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Items: 7

1.

A bio-inspired 3D micro-structure for graphene-based bacteria sensing.

Li B, Tan H, Anastasova S, Power M, Seichepine F, Yang GZ.

Biosens Bioelectron. 2019 Jan 1;123:77-84. doi: 10.1016/j.bios.2018.09.087. Epub 2018 Sep 27.

2.

Monolithic CMOS sensor platform featuring an array of 9'216 carbon-nanotube-sensor elements and low-noise, wide-bandwidth and wide-dynamic-range readout circuitry.

Dudina A, Seichepine F, Chen Y, Stettler A, Hierlemann A, Frey U.

Sens Actuators B Chem. 2019 Jan 15;279:255-266. doi: 10.1016/j.snb.2018.10.004.

3.

Dielectrophoresis-Assisted Integration of 1024 Carbon Nanotube Sensors into a CMOS Microsystem.

Seichepine F, Rothe J, Dudina A, Hierlemann A, Frey U.

Adv Mater. 2017 May;29(17). doi: 10.1002/adma.201606852. Epub 2017 Mar 15.

4.

Large-scale assembly of single nanowires through capillary-assisted dielectrophoresis.

Collet M, Salomon S, Klein NY, Seichepine F, Vieu C, Nicu L, Larrieu G.

Adv Mater. 2015 Feb 18;27(7):1268-73. doi: 10.1002/adma.201403039. Epub 2014 Nov 20.

PMID:
25410279
5.

Elucidation of the role of carbon nanotube patterns on the development of cultured neuronal cells.

Béduer A, Seichepine F, Flahaut E, Loubinoux I, Vaysse L, Vieu C.

Langmuir. 2012 Dec 18;28(50):17363-71. doi: 10.1021/la304278n. Epub 2012 Dec 6.

PMID:
23190396
6.

Arrays of nanoelectromechanical biosensors functionalized by microcontact printing.

Salomon S, Leïchlé T, Dezest D, Seichepine F, Guillon S, Thibault C, Vieu C, Nicu L.

Nanotechnology. 2012 Dec 14;23(49):495501. doi: 10.1088/0957-4484/23/49/495501. Epub 2012 Nov 19.

PMID:
23165395
7.

A combination of capillary and dielectrophoresis-driven assembly methods for wafer scale integration of carbon-nanotube-based nanocarpets.

Seichepine F, Salomon S, Collet M, Guillon S, Nicu L, Larrieu G, Flahaut E, Vieu C.

Nanotechnology. 2012 Mar 9;23(9):095303. doi: 10.1088/0957-4484/23/9/095303. Epub 2012 Feb 10.

PMID:
22327351

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