63. Hallam, P. M., Kampouris, D. K., Kadara, R. O., Jenkinson, N., & Banks, C. E. (2010).
Nickel oxide screen printed electrodes for the sensing of hydroxide ions in aqueous
solutions. Analytical Methods, 2, 1152–1155.
64. Zheng, R. J., Fang, Y. M., Qin, S. F., Song, J., Wu, A. H., & Sun, J. J. (2011). A dissolved
oxygen sensor based on hot electron induced cathodic electrochemiluminescence at a
disposable CdS modified screen-printed carbon electrode. Sensors and Actuators B:
Chemical, 157(2), 488–493.
65. Sljukic, B. R., Kadara, R. O., & Banks, C. E. (2011). Disposable manganese oxide screen
printed electrodes for electroanalytical sensing. Analytical Methods, 3, 105–109.
66. Brugnera, M. F., & Trindade, M. A. G. (2010). Detection of bisphenol a on a screen-printed
carbon electrode in CTAB micellar medium. Analytical Letters, 43, 2823–2836.
67. Zhang, D., Peng, Y., Qi, H. L., Gao, Q., & Zhang, C. X. (2009). Application of
multielectrode array modified with carbon nanotubes to simultaneous amperometric
determination of dihydroxybenzene isomers. Sensor and Actuators B-Chemical, 136, 113–
121.
68. Merkoci, A., Anik, U., Cevik, S., Cubukcu, M., & Guix, M. (2010). Bismuth film combined
with screen-printed electrode as biosensing platform for phenol detection. Electroanalysis,
22, 1429–1436.
69. Akyilmaz, E., Kozgus, O., Turkmen, H., & Cetinkaya, B. (2010). A mediated polyphenol
oxidase biosensor immobilized by electropolymerization of 1,2-diamino benzene.
Bioelectrochemistry, 78, 135–140.
70. Alkasir, R. S., Ganesana, M., Won, Y. H., Stanciu, L., & Andreescu, S. (2010). Enzyme
functionalized nanoparticles for electrochemical biosensors: A comparative study with
applications for the detection of bisphenol A. Biosensors & Bioelectronics, 26, 43–49.
71. Li, D., Li, D. W., Fossey, J. S., & Long, Y. T. (2010). Portable surface-enhanced Raman
scattering sensor for rapid detection of aniline and phenol derivatives by on-site electrostatic
preconcentration. Analytical Chemistry, 82, 9299–9305.
72. Gan, N., Yang, X., Xie, D. H., Wu, Y. Z., & Wen, W. G. (2010). A disposable
organophosphorus pesticides enzyme biosensor based on magnetic composite nano-particles
modified screen printed carbon electrode. Sensors, 10, 625–638.
73. Choi, J.-Y., Seo, K., Cho, S.-R., Oh, J.-R., Kahng, S.-H., & Park, J. (2001). Screen-printed
anodic stripping voltammetric sensor containing HgO for heavy metal analysis. Analytica
Chimica Acta, 443, 241–247.
74. Svancara, I., Prior, C., Hocevar, S. B., & Wang, J. (2010). A decade with bismuth-based
electrodes in electroanalysis. Electroanalysis, 22, 1405–1420.
75. Economou, A. (2005). Bismuth-film electrodes: Recent developments and potentialities for
electroanalysis. TrAC-Trend Anal Chem, 24, 334–340.
76. Kokkinos, C., & Economou, A. (2008). Stripping analysis at bismuth-based electrodes.
Current Analytical Chemistry, 4, 183–190.
77. Mandil, A., & Amine, A. (2009). Screen-printed electrodes modified by bismuth film for
thedetermination of released lead in Moroccan ceramics. Analytical Letters, 42, 1245–1257.
78. Arduini, F., Majorani, C., Amine, A., Moscone, D., & Palleschi, G. (2011). Hg
2+ detection
by measuring thiol groups with a highly sensitive screen-printed electrode modified with a
nanostructured carbon black film. Electrochimica Acta, 56, 4209–4215.
79. Zaouak, O., Authier, L., Cugnet, C., Castetbon, A., & Potin-Gautier, M. (2010).
Electroanalytical device for cadmium speciation in waters. Part 1: Development and
characterization of a reliable screen-printed sensor. Electroanalysis, 22, 1151–1158.
80. Gong, J. M., Zhou, T., Song, D. D., & Zhang, L. Z. (2010). Monodispersed Au nanoparticles
decorated graphene as an enhanced sensing platform for ultrasensitive stripping voltammetric detection of mercury(II). Sens Actuators B-Chem, 150, 491–497.
81. Hossain, S. M., Luckham, R. E., McFadden, M. J., & Brennan, J. D. (2009). Reagentless
bidirectional lateral flow bioactive paper sensors for detection of pesticides in beverage and
food samples. Analytical Chemistry, 81, 9055–9064.
182
A. Ojha
Nickel oxide screen printed electrodes for the sensing of hydroxide ions in aqueous
solutions. Analytical Methods, 2, 1152–1155.
64. Zheng, R. J., Fang, Y. M., Qin, S. F., Song, J., Wu, A. H., & Sun, J. J. (2011). A dissolved
oxygen sensor based on hot electron induced cathodic electrochemiluminescence at a
disposable CdS modified screen-printed carbon electrode. Sensors and Actuators B:
Chemical, 157(2), 488–493.
65. Sljukic, B. R., Kadara, R. O., & Banks, C. E. (2011). Disposable manganese oxide screen
printed electrodes for electroanalytical sensing. Analytical Methods, 3, 105–109.
66. Brugnera, M. F., & Trindade, M. A. G. (2010). Detection of bisphenol a on a screen-printed
carbon electrode in CTAB micellar medium. Analytical Letters, 43, 2823–2836.
67. Zhang, D., Peng, Y., Qi, H. L., Gao, Q., & Zhang, C. X. (2009). Application of
multielectrode array modified with carbon nanotubes to simultaneous amperometric
determination of dihydroxybenzene isomers. Sensor and Actuators B-Chemical, 136, 113–
121.
68. Merkoci, A., Anik, U., Cevik, S., Cubukcu, M., & Guix, M. (2010). Bismuth film combined
with screen-printed electrode as biosensing platform for phenol detection. Electroanalysis,
22, 1429–1436.
69. Akyilmaz, E., Kozgus, O., Turkmen, H., & Cetinkaya, B. (2010). A mediated polyphenol
oxidase biosensor immobilized by electropolymerization of 1,2-diamino benzene.
Bioelectrochemistry, 78, 135–140.
70. Alkasir, R. S., Ganesana, M., Won, Y. H., Stanciu, L., & Andreescu, S. (2010). Enzyme
functionalized nanoparticles for electrochemical biosensors: A comparative study with
applications for the detection of bisphenol A. Biosensors & Bioelectronics, 26, 43–49.
71. Li, D., Li, D. W., Fossey, J. S., & Long, Y. T. (2010). Portable surface-enhanced Raman
scattering sensor for rapid detection of aniline and phenol derivatives by on-site electrostatic
preconcentration. Analytical Chemistry, 82, 9299–9305.
72. Gan, N., Yang, X., Xie, D. H., Wu, Y. Z., & Wen, W. G. (2010). A disposable
organophosphorus pesticides enzyme biosensor based on magnetic composite nano-particles
modified screen printed carbon electrode. Sensors, 10, 625–638.
73. Choi, J.-Y., Seo, K., Cho, S.-R., Oh, J.-R., Kahng, S.-H., & Park, J. (2001). Screen-printed
anodic stripping voltammetric sensor containing HgO for heavy metal analysis. Analytica
Chimica Acta, 443, 241–247.
74. Svancara, I., Prior, C., Hocevar, S. B., & Wang, J. (2010). A decade with bismuth-based
electrodes in electroanalysis. Electroanalysis, 22, 1405–1420.
75. Economou, A. (2005). Bismuth-film electrodes: Recent developments and potentialities for
electroanalysis. TrAC-Trend Anal Chem, 24, 334–340.
76. Kokkinos, C., & Economou, A. (2008). Stripping analysis at bismuth-based electrodes.
Current Analytical Chemistry, 4, 183–190.
77. Mandil, A., & Amine, A. (2009). Screen-printed electrodes modified by bismuth film for
thedetermination of released lead in Moroccan ceramics. Analytical Letters, 42, 1245–1257.
78. Arduini, F., Majorani, C., Amine, A., Moscone, D., & Palleschi, G. (2011). Hg
2+ detection
by measuring thiol groups with a highly sensitive screen-printed electrode modified with a
nanostructured carbon black film. Electrochimica Acta, 56, 4209–4215.
79. Zaouak, O., Authier, L., Cugnet, C., Castetbon, A., & Potin-Gautier, M. (2010).
Electroanalytical device for cadmium speciation in waters. Part 1: Development and
characterization of a reliable screen-printed sensor. Electroanalysis, 22, 1151–1158.
80. Gong, J. M., Zhou, T., Song, D. D., & Zhang, L. Z. (2010). Monodispersed Au nanoparticles
decorated graphene as an enhanced sensing platform for ultrasensitive stripping voltammetric detection of mercury(II). Sens Actuators B-Chem, 150, 491–497.
81. Hossain, S. M., Luckham, R. E., McFadden, M. J., & Brennan, J. D. (2009). Reagentless
bidirectional lateral flow bioactive paper sensors for detection of pesticides in beverage and
food samples. Analytical Chemistry, 81, 9055–9064.
182
A. Ojha
