持。1-5从(MMLL)-M-3'CT激发态在近红外区域发射,寿命为8至36 ns。皮秒和纳秒时间分辨红外(TRIR)光谱已用于直接探测5激发态的性质和动力学。TRIR数据显示,激发后CC振动的能量降低了约90 cm(- 1)与基态相比,在1820 cm-1处形成一个新的,非常强烈且非常宽的频带。我们建议,激发态结构包含铂-乙炔部分的伪累积形式的一些贡献,这由TD-DFT计算得到支持。皮秒TRIR可以确定在初始激光激发时形成的振动“热”电子激发态5的振动弛豫速率(14 ps)。

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