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- W4838402 abstract "Acquisition and analysis of information on structure and dynamics of nanometer-sized objects are a strong challenge for fluorescence probing technique. As it was discussed in the first chapter of this volume, the nanoscopic dimension itself, its structural heterogeneity and the peculiarities of their surface–interface properties put serious restrictions on the application of methods that were successful when applied to neat solvents. Even more challenging is the application of fluorescence probing to the nanosize materials with strong structural anisotropy. In addition to subnanoscale gradients of polarity and mobility, these systems demonstrate anisotropic molecular fields acting on fluorescence reporter dyes. Ordered arrangements of charged and dipolar molecules can generate strong electric fields. Similarity of these effects prompted us to provide their unified discussion. Fluorescence probing in ultrathin films and monolayers, surfactant micelles, phospholipid bilayers and, finally, biological macromolecules – proteins and nucleic acids – will be discussed here. We critically analyze nanoscopic description of these systems based on physical theory and empirical correlations and try to draw the link to high-resolution structural data and to the results of quantum mechanical and molecular dynamics computations." @default.
- W4838402 created "2016-06-24" @default.
- W4838402 creator A5035892731 @default.
- W4838402 creator A5072933850 @default.
- W4838402 date "2011-01-01" @default.
- W4838402 modified "2023-09-23" @default.
- W4838402 title "Fluorescence Probing in Structurally Anisotropic Materials" @default.
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