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Dr. Krishnan, Madhavi

Address


ETH Zurich
Laboratory of Physical Chemistry (LPC)
8093 Zurich
Switzerland

Madhavi_Krishnan
 


ETH Zurich
Laboratory of Physical Chemistry
HCI, F 211
CH-8093 Zurich
Switzerland

Tel.: +41 44 633 4344
Fax: +41 44 633 1316
E-mail:madhavi.krishnan@phys.chem.ethz.ch


Publications

1. Krishnan, M.; Mojarad, N.; Kukura, P.; Sandoghdar, V.

Geometry-induced electrostatic trapping of nanometric objects in a fluid”,

Nature 2010, 467, 692-695. 

2. Krishnan, M.; Petrasek, Z.; Mönch, I.; Schwille, P.

“Electrostatic self-assembly of charged colloids and macromolecules in fluidic nanoslits”,

Small 2008, 4, 1900 – 1906.

3. Krishnan, M.; Petrov, E.P.

“Comment on ‘Nanoconfinement-enhanced conformational response of single DNA molecules to changes in ionic environment’”,

arXiv:0805.2100v1 [cond-mat.soft].

4. Krishnan, M.; Mönch, I.; Schwille, P.

“Spontaneous stretching of DNA in a two-dimensional nanoslit”,

Nano Letters 2007, 7, 1270-1275.

Featured in:

nanotechweb.org June 25, 2007.

5. Petrasek, Z.; Krishnan, M.; Mönch, I.; Schwille, P.

“Simultaneous two-photon fluorescence correlation spectroscopy and lifetime imaging of dye molecules in submicrometer fluidic structures”,

Microscopy Research and Technique 2007, 70, 459-466.

6. Pal, R.; Yang, M.; Lin, R.; Johnson, B. N.; Srivastava, N.; Razzacki, S. Z.; Chomistek, K. J.; Heldsinger, D. C.; Haque, R. M.; Ugaz, V. M.; Thwar, P. K.; Chen, Z.; Alfano, K.; Yim, M. B.; Krishnan, M.; Fuller, A. O.; Larson, R. G.; Burke, D. T.; Burns, M. A.

“An integrated microfluidic device for influenza and other genetic analyses”,

Lab on a Chip 2005, 5, 1024-1032.

7. Krishnan, M.; Burke, D. T.; Burns, M. A.

“Theoretical considerations for counting nucleic acid molecules in microdevices”,

Journal of Micromechanics and Microengineering 2005, 15, N6-N10.

8. Krishnan, M.; Burke, D. T.; Burns, M. A.

“Polymerase chain reaction in high surface-to-volume ratio SiO2 microstructures”,

Analytical Chemistry 2004, 76, 6588-6593.

9. Krishnan, M.; Agrawal, N.; Burns, M. A.; Ugaz, V. M.

“Reactions and fluidics in miniaturized natural convection systems”,

Analytical Chemistry 2004, 76, 6254-6265.

10. Ugaz, V.M.; Krishnan, M.

“Novel convective flow based approaches for high-throughput PCR thermocycling”,
Journal of the Association for Laboratory Automation 2004, 9, 318-323.

11. Krishnan, M.; Ugaz, V.M.; Burns, M.A.

“PCR in a Rayleigh-Bénard convection cell”,

Science 2002, 298, 793.

12. Krishnan, M.; Brahmasandra, S.N.; Burke, D.T.; Mastrangelo, C.H.; Burns, M.A.

“A novel strategy for the design of multiple reaction systems for genetic analysis”,

Sensors and Actuators A: Physical 2002, 95, 250-258.

13. Krishnan, M.; Namasivayam, V.; Lin, R.; Pal. R.; Burns, M.A.

“Microfabricated reaction and separation systems”,

Current Opinion in Biotechnology 2001, 22, 92-98.

14. Krishnan, M.; Brahmasandra S.N.; Burke, D.T.; Mastrangelo, C.H.; Burns, M.A.

“Design of multiple reaction systems for genetic analysis”,

IEEE Micro Electro Mechanical Systems Conference Technical Digest. MEMS 2001, 397-400.

15. Brahmasandra, S.N.; Handique, K.; Krishnan, M.; Namasivayam, V.; Burke, D.T.; Mastrangelo, C.H.; Burns, M.A.

“Microfabricated devices for integrated DNA analysis”,

Biochip Technology, Harwood Academic Publishers 1999, 229-250.

16. Burns, M.A., Johnson; B.N., Brahmasandra, S.N.; Handique, K.; Webster, J.R.; Krishnan, M.; Sammarco, T.S.; Man, P.M.; Jones, D.; Heldsinger, D.; Mastrangelo, C.H.; Burke, D.T.

“An integrated nanoliter DNA analysis device”,

Science 1998, 282, 484-487.

17. Lakshmi, B.S.; Kangueane, P.; Krishnan, M.; Gautam, P.

“Solvent hydrophobicity in the interfacial activation of Candida rugosa Lipase”,

Journal of Biochemistry, Molecular Biology & Biophysics 2000, 4, 293-298.

 

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© 2013 ETH Zurich | Imprint | Disclaimer | 18 October 2010
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