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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 >Photoinduced Interactions of Supramolecular Ruthenium(II) Complexes with Plasmid DNA: Synthesis and Spectroscopic, Electrochemical, and DNA Photocleavage Studies
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Photoinduced Interactions of Supramolecular Ruthenium(II) Complexes with Plasmid DNA: Synthesis and Spectroscopic, Electrochemical, and DNA Photocleavage Studies

机译:超分子钌(II)配合物与质粒DNA的光诱导相互作用:合成及光谱,电化学和DNA光裂解研究。

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摘要

Two new bridging ligands have been synthesized by combining substituted benzaldehydes with phenanthrolinopyrrole (php), resulting in new polyazine bridging ligands. The ligands have been characterized by H-1 NMR, mass spectroscopy, and elemental analysis. These new ligands display pi-pi* transitions above 500 nm with modest molar absorptivities. Upon excitation at the ligand-centered charge-transfer transition, weak emission with a maximum wavelength of 612 nm is observed. When coordinated to two ruthenium(II) bis(bipyridyl) groups, the new bimetallic complexes generated give an overall 4+ charge. The electronic transitions of the bimetallic ruthenium(II) complexes display traditional pi-pi* transitions at 287 nm and metal-to-ligand charge-transfer transitions at 452 nm with molar absorptivities greater than 30000 M-1 cm(-1). Oxidation of the ruthenium(II) metal centers to ruthenium(III) occurs at potentials above 1.4 V versus the Ag/AgCl reference electrode. Spectroscopic and electrochemical measurements indicate that the ruthenium(II) moieties behave independently. Both complexes are water-soluble and show the ability to photonick plasmid DNA when irradiated with low-energy light above 550 nm. In addition, one of the complexes, [Ru(bpy)(2)php](2)Van(4+), shows the ability to linearize plasmid DNA and gives evidence, by gel electrophoresis, of photoinduced binding to plasmid DNA.
机译:通过结合取代的苯甲醛与菲咯啉吡咯(php)合成了两个新的桥联配体,从而形成了新的聚嗪桥联配体。配体已通过H-1 NMR,质谱和元素分析进行​​了表征。这些新的配体在500 nm以上显示pi-pi *跃迁,具有适度的摩尔吸收率。在以配体为中心的电荷转移跃迁激发时,观察到最大波长为612 nm的微弱发射。当与两个钌(II)双(联吡啶基)基团配位时,生成的新双金属配合物可提供整体4+电荷。双金属钌(II)配合物的电子跃迁在287 nm处显示传统的pi-pi *跃迁,在452 nm处显示出金属至配体的电荷转移跃迁,摩尔吸收率大于30000 M-1 cm(-1)。与Ag / AgCl参比电极相比,在高于1.4 V的电势下,钌(II)金属中心被氧化为钌(III)。光谱和电化学测量表明,钌(II)部分独立地表现。两种复合物都是水溶性的,当用550 nm以上的低能光照射时,它们显示出光质粒DNA的能力。此外,复合物之一[Ru(bpy)(2)php](2)Van(4+)显示了线性化质粒DNA的能力,并通过凝胶电泳提供了光诱导与质粒DNA结合的证据。

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