Electrostatic self-assembly of microsphere lens arrays
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The Distinct Element Method (DEM) is a popular tool to perform granular media simulations. The two key elements this requires are an adequate model for inter-particulate contact forces and an efficient contact detection method. Originally, this method was ...
In this Note we prove that in two and three space dimensions, the symmetric and non-symmetric discontinuous Galerkin method for second order elliptic problems is stable when using piecewise linear elements enriched with quadratic bubbles without any penali ...
The present invention relates to a method for the manufacture of a peptidic folding precursor (Switch-Peptide) stable and soluble at physiological conditions, derived from a peptide having a potential for self-assembling and fibrillogenesis. Another object ...
The invention discloses a method for the manuf. of a peptidic folding precursor (switch-peptide) stable and sol. at physiol. conditions, derived from a peptide having a potential for self-assembling and fibrillogenesis. Another object of the invention is t ...
We report here a simple method, based on electrostatic self-assembly, for realizing bead-based single protein micro-arrays. We generate positively charged surface micro-patterns on a glass substrate and use them as template for adsorbing negatively-charged ...
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The distinct element method was originally designed to handle spherical particles. Here, this method is generalized to a wider range of particle shapes called spherosimplices. A contact detection method is given as well which uses weighted Delaunay triangu ...
The spectroscopic and electrochemical properties of two-dimensional electrostatic assembly of Au nanocrystals are examined on poly-L-lysine (pLys) modified gold electrodes. The surface preparation for the nanoparticle deposition involved the self-assembly ...