27. Bühlmann, P., Pretsch, E., & Bakker, E. (1998). Carrier-based ion-selective electrodes and
bulk optodes. 2. Ionophores for potentiometric and optical sensors. Chemical Reviews, 98
(4), 1593–1688.
28. Cammann, K., Ahlers, B., Henn, D., Dumschat, C., & Shulga, A. A. (1996). New sensing
principles for ion detection. Sensor Actuat B-Chem, 35, 26–31.
29. Dzyadevych, S. V., Soldatkin, A. P., Arkhypova, V. N., Anna, V., Chovelon, J. M.,
Georgiou, C. A., & Jaffrezic-Renault, N. (2005). Early-warning electrochemical biosensor
system for environmental monitoring based on enzyme inhibition. Sensors and Actuators B:
Chemical, 105(1), 81–87.
30. Achterberg, E. P., & Braungardt, C. (1999). Stripping voltammetry for the determination of
trace metal speciation and in-situ measurements of trace metal distributions in marine waters.
Analytica Chimica Acta, 400, 381–397.
31. Tercier-Waeber, M. L., Belmont-Hébert, C., & Buffle, J. (1998). Real-time continuous Mn
(II) monitoring in lakes using a novel voltammetric in situ profiling system.
Oceans’98-Conference Proceedings, 32(10), 1515–1521.
32. Richter, E. M., Pedrotti, J. J., & Angnes, L. (2003). Square wave quantification of lead in
rainwater with disposable gold electrodes without removal of dissolved oxygen.
Electroanalysis, 15, 1871–1877.
33. Feeney, R., & Kounaves, S. P. (2002). Voltammetric measurement of arsenic in natural
waters. Talanta, 58, 23–31.
34. Gong, J., Zhou, T., Song, D., Zhang, L., & Hu, X. (2010). Stripping Voltammetric Detection
of Mercury(II) Based on a Bimetallic Au-Pt Inorganic-Organic Hybrid Nanocomposite
Modified Glassy Carbon Electrode. Analytical Chemistry, 82, 567–573.
35. Mikkelsen, O., & Schroder, K. H. (2004). Voltammetric monitoring of bivalent iron in
waters and effluents, using a dental amalgam sensor electrode. Some preliminary results.
Electroanalysis, 16, 386–390.
36. Mikkelsen, O., Skogvold, S. M., & Schroder, K. H. (2005). Continouos heavy metal
monitoring system for application in river and seawater. Electroanalysis, 17, 431–439.
37. Colombo, C., van den Berg, C. M. G., & Daniel, A. (1997). A flow cell for on-line
monitoring of metals in natural waters by voltammetry with a mercury drop electrode.
Analytica Chimica Acta, 346, 101–111.
38. Grabarczyk, M. (2008). A catalytic adsorptive stripping voltammetric procedure for trace
determination of Cr (VI) in natural samples containing high concentrations of humic
substances. Analytical and Bioanalytical Chemistry, 390, 979–986.
39. Hutton, E. A., Hocevar, S. B., Ogorevc, B., & Smyth, M. R. (2003). Bismuth film electrode
for simultaneous adsorptive stripping analysis of trace cobalt and nickel using constant
current chronopotentiometric and voltammetric protocol. Electrochemistry Communications,
5, 765–769.
40. Lin, L., Lawrence, N. S., Thongngamdee, S., Wang, J., & Lin, Y. H. (2005). Catalytic
adsorptive stripping determination of trace chromium(VI) at the bismuth film electrode.
Talanta, 65, 144–148.
41. Lin, L., Thongngamdee, S., Wang, J., Lin, Y. H., Sadik, O. A., & Ly, S. Y. (2005).
Adsorptive stripping voltammetric measurements of trace uranium at the bismuth film
electrode. Analytica Chimica Acta, 535, 9–13.
42. Guzsvany, V., Kadar, M., Papp, Z., Bjelica, L., Gaal, F., & Toth, K. (2008). Monitoring of
photocatalytic degradation of selected neonicotinoid insecticides by cathodic voltammetry
with a bismuth film electrode. Electroanalysis, 20, 291–300.
43. Gooding, J. J., Shein, J., & Lai, L. M. H. (2009). Using nanoparticle aggregation to give an
ultrasensitive amperometric metal ion sensor. Electrochemistry Communications, 11, 2015–
2018.
44. Toniolo, R., Comisso, N., Bontempelli, G., Schiavon, G., & Sitran, S. (1998). A Novel
Assembly for Perfluorinated Ion‐Exchange Membrane‐Based Sensors Designed for
Electroanalytical Measurements in Nonconducting Media. Electroanalysis: An
180
A. Ojha
bulk optodes. 2. Ionophores for potentiometric and optical sensors. Chemical Reviews, 98
(4), 1593–1688.
28. Cammann, K., Ahlers, B., Henn, D., Dumschat, C., & Shulga, A. A. (1996). New sensing
principles for ion detection. Sensor Actuat B-Chem, 35, 26–31.
29. Dzyadevych, S. V., Soldatkin, A. P., Arkhypova, V. N., Anna, V., Chovelon, J. M.,
Georgiou, C. A., & Jaffrezic-Renault, N. (2005). Early-warning electrochemical biosensor
system for environmental monitoring based on enzyme inhibition. Sensors and Actuators B:
Chemical, 105(1), 81–87.
30. Achterberg, E. P., & Braungardt, C. (1999). Stripping voltammetry for the determination of
trace metal speciation and in-situ measurements of trace metal distributions in marine waters.
Analytica Chimica Acta, 400, 381–397.
31. Tercier-Waeber, M. L., Belmont-Hébert, C., & Buffle, J. (1998). Real-time continuous Mn
(II) monitoring in lakes using a novel voltammetric in situ profiling system.
Oceans’98-Conference Proceedings, 32(10), 1515–1521.
32. Richter, E. M., Pedrotti, J. J., & Angnes, L. (2003). Square wave quantification of lead in
rainwater with disposable gold electrodes without removal of dissolved oxygen.
Electroanalysis, 15, 1871–1877.
33. Feeney, R., & Kounaves, S. P. (2002). Voltammetric measurement of arsenic in natural
waters. Talanta, 58, 23–31.
34. Gong, J., Zhou, T., Song, D., Zhang, L., & Hu, X. (2010). Stripping Voltammetric Detection
of Mercury(II) Based on a Bimetallic Au-Pt Inorganic-Organic Hybrid Nanocomposite
Modified Glassy Carbon Electrode. Analytical Chemistry, 82, 567–573.
35. Mikkelsen, O., & Schroder, K. H. (2004). Voltammetric monitoring of bivalent iron in
waters and effluents, using a dental amalgam sensor electrode. Some preliminary results.
Electroanalysis, 16, 386–390.
36. Mikkelsen, O., Skogvold, S. M., & Schroder, K. H. (2005). Continouos heavy metal
monitoring system for application in river and seawater. Electroanalysis, 17, 431–439.
37. Colombo, C., van den Berg, C. M. G., & Daniel, A. (1997). A flow cell for on-line
monitoring of metals in natural waters by voltammetry with a mercury drop electrode.
Analytica Chimica Acta, 346, 101–111.
38. Grabarczyk, M. (2008). A catalytic adsorptive stripping voltammetric procedure for trace
determination of Cr (VI) in natural samples containing high concentrations of humic
substances. Analytical and Bioanalytical Chemistry, 390, 979–986.
39. Hutton, E. A., Hocevar, S. B., Ogorevc, B., & Smyth, M. R. (2003). Bismuth film electrode
for simultaneous adsorptive stripping analysis of trace cobalt and nickel using constant
current chronopotentiometric and voltammetric protocol. Electrochemistry Communications,
5, 765–769.
40. Lin, L., Lawrence, N. S., Thongngamdee, S., Wang, J., & Lin, Y. H. (2005). Catalytic
adsorptive stripping determination of trace chromium(VI) at the bismuth film electrode.
Talanta, 65, 144–148.
41. Lin, L., Thongngamdee, S., Wang, J., Lin, Y. H., Sadik, O. A., & Ly, S. Y. (2005).
Adsorptive stripping voltammetric measurements of trace uranium at the bismuth film
electrode. Analytica Chimica Acta, 535, 9–13.
42. Guzsvany, V., Kadar, M., Papp, Z., Bjelica, L., Gaal, F., & Toth, K. (2008). Monitoring of
photocatalytic degradation of selected neonicotinoid insecticides by cathodic voltammetry
with a bismuth film electrode. Electroanalysis, 20, 291–300.
43. Gooding, J. J., Shein, J., & Lai, L. M. H. (2009). Using nanoparticle aggregation to give an
ultrasensitive amperometric metal ion sensor. Electrochemistry Communications, 11, 2015–
2018.
44. Toniolo, R., Comisso, N., Bontempelli, G., Schiavon, G., & Sitran, S. (1998). A Novel
Assembly for Perfluorinated Ion‐Exchange Membrane‐Based Sensors Designed for
Electroanalytical Measurements in Nonconducting Media. Electroanalysis: An
180
A. Ojha
