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Multiparrametric fluorescence probing of nanoscale compositions and biological systems

机译:纳米级组合物和生物系统的多面arrametric荧光探测

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We demonstrate a possibility for simultaneous probing of several microscopic physicochemical properties of supramolecular systems using the dye molecules existing in several forms of the ground and/or excited states. This idea is realized on a series of 3-hydroxychromone dyes, which exhibit the Excited-State Intramolecular Proton Transfer reaction resulting in two excited state tautomeric forms. Microenvironment of these dyes can be characterized by a number of characteristic energies of absorption and emission transitions (positions of the corresponding bands) and by redistribution between the forms (relative intensities of the bands). We demonstrate that the positions and relative intensities of fluorescence excitation and emission bands can serve as independent variables with different sensitivity to polarity, electronic polarizability, electric field effects, hydrogen bonding acidity and basicity, thus, allowing multiparametric description of probe environment. The results of numerous applications of this approach in the studies of neat solvents, solvent mixtures, proteins and phospholipid membranes are presented.
机译:我们证明了使用以几种形式的地面和/或激发态的染料分子同时探测超分子系统的几种微观物理化学性质。该思想是在一系列3-羟基羟菁染料上实现的,其表现出激发状态的分子内质子转移反应,得到两个激发态互变异构形式。这些染料的微环境可以特征在于,通过诸多的吸收和发射转变(相应带的位置)的特征能量以及通过在形式(带的相对强度)之间的再分布来进行再分布。我们证明荧光激发和发射带的位置和相对强度可以用作具有不同于极性,电子极化性,电场效应,氢键酸度和碱度不同敏感性的独立变量,从而允许探针环境的多个方式描述。介绍了这种方法在纯溶剂,溶剂混合物,蛋白质和磷脂膜的研究中进行了许多应用的结果。

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