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Matthew Linford : ウィキペディア英語版 | Matthew Linford
Matthew R. Linford (born April 9, 1966)〔''U.S. Public Records Index'' Vol 2 (Provo, Utah: Ancestry.com Operations, Inc.), 2010.〕 is an Associate Professor at Brigham Young University, Department of Chemistry and Biochemistry (Provo, Utah) since September 2006. His lab is devoted towards synthesizing hydrophobic surfaces, diamond stationary phases for liquid chromatography and microfabricated TLC plates. He has expertise in surface modification and characterization, particularly in studying organic thin films (monolayer and polymer), modifying silicon, diamond, silicon oxide, gold, and polymers, surface patterning, surface organic chemistry, thin-film deposition with silanes, alkenes, thiols, and by sputtering. In his group they also undertake liquid chromatography (HPLC and TLC) and solid phase extraction (SPE), develop hydrophobic coatings for various materials, study materials for optical data storage, and perform surface analysis by XPS, ToF-SIMS, wetting, optical ellipsometry, and FTIR. His lab also performs chemometrics of mass spec data (PCA, MCR, cluster analysis, and PLS). ==Academic history== He did his BS in chemistry from Brigham Young University in September 1990, followed by MS in material sciences and PhD in Chemistry from Stanford University in June 1996. He served as a postdoctoral fellow at the Max Planck Institute for Colloid and Surface Sciences from July 1996 to June 1997. Linford has worked on topics including supercritical fluid chromatography and the formation of first alkyl monolayers on silicon using diacylperoxides. He has studied the use of synchrotron radiation to characterize monolayers on silicon, worked on gas-phase free-radical modification of alkyl monolayers, devised a new method for coating particles, and studied the strong effect of ionic strength on surface dye extraction during dye-polymer multilayer formation. He has worked on growing semiconducting particles in polyelectrolyte multilayers, designed a cell to study the flow-induced orientation of polyelectrolytes on surfaces, described a mixing process using matrix algebra, synthesized and characterized films of novel polyelectrolytes.
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