Biomedical Engineering Reference
In-Depth Information
12. Liu, Z.M., Liu, Y.L., Yang, H.F., Yang, Y., Shen, G.L., Yu, R.Q. (2005). A phenol biosensor based
on immobilizing tyrosinase to modified core-shell magnetic nanoparticles supported at a car-
bon paste electrode. Anal. Chim. Acta 533(1): 3-9.
13. Chung, S.H., Hoffmann, A., Guslienko, K., Bader, S.D., Liu, C., Kay, B., Makowski, L., Chen,
L. (2005). J. Appl. Phys. 97(10): 10R101 Part 3.
14. Zhao, G., Feng, J.J., Zhang, Q.L., Li, S.P., Chen, H.Y. (2005). Synthesis and characterization of
Prussian Blue modified magnetite nanoparticles and its application to the electrocatalytic
reduction of H 2 O 2 . Chem. Mater. 17(12): 3154-3159.
15. Brady, S., Lau, K.T., Megill, W., Wallace, G.G., Diamond, D. (2005). The development and char-
acterization of conducting polymeric sensing devices. Synth. Met. 154: 25-28.
16.
Carrara, S., Bavastrello, V., Ricci, D., Stura, E., Nicolini. C. (2005). Improved nanocomposite
materials for biosensor applications investigated by electrochemical impedance spectroscopy.
Sens. Actuat. B-Chem. 109(2): 221-226.
17.
Fangming, D.U., Fischer, J.E., Winey, K.I. (2003). Coagulation method for preparing single
wall carbon nanotubes/poly(methyl methacrylate) composites and their modulus, electrical
conductivity and thermal stability. J. Polym. Sci. Part B: Polym. Phys. 41: 3333-3338.
18.
Chang, B.H., Liu, Z.Q., Sun, L.F., Tang, D.S., Zhou, W.Y., Wang, G., Qian, L.X., Xie, S.S., Fen,
J.H., Wan, M.X. (2000). Conductivity and magnetic susceptibility of nanotube/polypyrrole
nanocomposites. J. Low Temp. Phys. 119(1/2): 41-48.
19.
Laxminarayana, K., Jalili, N. (2005). Functional nano-tube based textiles: pathway to next
generation fabrics with enhanced sensing capabilities. Textile Res. J. Sept.: 670-681.
20.
Sawicka, K., Gouma, P., Simon, S. (2005). Electrospun biocomposite nanofibers for urea
biosensing. Sens. Actuat. B-Chem. 108(1-2): 585-588.
21.
Ionescu, R.E., Abu-Rabeah, K., Cosnier, S., Marks, R. (2005). Improved enzyme retention from
an electropolymerized polypyrrole-alginate matrix in the development of biosensors.
Electrochem. Comm. 7(12): 1277-1282.
22.
Li, G.T., Bhosale, S., Tao, S.Y., Bhosale, S., Fuhrhop, J.H. (2005). Conducting polythiophenes
with a broad spectrum of reactive groups. J. Polym. Sci. Part A-Polym. Chem. 43(19): 4547-4558.
23.
Syritski, V., Gyurcsanyi, R.E., Opik, A., Toth, K. (2005). Synthesis and characterization of
inherently conducting polymers by using scanning electrochemical microscopy and electro-
chemical quartz crystal microbalance. Synth. Metals 152(1-3): 133-136.
24.
Ngamna, O., Morrin, A., Moulton, S.E., Killard, A.J., Smyth, M.R., Wallace, G.G. (2005). An
HRP based biosensor using sulphonated polyaniline. Synth. Metals 153(1-3): 185-188.
25.
Kros, A., Sommerdijk, N.A., Nolte, R.J.M. (2005). Poly(pyrrole) versus poly (3,4-ethylene-
dioxythiophene): implications for biosensor applications. Sens. Actuat. B-Chem. 106(1): 289-295.
26.
Brahim, S., Narinesingh, D., Guiseppi-Elie, A. (2002). Bio-smart materials: kinetics of immo-
bilized enzymes in p (HEMA)/ p (pyrrole) hydrogels in amperometric biosensors. Macromol.
Symp. 186: 63-73.
27.
Constable, E.C., Harverson, P., Oberholzer, M. (1996). Convergent and divergent approaches
to metallocentric metallodendrimers. J Chem. Soc. Chem. Commun. 15: 1821-1822.
28.
Wendland, M.S., Zimmerman, S.C. (1999). Synthesis of cored dendrimers J. Am. Chem. Soc.
121(6): 1389-1390.
29.
Maciejewski, M. (1982). Concepts of trapping topologically by shell molecules. J. Macromol.
Sci. Chem. A17(4): 689-703.
30.
Newkome, G.R., Moorfield, C.N., Vogtle, F. (1996). Dendritic Molecules: Concepts, Synthesis,
Perspectives . VCH, Weinheim.
31.
Yoon, H.C., Kim, H.S. (2000). Multilayered assembly of dendrimers with enzymes on gold:
thickness controlled biosensing layer. Anal. Chem. 72: 922-926.
32.
Casado, M.A., Hack, V., Camerano, J.A., Ciriano, M.A., Teiel, C., Oro, L.A. (2005).
Unprecedented hybrid scorpionate/phosphine ligand able to be anchored to carbosilane den-
drimers. Inorgan. Chem. 44(25): 9122-9124.
33.
Diaz, I., Garcia, B., Alonso, B., Casado, C.M., Moran, M., Losada, J., Perez-Pariente, J. (2003).
Ferrocenyl dendrimers incorporated into mesoporous silica: new hybrid redox-active materi-
als. Chem. Mater. 15(5): 1073-1079.
34.
Takada, K., Diaz, D.J., Abruna, H.D., Cuadrado, I., Casado, C., Alonso, B., Moran, M., Losada, J.
(1997). Redox-active ferrocenyl dendrimers: thermodynamics and kinetics of adsorption, insitu
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