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Methods in Molecular Biology (Clifton, N.J.)|April 3, 2013
Formation of pit-spanning phospholipid bilayers on nanostructured silicon dioxide surfaces for studying biological membrane eventsIndriati Pfeiffer, Michael ZächBiosensors & Bioelectronics|February 16, 2010
Electrodeless QCM-D for lipid bilayer applicationsAngelika Kunze, Michael Zäch, Sofia Svedhem, et al.ACS Nano|March 29, 2011
Gold, platinum, and aluminum nanodisk plasmons: material independence, subradiance, and damping mechanismsIgor Zorić, Michael Zäch, Bengt Kasemo, et al.The Journal of Chemical Physics|December 3, 2008
Thermodynamic and kinetic supercooling of liquid in a wedge poreDominika Nowak, Manfred Heuberger, Michael Zäch, et al.The Analyst|January 26, 2010
Combined QCM-D and EIS study of supported lipid bilayer formation and interaction with pore-forming peptidesElisabeth Briand, Michael Zäch, Sofia Svedhem, et al.The Journal of Physical Chemistry. B|March 18, 2010
Vesicle adsorption and phospholipid bilayer formation on topographically and chemically nanostructured surfacesIndriati Pfeiffer, Sarunas Petronis, Ingo Köper, et al.The Journal of Physical Chemistry. B|March 29, 2008
Influence of nanotopography on phospholipid bilayer formation on silicon dioxideIndriati Pfeiffer, Bastien Seantier, Sarunas Petronis, et al.Physical Review Letters|February 2, 2013
Oscillatory optical response of an amorphous two-dimensional array of gold nanoparticlesTomasz J Antosiewicz, S Peter Apell, Michael Zäch, et al.Journal of the American Chemical Society|April 7, 2005
Localized surface plasmon resonance sensing of lipid-membrane-mediated biorecognition eventsAndreas Dahlin, Michael Zäch, Tomas Rindzevicius, et al.Journal of Colloid and Interface Science|July 30, 2011
Bioreducible insulin-loaded nanoparticles and their interaction with model lipid membranesRickard Frost, Gregory Coué, Johan F J Engbersen, et al.Pageof 2