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  • Air-Water Interface
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Air-Water Interface

Imaging Ellipsometry

The air/water interface is of elementary interest in biophysics as well as in industrial applications. Brewster angle microscopy (BAM) is a powerful technique that allows for real-time visualization of Langmuir-Blodgett monolayers.

BAM applications visualize biological materials and systems, and enable the investigation of amphiphilic molecules, proteins, drugs, extracts, DNA, nanoparticles etc. at the air-water interface.

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Applications of Brewster angle microscopy (pdf)

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Microscopic maps on water (pdf)

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The role of phospholipid composition and ergosterol presence in the adaptation of fungal membranes to harsh environmental conditions–membrane modeling study (2020)

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Dichlorobiphenyls and chlorinated benzoic acids – Emergent soil pollutants in model bacterial membranes (2020)

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A calixarene promotes disaggregation and sensing performance of carboxyphenyl porphyrin films (2020)

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Tailoring a compact and stable Langmuir di-dimensional PbX-based layered perovskite film at the air-water interface and on solid support (2017)

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Studies on the interactions of bisphenols with anionic phospholipids of decomposer membranes in model systems (2016)

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Interactions of lipidic cubic phase nanoparticles with lipid membranes (2016)

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Spectroscopic and Structural Studies of a Surface Active Porphyrin in Solution and in Langmuir–Blodgett Films (2015)

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The influence of rough lipopolysaccharide structure on molecular interactions with mammalian antimicrobial peptides (2015)

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Visualizing a multidrug resistance protein, EmrE, with major bacterial lipids using Brewster angle microscopy (2013)

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Control of the lateral organization in langmuir monolayers via molecular aggregation of dyes (2010)

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Improvement of optical gas sensing using LB films containing a water insoluble porphyrin organized in a calixarene matrix (2007)

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Molecular organization of a water-insoluble iridium (III) complex in mixed monolayers (2007)

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