K.N. Tu
Materials Science and Engineering: A
High-resolution patterns of proteins at multiple length scales are printed by a facile and flexible strategy using a flat elastomeric stamp and direct covalent immobilization onto mixed self-assembled monolayers of tri(ethylene glycol)- and carboxylic acid-hexa(ethylene glycol)-terminated alkanethiols on gold-coated substrates. This is a robust method for generating complex protein arrays with precise control over micrometer- and nanometer-scale pattern geometries while maintaining a protein-adsorption-resistant background. Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
K.N. Tu
Materials Science and Engineering: A
R.J. Gambino, N.R. Stemple, et al.
Journal of Physics and Chemistry of Solids
Ming L. Yu
Physical Review B
R.M. Macfarlane, R.L. Cone
Physical Review B - CMMP