Biomedical Engineering Reference
In-Depth Information
Erickson D, Li D (2004) Integrated microfluidic devices. Anal Chim Acta 507:11-26
Fan J, Chu PK (2010) Group IV nanoparticles: synthesis, properties and biological applications.
Small 6:2080-2098
Ferry DK, Goodnick SM (2009) Transport
in nanostructures.
Cambridge University Press,
Cambridge
Fink H-W, Sch onenberger C (1999) Electrical conduction through DNA molecules. Nature
398:407-410
Geim AK, Novoselov KS (2007) The rise of graphene. Nat Mater 6:183-191
Geim AK (2009) Graphene: Status and prospects. Science 324:1530-1534
Gruner G (2006) Carbon nanotube transistors for biosensing applications. Anal Bioanal Chem
384:322-335
Gulseren O, Yildirim T, Ciraci S (2003) Formation of quantum structures on a single nanotube by
modulating hydrogen adsorption. Phys Rev B 68:115419
Guo LJ (2004) Recent progress in nanoimprint technologies and its applications. J Phys D
37:R123-R141
Guo X, Gorodetsky AA, Hone J, Barton JK, Nuckolls C (2008) Conductivity of a single DNA
duplex bridging a carbon nanotube gap. Nat Nanotechnol 3:163-167
Han MY et al (2007) Energy band-gap engineering of graphene nanoribbons. Appl Phys Lett
98:206805
Harriott LR, Hull R (2004) Nanolithography. In: Di Ventra M, Evoy S, Heflin JR Jr (eds)
Introduction to nanoscale science and technology. Kluwer Academic Publishers, Dordrecht
7-40
He Y, Dong H, Li T, Wang C, Shao W, Zhang Y, Jiang L, Hu W (2010) Graphene and graphene
oxide nanogap electrodes fabricated by atomic force microscope nanolithography. Appl Phys
Lett 97:133301
Huie JC (2003) Guided molecular self-assembly: a review of recent efforts. Smart Mater Struct
12:264-271
Javey A, Kong J (eds) (2009) Carbon nanotube electronics. Springer, Heidelberg
Karnik R, Fan R, Yue M, Li D, Yang P, Majumdar A (2005) Electrostatic control of ions and
molecules in nanofluidic transistors Nano Lett 5:943-948
Kopp MU, de Mello AJ, Manz A (1998) Chemical amplification: continuous-flow PCR on a chip.
Science 280:1046-1047
Kwon Y-W et al (2009) Material science of DNA. J Mater Chem 19:1353-1380
Lauhon LJ et al (2002) Epitaxial core-shell and core-multishell nanowire heterostructures. Nature
420:57-61
Lee M, Baik KY, Noah M, Kwon Y-K, Lee J-O, Hong S (2009) Nanowire and nanotube transistors
for lab-on-a-chip applications. Lab on a Chip 9, 2267-2280
Li T, Hu W, Zhu D (2010) Nanogap electrodes. Adv Mater 22:286-300
Meschede D, Metcalf H (2003) Atomic nanofabrication: atomic deposition and lithography by
laser and magnetic forces. J Phys D 36:R17-R38
Mijatovic D, Eijkel JCT, van den Berg A (2005) Technologies for nanofluidic systems: top-down
vs. bottom-up—a review. Lab on a Chip 5:492-500
Novoselov KS, et al (2004)
Electric field effect
in atomically thin carbon
films. Science
306:666-669
Noy A, Park HG, Farnasiero F, Holt JK, Grigoropoulos CP, Bakajin O (2007) Nanofluidics in
carbon nanotubes. Nanotoday 2:22-29
Pease RF, Chou SY (2008) Lithography and other patterning techniques for future electronics. Proc
IEEE 96:248-270
Porath D, Bezryadin A, de Vries S, Dekker C (2000) Direct measurement of electrical transport
through DNA molecules. Nature 403:635-637
Qian J, Liao S, Xu S, Stroscio MA, Dutta M (2009) Direct measurement of electrical transport
through single DNA molecules. J Appl Phys 106:033702
Rao CNR, et al (2000) Metal nanoparticles, nanowires and carbon nanotubes. Pure Appl Chem
72:21-33
Search WWH ::




Custom Search