Xu, Dongyan Ph.D. in Mechanical Engineering, August 2008 Research Information
Ph.D. in Mechanical Engineering, August 2008
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Ph.D. Dissertation Nanocarbon/Polymer Brush Materials: Synthesis, Characterization and Application
Ph.D. Advisor Charles Lukehart, Chemistry
Ph.D. Committee Leonard Feldman, Physics Yongsheng Leng, Chemical Engineering Ronald Schrimpf, Electrical Engineering Greg Walker, Mechanical Engineering
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Experimental characterization of electrical current leakage in poly(dimethylsiloxane) microfluidic devices. Sun, JS; Vajandar, SK; Xu, DY; Kang, YJ; Hu, GQ; Li, DQ; Li, DY, MICROFLUIDICS AND NANOFLUIDICS, 6, 589-598 , (2009) Field-Effect Control of Electroosmotic Pumping Using Porous Silicon-Silicon Nitride Membranes. Vajandar, SK; Xu, DY; Sun, JS; Markov, DA; Hofmeister, WH; Li, DY, JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 18, 1173-1183 , (2009) Ionic current through a nanopore three nanometers in diameter. Ge, YY; Xu, DY; Yang, JK; Chen, YF; Li, DY, PHYSICAL REVIEW E, 80, 021918 , (2009) Water structures near charged (100) and (111) silicon surfaces. Xu, DY; Leng, YS; Chen, YF; Li, DY, APPLIED PHYSICS LETTERS, 94, 201901 , (2009) Electroosmotic flow in nanotubes with high surface charge densities. Chen, YF; Ni, ZH; Wang, GM; Xu, DY; Li, DY, NANO LETTERS, 8, 42-48 , (2008) Experimental characterization of a metal-oxide-semiconductor field-effect transistor-based Coulter counter. Sridhar, M; Xu, DY; Kang, YJ; Hmelo, AB; Feldman, LC; Li, DQ; Li, DY, JOURNAL OF APPLIED PHYSICS, 103, 104701 , (2008) Microfluidic differential resistive pulse sensors. Wu, XD; Kang, YJ; Wang, YN; Xu, DY; Li, DY; Li, DQ, ELECTROPHORESIS, 29, 2754-2759 , (2008) On-chip counting the number and the percentage of CD4+T lymphocytes. Wang, YN; Kang, YJ; Xu, DY; Chon, CH; Barnett, L; Kalams, SA; Li, DY; Li, DQ, LAB ON A CHIP, 8, 309-315 , (2008) SiO2-coated porous anodic alumina membranes for high flow rate electroosmotic pumping. Vajandar, SK; Xu, DY; Markov, DA; Wikswo, JP; Hofmeister, W; Li, DY, NANOTECHNOLOGY, 18, 275705 , (2007) Wide-spectrum, ultrasensitive fluidic sensors with amplification from both fluidic circuits and metal oxide semiconductor field effect transistors. Xu, D; Kang, Y; Sridhar, M; Hmelo, AB; Feldman, LC; Li, D; Li, D, APPLIED PHYSICS LETTERS, 91, 013901 , (2007) |
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