Factor H: 9 –
citaciones totales: 630, excluyendo autocitaciones
1.
"Amperometric
biosensor for the quantification of gentisic acid using polyphenol oxidase
modified carbon paste electrode". M. L. Pedano and G.
A. Rivas. Talanta, 2000, 53, 485 -
495. ISSN:
0039-9140.
2.
“Kinetic
fluorimetric determination of the antineoplastic methotrexate (MTX) in human
serum”. A. Espinosa-Mansilla, I.D.
Meras, A. Z. Madera, L. Pedano, C. Ferreira. Journal of Pharmaceutical and
Biomedical Analysis, 2002, 29(5), 851-858. ISSN: 0731-7085.
3.
"Immobilization of DNA on
glassy carbon electrodes for the development of affinity biosensors". M. L. Pedano and G. A. Rivas. Biosensors and Bioelectronics, 2003, 18, 269-277. ISSN: 0956-5663 (39
citaciones).
4.
“Adsorption
and electrooxidation of nucleic acids at carbon nanotubes paste electrodes”. M. L.
Pedano and G. A. Rivas. Electrochemistry
Communications, 2004, 6, 10-16. ISSN: 1388-2481. (168
citaciones)
5.
“Layer-by-layer deposition of
chitosan derivatives and DNA on gold surfaces for the development of
biorecognition layers.” M. L. Pedano, L. Martell, J. Desbrières, E.
Defrancq, P. Dummy, L. Coche-Guerente, P. Labbé, J.-F.
Legrand, R.
Calemczuk and G. A. Rivas. Analytical Letters, 2004, 37 (11), 2235–2250. Print ISSN:
0003-2719. Online
ISSN: 1532-236X. by Taylor & Francis (London, England).
6.
“Immobilization of DNA at glassy carbon electrodes. A
critical study of the adsorption layer”. M. L. Pedano and G. A. Rivas. Sensors,
2005, 5, 424-447. ISSN 1424-8220
by MDPI (Basel, Switzerland).
7.
“Electrochemical biosensors
for sequence-specific DNA detection”. G. A. Rivas, M. L. Pedano and N. F. Ferreyra. Analytical
Letters, 2005, 38, 2653-2703. Print ISSN: 0003-2719, Online
ISSN: 1532-326X.
8. “Carbon nanotubes paste electrodes. A new alternative for the
development of electrochemical sensors.” G. A. Rivas, M. D. Rubianes, M. L. Pedano,
N. F. Ferreyra, G. L. Luque, M. C. Rodriguez, S. A. Miscoria. Electroanalysis 2007, 19 (7-8), 823 – 831. Print ISSN: 1040-0397, Online ISSN: 1521-4109, Alemania (49 citaciones)
9.
“Carbon nanotubes for electrochemical
biosensing.” Gustavo A. Rivas, M. D. Rubianes, M. C. Rodríguez, N.
F. Ferreyra, G. L. Luque, M. L. Pedano, S. A. Miscoria, C. Parrado. Talanta, 2007, 74, 291–307. ISSN:
0039-9140. (203 citaciones)
10. “Characterization of the DNA layers adsorbed on
glassy carbon electrodes”. M. L. Pedano, L. I. Pietrasanta, M. López Teijelo and G. A. Rivas. Electroanalysis 2008, 20 (7), 739 – 749. Print ISSN:
1040-0397, Online
ISSN: 1521-4109.
11. “Periodic electric
field enhancement along gold rods with nanogaps”. M.
L. Pedano, S. Li, G. C. Schatz, and
C. A. Mirkin. Angewandte Chemie
International Edition 2010, 49,
78 –82. (Carátula/frontispicio de la sección comunicaciones). Print ISSN: 1433-7851, Online ISSN: 1521-3773.
12. “Gap structure effects
on SERS intensities for gold gapped-rods”. Shuzhou Li, María L. Pedano, Gilbert Chang, Chad A. Mirkin, and
George C. Schatz. Nano Letters 2010,
10, 1722–1727. Print ISSN: 1530-6984. (47
citaciones)
13. “Adsorption and electrooxidation of DNA at
glassy carbon paste electrodes”. M. L. Pedano and G. A. Rivas. Analytical
Letters 2010, 43, 1703- 1712. Print ISSN: 0003-2719, Online ISSN: 1532-326X.
14. “Complementary capillary and mechanically induced
alignment strategies for the assembly of nanorods with submicron diameters”. J. K. Lim, B. Y. Lee, M. L. Pedano, A. J.
Senesi, J-W. Jang, W. Shim, S. Hong, and Chad A. Mirkin. Small 2010, 6, 1736-1740. DOI:
10.1002/smll.201000815. Online ISSN: 1613-6829.
15. “Dispersion of carbon nanotubes in polyhistidine. Characterization and analytical
applications for the simultaneous detection of dopamine or uric acid in
presence of ascorbic acid”. P.
D. Dalmasso, M. L. Pedano,* G. A. Rivas.* Analytica
Chimica Acta 2012, 710, 58-64. DOI 10.1016/j.aca.2011.10.050
16. “Dispersion of carbon
nanotubes with dopamine-functionalized polyethyleneimine. Electroanalytical
applications towards NADH sensors”. A. Gasnier, M. L. Pedano, F. Gutierrez, G. A. Rivas*, M. D.
Rubianes*. Electrochimica Acta 2012,
71, 73-81. doi:10.1016/j.electacta.2012.03.073.
17. “Supramolecular
architecture based on the self-assembling of multiwall carbon nanotubes
dispersed in polyhistidine and glucose oxidase: characterization and analytical
applications for glucose biosensing” P. D. Dalmasso, M. L. Pedano*, G. A. Rivas.* Biosensors and Bioelectronics 2013, 39, 76–81. http://dx.doi.org/10.1016/j.bios.2012.06.041
18. “Electrochemical
determination of ascorbic acid and paracetamol in pharmaceutical formulations
using a glassy carbon electrode modified with multi-wall carbon nanotubes
dispersed in polyhistidine” P.
D. Dalmasso, M. L. Pedano*, G. A. Rivas.* Sens. Actuators B: Chem. 2012, 173,
732-736. http://dx.doi.org/10.1016/j.snb.2012.07.087
19.
“Graphe paste electrode: electrochemical behavior and
analytical applications for the quantification of NADH”. A. Gasnier, M. L. Pedano, M. D. Rubianes,*
Gustavo A. Rivas* (aceptado 26 Septiembre 2012), Sensors
and Actuators B: Chem. 2013, 176,
921-926. http://www.sciencedirect.com/science/article/pii/S0925400512010052
20.
“Electrochemical behavior and
analytical applications of (bio)sensing platforms based on the use of
multi-walled carbon nanotubes dispersed in different polymers. A
critical comparison”. Emiliano
Primo; Fabiana Gutierrez; Guillermina Luque; Pablo Dalmasso; Aurelien Gasnier;
Yamile Jalit; Mónica Moreno; María Bracamonte; Marcos Eguilaz Rubio; María
Pedano; Marcela Rodríguez; Nancy Ferreyra; María Rubianes; Soledad Bollo;
Gustavo A. Rivas*. Analytica Chimica
Acta 2013. Aceptado (ACA-13-1480).
21.
“Multiwall Carbon Nanotubes dispersed in
polyhistidine: A selective platform for Cu2+ quantification”. P. D. Dalmasso, M. L. Pedano*, G. A. Rivas.* Talanta 2013. En redacción.
22. “Single wall carbon nanotubes covalently modified with polylisine for the
development of electrochemical biosensors for glucose.”A. Gasnier,a M. L. Pedano,a
M. D. Rubianes,a J. M.Gonzalez-Dominguez,c A.
Ansón-Casaos,c J. Hernández-Ferrer,c M. T. Martínez,c G. A. Rivas.a
Biosensors and Biolelectronics. En
redacción.
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