Ryan R. Fuierer, Ph.D.
Affiliations: | 2004 | North Carolina State University, Raleigh, NC |
Area:
Organic and Materials ChemistryGoogle:
"Ryan Fuierer"Mean distance: 7.45 | S | N | B | C | P |
Parents
Sign in to add mentorChristopher B. Gorman | grad student | 2004 | NCSU | |
(Probing the electronic properties of materials that self-assemble.) |
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Publications
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Moses S, Brewer SH, Kraemer S, et al. (2007) Detection of DNA hybridization on indium tin oxide surfaces Sensors and Actuators, B: Chemical. 125: 574-580 |
Wassel RA, Credo GM, Fuierer RR, et al. (2004) Attenuating negative differential resistance in an electroactive self-assembled monolayer-based junction. Journal of the American Chemical Society. 126: 295-300 |
Wassel RA, Credo GM, Fuierer RR, et al. (2004) Attenuating Negative Differential Resistance in an Electroactive Self-Assembled Monolayer-Based Junction Journal of the American Chemical Society. 126: 295-300 |
Krämer S, Fuierer RR, Gorman CB. (2003) Scanning probe lithography using self-assembled monolayers. Chemical Reviews. 103: 4367-418 |
Wassel RA, Fuierer RR, Kim N, et al. (2003) Stochastic Variation in Conductance on the Nanometer Scale: A General Phenomenon Nano Letters. 3: 1617-1620 |
Krämer S, Fuierer RR, Gorman CB. (2003) Scanning probe lithography using self-assembled monolayers Chemical Reviews. 103: 4367-4418 |
Fuierer RR, Carroll RL, Feldheim DL, et al. (2002) Patterning mesoscale gradient structures with self-assembled monolayers and scanning tunneling microscopy based replacement lithography Advanced Materials. 14: 154-157 |
Gorman CB, Carroll RL, Fuierer RR. (2001) Negative differential resistance in patterned electroactive self-assembled monolayers Langmuir. 17: 6923-6930 |
Gorman CB, Carroll RL, He Y, et al. (2000) Chemically well-defined lithography using self-assembled monolayers and scanning tunneling microscopy in nonpolar organothiol solutions Langmuir. 16: 6312-6316 |
McConnell WP, Novak JP, Brousseau LC, et al. (2000) Electronic and optical properties of chemically modified metal nanoparticles and molecularly bridged nanoparticle arrays Journal of Physical Chemistry B. 104: 8925-8930 |