David A. Routenberg, Ph.D.

Affiliations: 
2009 Yale University, New Haven, CT 
Area:
Electronics and Electrical Engineering
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"David Routenberg"

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Mark A. Reed grad student 2009 Yale
 (Fabrication and characterization of silicon nanowire field -effect sensors.)
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Publications

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Weber M, Criscione JM, Duan X, et al. (2015) CMOS nanowire biosensing systems Handbook of Bioelectronics: Directly Interfacing Electronics and Biological Systems. 122-136
Duan X, Rajan NK, Routenberg DA, et al. (2013) Regenerative electronic biosensors using supramolecular approaches. Acs Nano. 7: 4014-21
Duan X, Li Y, Rajan NK, et al. (2012) Quantification of the affinities and kinetics of protein interactions using silicon nanowire biosensors. Nature Nanotechnology. 7: 401-7
Rajan NK, Duan X, Vacic A, et al. (2012) Limits of detection for silicon nanowire BioFETs Device Research Conference - Conference Digest, Drc. 91-92
Rajan NK, Routenberg DA, Reed MA. (2011) Optimal signal-to-noise ratio for silicon nanowire biochemical sensors. Applied Physics Letters. 98: 264107-2641073
Rajan NK, Routenberg DA, Chen J, et al. (2011) Erratum: "Temperature dependence of 1∕f noise mechanisms in silicon nanowire biochemical field effect transistors" [Appl. Phys. Lett. 97, 243501 (2010)]. Applied Physics Letters. 98: 199902
Stern E, Routenberg DA, Vacic A, et al. (2011) CMOS compatible nanowires for biosensing Proceedings - Design Automation Conference. 718-722
Rajan NK, Routenberg DA, Chen J, et al. (2010) Temperature dependence of 1∕f noise mechanisms in silicon nanowire biochemical field effect transistors. Applied Physics Letters. 97: 243501
Routenberg DA, Reed MA. (2010) Microfluidic probe: a new tool for integrating microfluidic environments and electronic wafer-probing. Lab On a Chip. 10: 123-7
Rajan NK, Routenberg DA, Chen J, et al. (2010) 1/f noise of silicon nanowire BioFETs Ieee Electron Device Letters. 31: 615-617
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