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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Determination of Micellar Microenvironment of Pinacyanol by Visible Spectroscopy
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Determination of Micellar Microenvironment of Pinacyanol by Visible Spectroscopy

机译:可见光谱法测定松果醇的胶束微环境

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The interaction of pinacyanol, a cationic cyanine dye (PIN), with Triton X-100, sodium dodecyl sulfate, and alkyltrimethylammonium bromide micelles was studied by visible spectrophotometry. PIN exists as a monomer and in aggregated form (dimers, trimers, and higher aggregates) in aqueous solution, but dimers and higher aggregates were split into monomers in the presence of surfactants (or on addition of organic solvents). The interaction of PIN with any kind of micelles produced a bathochromic shift of all of the spectral bands and increased the most red-shifted band. The deconvolution of each experimental spectrum in three bands allowed the calculation of the molar absorptivity of any band. The extent of the binding of the dye to micelles can be measured by the association constant. The highest value of this was achieved with anionic, then with nonionic, and, finally, with cationic micelles. In the latter, the higher the length of the hydrophobic chain, the higher the association constant. By comparing the wavelength shifts in micellar systems with those observed in organic solvents, it was possible to assign a kind of microenvironment of PIN in the micelle.
机译:通过可见分光光度法研究了松花醇,阳离子花青染料(PIN)与Triton X-100,十二烷基硫酸钠和烷基三甲基溴化铵胶束的相互作用。 PIN以单体形式存在,并且以聚集形式(二聚体,三聚体和高级聚集体)在水溶液中存在,但在存在表面活性剂(或添加有机溶剂)的情况下,二聚体和高级聚集体被拆分为单体。 PIN与任何一种胶束的相互作用都会使所有光谱带发生红移,并增加了最大的红移带。在三个频带中对每个实验光谱进行反卷积可以计算任何频带的摩尔吸收率。染料与胶束的结合程度可以通过缔合常数来测量。使用阴离子,然后使用非离子,最后使用阳离子胶束,可以达到最高的目的。在后者中,疏水链的长度越高,缔合常数越高。通过将胶束系统中的波长变化与有机溶剂中观察到的波长变化进行比较,可以在胶束中分配一种PIN微环境。

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