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Excited-State Dynamics of Cofacial Pacman Prophyrins

机译:面相Pacman卟啉的激发态动力学

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Cofacial palladium(II) bisporphyrins anchored by xanthene [Pd_2(DPX)] and dibenzofuran [Pd_2(DPD)] pillars were prepared, and the dynamics of their triplet excited states were investigated. The phosphorescence quantum yield [Φ_p = 4.59(121) * 10~(-3) in CH_2Cl_2] and lifetime [τ_p = 18.2(2) μs in CH_2Cl_2] of Pd_2(DPD) are significantly attenuated compared to those of its Pd_2(DPX) congener [Φ_p = 29.4(5) * 10~(-3) and τ_p = 102(3) μs and CH_2Cl_2]. Electronic absorption and emission spectroscopy and electrochemical measurements establish that the porphyrin rings of the DPX cofacial analogue are closer to each other than the porphyrin rings of the DPD analogue in fluid solution. These observations are supported by X-ray crystallographic analyses, which show that the metal-metal distance for the dibenzofuran-bridged bisporphyrin in the solid state is almost 3 A greater than that for bisporphyrins linked by the xanthene spacer. The spectroscopic, photophysical, and structural results suggest that the decreased Φ_p and τ_p of Pd_2(DPD) are not a consequence of simple interplanar interactions but rather arise from the increased conformational flexibility of the porphyrin rings about the aryl ring of the DPD pillar. In support of this contention, the photophysical properties of monomeric palladium etioporphyrin I [Pd(Etio)] and meso-phenyl-substituted palladium etioporphyrin II [Pd(PhEtio)] were examined and found to be similar to those of Pd_2(DPX) and Pd_2(DPD), respectively. Density functional theory calculations reveal that torsional motion about the C(meso)-C(aryl bridge) bond induces nonplanar distortion of the porphyrin framework, causing a substantial decrease in the T_1-S_0 energy gap. This structural perturbation is consistent with the observed results of enhanced deactivation of Pd_2(DPD) and Pd(PhEtio) triplet excited states.
机译:制备了以x吨[Pd_2(DPX)]和二苯并呋喃[Pd_2(DPD)]为载体的双钯卟啉钯,并研究了其三重激发态的动力学。与Pd_2(DPX)相比,Pd_2(DPD)的磷光量子产率[Φ_p= 4.59(121)* 10〜(-3)在CH_2Cl_2中]和寿命[τ_p= 18.2(2)μs在CH_2Cl_2中] )同类物[Φ_p= 29.4(5)* 10〜(-3)和τ_p= 102(3)μs和CH_2Cl_2]。电子吸收和发射光谱法以及电化学测量结果表明,在流体溶液中,DPX表面类似物的卟啉环比DPD类似物的卟啉环彼此更靠近。这些观察得到X射线晶体学分析的支持,这些分析表明,固态的二苯并呋喃桥连的双卟啉的金属-金属距离比x吨间隔基连接的双卟啉的金属-金属距离大3A。光谱,光物理和结构结果表明,Pd_2(DPD)的Φ_p和τ_p降低不是简单的平面间相互作用的结果,而是由于DPD柱的芳基环周围的卟啉环的构象柔性增加而引起的。为了支持这一观点,研究了单体钯卟啉I [Pd(Etio)]和内苯基取代钯卟啉II [Pd(PhEtio)]的光物理性质,发现它们与Pd_2(DPX)和Pd_2(DPD)。密度泛函理论计算表明,围绕C(中位)-C(芳基桥键)的扭转运动引起卟啉骨架的非平面形变,从而导致T_1-S_0能隙的显着减小。这种结构扰动与观察到的增强的Pd_2(DPD)和Pd(PhEtio)三重激发态失活的结果一致。

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