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首页> 外文期刊>Journal of Materials Science >Surfactant modified deoxyribonucleic acid films: Synthesis, interaction with acridine orange and luminescent properties
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Surfactant modified deoxyribonucleic acid films: Synthesis, interaction with acridine orange and luminescent properties

机译:表面活性剂改性的脱氧核糖核酸膜:合成,与a啶橙的相互作用和发光性能

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摘要

Dye-doped deoxyribonucleic acids (DNA)-tetradecyltrimethylammonium (TTA) films have been prepared. Acridine orange, known as a DNA-binding molecule, can be spontaneously doped by immersing the DNA-TTA film in an acetonitrile solution of the dye. Dye-doped samples exhibit two characteristic absorption bands corresponding to the dye monomer and aggregate, respectively. With the elapse of time after immersion, dye molecules undergo an unusual transformation from the aggregate state to the monomer state, and photoluminescence intensity also increases. Dye molecules in the sample exhibit a pronounced enhancement in their photoluminescence intensity than those in PMMA. The photoluminescence intensity of the samples strongly correlates to both of the dye concentration and monomer/(monomer + aggregates) ratio. Not only the hydrophobic interaction but also the electrostatic force between DNA and dyes play important roles in the formation of the dye-doped samples. It is surmised that monomers and aggregates disperse within the hydrophobic TTA sites in the early stage, and then a part of monomers presumably intercalate between adjacent base pairs of DNA with the elapse of time.
机译:已经制备了染料掺杂的脱氧核糖核酸(DNA)-十四烷基三甲基铵(TTA)膜。通过将DNA-TTA膜浸入染料的乙腈溶液中,可以自发地掺杂as啶橙(一种称为DNA结合分子)。染料样品表现出分别对应于染料单体和聚集体的两个特征吸收带。随着浸没时间的流逝,染料分子经历从聚集态到单体态的异常转变,并且光致发光强度也增加。样品中的染料分子的光致发光强度比PMMA中的显着增强。样品的光致发光强度与染料浓度和单体/(单体+聚集体)之比密切相关。在染料掺杂样品的形成过程中,不仅疏水相互作用而且DNA与染料之间的静电力也起着重要作用。据推测,单体和聚集体在早期分散在疏水性TTA位点内,然后随着时间的流逝,一部分单体可能插入DNA的相邻碱基对之间。

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