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首页> 外文期刊>Chemistry: A European journal >Vapochromic and mechanochromic tetrahedral gold(I) complexes based on the 1,2-bis(diphenylphosphino)benzene ligand
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Vapochromic and mechanochromic tetrahedral gold(I) complexes based on the 1,2-bis(diphenylphosphino)benzene ligand

机译:基于1,2-双(二苯基膦基)苯配体的气相致变色和机械致变色四面体金(I)配合物

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摘要

Tetrahedral gold(I) complexes containing the diphosphane ligand (dppb=1,2-bis(diphenylphosphino)benzene), [Au(dppb)_2]X [X=Cl (1), Br (2), I (3), NO_3 (4), BF_4 (5), PF_6 (6), B(C _6H_4F-4)_4 (7)], and the ethanol and methanol adducts of complex 4, 8, and 9, were prepared to analyze their unique photophysical properties. These complexes are classified into two categories on the basis of their crystal structures. In Category I, the complexes (1-5) have relatively-small counter anions and two dppb ligands are symmetrically coordinated to the central Au~I atom, and display an intense blue phosphorescence. Alternatively, the complexes (6-9) in Category II have large counter anions and two dppb ligands asymmetrically coordinated to Au~I atom, and display a yellow or yellow orange phosphorescence. The difference in the phosphorescence color of the complexes between the Category I and II is ascribed to the change in the structure of the cationic moiety in the complex. According to DFT calculations, the symmetry reduction caused by the large counter anion of the complex in Category II gives the destabilization of HOMO (σ*) levels, leading to the red-shift of the emission peak. We have demonstrated that the symmetry reductions are responsible for the phosphorescence color alteration caused by external stimuli (volatile organic compounds and mechanical grinding). Phosphorescence color alteration: A small conformational change of two 1,2-bis(diphenylphosphino)benzene (dppb) ligands in tetrahedral Au~I complexes is caused by changing the counter anion or by external stimuli (volatile organic compounds and mechanical grinding), giving rise to the remarkable phosphorescence color alteration (see scheme).
机译:含有二膦配体(dppb = 1,2-双(二苯基膦基)苯),[Au(dppb)_2] X [X = Cl(1),Br(2),I(3),制备了NO_3(4),BF_4(5),PF_6(6),B(C _6H_4F-4)_4(7)]和配合物4、8和9的乙醇和甲醇加合物以分析其独特的光物理性质属性。这些复合物根据其晶体结构分为两类。在I类中,配合物(1-5)具有相对较小的抗衡阴离子,并且两个dppb配体与中心Au-1原子对称配位,并显示出强烈的蓝色磷光。或者,II类的配合物(6-9)具有大的抗衡阴离子和两个与Au-1原子不对称配位的dppb配体,并显示出黄色或橙黄色的磷光。 I类和II类之间的复合物的磷光颜色的差异归因于复合物中阳离子部分的结构变化。根据DFT计算,II类络合物中较大的抗衡阴离子引起的对称性降低使HOMO(σ*)含量不稳定,从而导致发射峰发生红移。我们已经证明,对称性降低是由外部刺激(挥发性有机化合物和机械研磨)引起的磷光颜色变化的原因。磷光颜色的变化:四面体Au〜I络合物中两个1,2-双(二苯基膦基)苯(dppb)配体的构象变化很小是由于改变了抗衡阴离子或外部刺激(挥发性有机化合物和机械研磨)引起的,引起显着的磷光颜色变化(请参阅方案)。

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