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作 者:QIN GuoTing & CAI ChengZhi Department of Chemistry,University of Houston,Houston,Texas 77204,USA
出 处:《Science China Chemistry》2010年第1期36-44,共9页中国科学(化学英文版)
基 金:supported by the Welch Foundation grant E-1498;NSF CAREER Award (CTS-0349228 to CC);grant DMR-0706627;NIH R21 HD058985
摘 要:Functionalization of silicon substrate surfaces with a stable monolayer for resisting non-specific adsorption of proteins has attracted great interest,since it is directly relevant to the development of miniature,silicon-based biosensors and implantable microdevices,such as silicon-neuron interfaces.This brief review summarizes our contribution to the development of robust monolayers grown by surface hydrosilylation on atomically flat,hydrogen-terminated silicon surfaces.The review also outlines our strategy and progress on the fabrication of single molecule patterns on such monolayer platforms.Functionalization of silicon substrate surfaces with a stable monolayer for resisting non-specific adsorption of proteins has attracted great interest,since it is directly relevant to the development of miniature,silicon-based biosensors and implantable microdevices,such as silicon-neuron interfaces.This brief review summarizes our contribution to the development of robust monolayers grown by surface hydrosilylation on atomically flat,hydrogen-terminated silicon surfaces.The review also outlines our strategy and progress on the fabrication of single molecule patterns on such monolayer platforms.
关 键 词:protein-resistant monolayers surface HYDROSILYLATION CONDUCTIVE ATOMIC force MICROSCOPE NANOPATTERNING
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