References
Lewis EN, Treado PJ, Reeder RC, Story GM, Dowrey AE, Marcott C, Levin IW (1995) Anal Chem 67:3377
Snively CM, Oskarsdottir G, Lauterbach J (2001) Catal Today 67:357–368
Snively CM, Oskarsdottir G, Lauterbach J (2001) Angew Chem Int Ed 40:3028–3030
Kubanek P, Busch O, Thomson S, Schmidt HW, Schuth F (2004) J Comb Chem 6:420–425
Fernandez DC, Bhargava R, Hewitt SM, Levin IW (2005) Nat Biotechnol 23:469–474
Bhargava R, Fernandez DC, Hewitt SM, Levin IW (2006) Biochim. Biophys Acta 1758:830–845
Chan KLA, Kazarian SG, Vassou D, Gionis V, Chryssikos GD (2007) Vib Spectrosc 43:221–226
Burka EM, Curbelo R (2000) US Patent 6,141,100
Chan KLA, Kazarian SG (2005) J Comb Chem 7:185–189
Chan KLA, Kazarian SG (2006) J Comb Chem 8:26–31
Chan KLA, Kazarian SG (2006) Lab Chip 6:864–870
Whitesides GM (2006) Nature 442:368–373
Janasek D, Franzke J, Manz A (2006) Nature 442:374–380
de Mello AJ (2006) Nature 442:394–402
Jakeway SC, deMello AJ (2001) Analyst 126:1505–1510
Hofmann O, Voirin G, Niedermann P, Manz A (2002) Anal Chem 74:5243–5250
Chan KLA, Kazarian SG (2007) Appl Spectrosc 61:48–54
Acknowledgements
Work on applications of spectroscopic imaging to high-throughput analysis at Imperial College, London, was supported by grant GR/T08746/01 from EPSRC. The author thanks Dr K.L.A. Chan for his help and advice and Dr O. Hofmann for his help in preparation of PDMS grids.
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Kazarian, S.G. Enhancing high-throughput technology and microfluidics with FTIR spectroscopic imaging. Anal Bioanal Chem 388, 529–532 (2007). https://doi.org/10.1007/s00216-007-1193-3
Received:
Revised:
Accepted:
Published:
Issue Date:
DOI: https://doi.org/10.1007/s00216-007-1193-3