article · 01/01/2008
Fourier transform to analyse reaction-diffusion dynamics in a microsystem
Résumé
An integrated approach relying on a microsystem is introduced to easily extract, from a single experiment and with a global robust bi-exponential fit, an extensive set of thermodynamic, kinetic, and diffusion parameters governing associations in solution.
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Estevez-Torres, A., Le Saux, T., Gosse, C., Lemarchand, A., Bourdoncle, A., & Jullien, L. (2008). Fourier transform to analyse reaction-diffusion dynamics in a microsystem. Lab Chip, 8(7). https://doi.org/10.1039/b805412f
@article{EstevezTorres2008_97,
author = {Estevez-Torres, Andre and Le Saux, Thomas and Gosse, Charlie and Lemarchand, Annie and Bourdoncle, Anne and Jullien, Ludovic},
year = {2008},
month = {1},
title = {Fourier transform to analyse reaction-diffusion dynamics in a microsystem},
journal = {Lab Chip},
publisher = {ROYAL SOC CHEMISTRY},
volume = {8},
number = {7},
address = {THOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE CB4 0WF, CAMBS, ENGLAND},
abstract = {An integrated approach relying on a microsystem is introduced to easily extract, from a single experiment and with a global robust bi-exponential fit, an extensive set of thermodynamic, kinetic, and diffusion parameters governing associations in solution.},
url = {http://www.dx.doi.org/10.1039/b805412f},
doi = {10.1039/b805412f},
issn = {1473-0197},
}
TY - JOUR
AU - Estevez-Torres, Andre
AU - Le Saux, Thomas
AU - Gosse, Charlie
AU - Lemarchand, Annie
AU - Bourdoncle, Anne
AU - Jullien, Ludovic
PY - 2008
DA - 2008/01/01
TI - Fourier transform to analyse reaction-diffusion dynamics in a microsystem
JO - Lab Chip
VL - 8
IS - 7
PB - ROYAL SOC CHEMISTRY
SN - 1473-0197
AB - An integrated approach relying on a microsystem is introduced to easily extract, from a single experiment and with a global robust bi-exponential fit, an extensive set of thermodynamic, kinetic, and diffusion parameters governing associations in solution.
DO - 10.1039/b805412f
UR - http://www.dx.doi.org/10.1039/b805412f
ER -