Biomedical Engineering Reference
In-Depth Information
6. Arshady R, Mosbach K (1981) Synthesis of substrate-selective polymers by host-guest
polymerization. Makromol Chem 182:687-692
7. Shea KJ, Dougherty TK (1986) Molecular recognition on synthetic amorphous surfaces: the
influence of functional group positioning on the effectiveness of molecular recognition. J Am
Chem Soc 108:1091-1093
8. Shea KJ, Sasaki DY (1989) On the control of microenvironment shape of functionalized
network polymers prepared by template polymerization. J Am Chem Soc 111:3442-3444
9. Ramstrom O, Andersson LI, Mosbach K (1993) Recognition sites incorporating both pyridinyl
and carboxy functionalities prepared by molecular imprinting. J Org Chem 58:7562-7564
10. Dickert FL, Hayden O (1999) Molecular imprinting in chemical sensing. Trends Anal Chem
18:192-198
11. Dickert FL, Lieberzeit PA, Achatz P et al (2004) QCM array for on-line-monitoring of
composting procedures. Analyst 129:432-437
12. Piletsky SA, Alcock S, Turner AF (2001) Molecular imprinting: at the edge of the third
millennium. Trends Biotechnol 19:9-12
13. Vlatakis G, Andersson LI, Muller R et al (1993) Drug assay using antibody mimics made by
molecular imprinting. Nature 361:645-647
14. Haupt K, Mosbach K (1998) Plastic antibodies: developments and applications. Trends
Biotechnol 16:468-478
15. Haupt K, Mosbach K (1999) Molecularly imprinted polymers in chemical and biological
sensing. Biochem Soc Trans 27:344-350
16. Haupt K, Mosbach K (2000) Molecularly imprinted polymers and their use in biomimetic
sensors. Chem Rev 100:2495-2504
17. Ramstr
om O, Mosbach K (1999) Synthesis and catalysis by molecularly imprinted materials.
Curr Opin Chem Biol 3:759-764
18. Wulff G (2002) Enzyme-like catalysis by molecularly imprinted polymers. Chem Rev
102:1-27
19. Dickert FL, Forth P, Fischerauer G et al (1998) SAW devices-sensitivity enhancement in going
from 80 MHz to 1 GHz. Sens Actuators B Chem 46:120-125
20. di Natale C, Paolesse R, Macagnano A et al (2004) Sensitivity-selectivity balance in mass
sensors: the case of metalloporphyrins. J Mater Chem 14:1281-1287
21. Dickert FL, Lieberzeit PA (2000) Solid-state sensors for field measurements of gases and
vapours. In: Meyers RA (ed) Encyclopaedia of analytical chemistry. Wiley, Chichester, pp
3831-3855
22. Janata J (2010) Principles of chemical sensors. Springer, Dordrecht
23. Piletsky SA, Kurys YI, Rachkov AE et al (1994) Formation of matrix polymers sensitive to
aniline and phenol. Russ J Electrochem 30:990-992
24. Vinokurov IA (1992) A new kind of redox sensor based on conducting polymer films. Sens
Actuators B 10:31-35
25. Cabanilla S, Ebarvia BS, Sevilla F (2003) Piezoelectric biomimetic sensor for caffeine based
on electrosynthesized polypyrrole. AsiaSENSE SENSOR 105-109
26. Jakoby B, Ismail GM, Byfield MP et al (1999) A novel molecularly imprinted thin film applied
to a love wave gas sensor. Sens Actuators A 76:93-97
27. Knez M, Sumser M, Bittner AM et al (2004) Spatially selective nucleation of metal clusters on
the tobacco mosaic virus. Adv Funct Mater 14:116-124
28. Lieberzeit PA, Glanznig G, Leidl A et al (2006) Ceramic materials for mass-sensitive sensors-
detection of VOCs and monitoring oil degradation. Adv Sci Technol 45:1799-1802
29. Dickert FL, Greibl W, Rohrer A et al (2001) Sol-gel-coated quartz crystal microbalances for
monitoring automotive oil degradation. Adv Mater 13:1327-1330
30. Dickert FL, Forth P, Lieberzeit PA et al (2000) Quality control of automotive engine oils with
mass-sensitive chemical sensors-QCMs and molecularly imprinted polymers. Fresenius J Anal
Chem 366:802-806
31. Aherne A, Alexander C, Payne MJ et al (1996) Bacteria-mediated lithography of polymer
surfaces. J Am Chem Soc 118:8771-8772
Search WWH ::




Custom Search