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DNA和SDS介导钯卟啉室温磷光及磷光激发光谱分裂
SDS and DNA-mediated Room Temperature Phosphorescence of Pd-porphyrin and Splitting of Excitation Band
【摘要】 利用室温磷光研究了钯卟啉 (Pd- TAPP)与 ct DNA及 SDS的相互作用特征。 SDS通过静电缔合及尾链保护增强 Pd- TAPP磷光强度 ;Pd- TAPP通过静电和疏水相互作用结合于 DNA的沟槽区 ,缔合常数为 4.37× 10 5L· m ol- 1 (bp)。平均一个钯卟啉分子与 4~ 5个核酸碱基对相互作用时 ,核酸表面的钯卟啉分子达到饱和 ;然后卟啉分子开始聚集组装 ,激子相互作用导致激发光谱分裂 ,聚集缔合常数为 0 .5× 10 5L· mol- 1 。
【Abstract】 The interaction of meso-tetrakis (4-trimethylaminophenyl) porphyrin palladium (Pd-TAPP) with ct DNA and SDS was studied by the room temperature phosphorometry. The phosphorescence intensity (I RTP) of Pd-TAPP was increased by the electrostatic interaction and end-chain protection of SDS, and Pd-TAPP was bound to the grooves of nucleic acid by the electrostatic and hydrophobic interactions. The association constant was 4.37×10 5 L·mol -1(bp). The porphyrin molecules on the surface of nucleic acid reached saturation when one phosphor was bound to about 5 base pairs of nucleic acid. At that time, the porphyrin began to aggregate or assembly and the excitation spectra were splitted because of excitonic interaction. The aggregated constant was 0.5×10 5 L·mol -1.
【Key words】 room temperature phosphorescence; palladium-porphyrin; aggregate; split;
- 【文献出处】 山西大学学报(自然科学版) ,Journal of Shanxi University (Natural Science Edition) , 编辑部邮箱 ,2002年02期
- 【分类号】O657.3
- 【被引频次】8
- 【下载频次】113