390
Views
28
CrossRef citations to date
0
Altmetric
ELECTROCHEMISTRY

Electrochemical Characterization of and Stripping Voltammetry at Screen Printed Electrodes Modified with Different Brands of Multiwall Carbon Nanotubes and Bismuth Films

, , &
Pages 395-407 | Received 23 Jan 2011, Accepted 12 Apr 2011, Published online: 16 Mar 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Megha A. Deshmukh, Mahendra D. Shirsat, Almira Ramanaviciene & Arunas Ramanavicius. (2018) Composites Based on Conducting Polymers and Carbon Nanomaterials for Heavy Metal Ion Sensing (Review). Critical Reviews in Analytical Chemistry 48:4, pages 293-304.
Read now
İsa Albayrak, Aslı Erkal, Samet Yavuz, İshak Afşin Kariper, İbrahim Ender Mülazımoğlu & Zafer Üstündağ. (2017) Isophtalic acid terminated graphene oxide modified glassy carbon nanosensor electrode: Cd2+ and Bi3+ analysis in tap water and milk samples. International Journal of Food Properties 20:7, pages 1558-1568.
Read now
Xiangheng Niu, Minbo Lan, Hongli Zhao, Chen Chen, Yuxiu Li & Xiang Zhu. (2013) Review: Electrochemical Stripping Analysis of Trace Heavy Metals Using Screen-Printed Electrodes. Analytical Letters 46:16, pages 2479-2502.
Read now
Jing Zou, Jinai Ma, Yuanxiao Zhang, Lu Li, Jizhou Jiang & Jinfang Chen. (2013) Electrochemical Determination of Pentachlorophenol Using a Glassy Carbon Electrode Modified with a Film of CuS Nanocomposite-Chitosan. Analytical Letters 46:7, pages 1108-1116.
Read now

Articles from other publishers (24)

Chyh Shyang Ong, Qi Hwa Ng & Siew Chun Low. (2021) Critical reviews of electro-reactivity of screen-printed nanocomposite electrode to safeguard the environment from trace metals. Monatshefte für Chemie - Chemical Monthly 152:7, pages 705-723.
Crossref
F. Laghrib, S. Aghris, A. Hrioua, N. Ajermoun, F. Ettadili, A. Farahi, M. Bakasse, S. Lahrich & M. A. El Mhammedi. (2021) Electrochemical Behavior of p-nitroaniline at Silver/Chitosan/Graphite Electrodes Using Electrochemical Impedance Spectroscopy. ECS Journal of Solid State Science and Technology 10:2, pages 027009.
Crossref
S Sangeetha & G Krishnamurthy. (2019) Fabrication of MOF-177 for electrochemical detection of toxic $$\hbox {Pb}^{2+}$$ and $$\hbox {Cd}^{2+}$$ ions. Bulletin of Materials Science 43:1.
Crossref
Alberto Sánchez-Calvo, Maria Carmen Blanco-López & Agustín Costa-García. (2020) Paper-Based Working Electrodes Coated with Mercury or Bismuth Films for Heavy Metals Determination. Biosensors 10:5, pages 52.
Crossref
Guobin Chen, Xiaojun Wang & Lili Wang. (2020) Application of Carbon Based Material for the Electrochemical Detection of Heavy Metal Ions in Water Environment. International Journal of Electrochemical Science 15:5, pages 4252-4263.
Crossref
Xiaoxue Liu, Yao Yao, Yibin Ying & Jianfeng Ping. (2019) Recent advances in nanomaterial-enabled screen-printed electrochemical sensors for heavy metal detection. TrAC Trends in Analytical Chemistry 115, pages 187-202.
Crossref
Madalina M. Barsan & Victor C. Diculescu. (2019) New electrochemical sensor based on CoQ10 and cyclodextrin complexes for the detection of oxidative stress initiators. Electrochimica Acta 302, pages 441-448.
Crossref
NENAD KRSTIĆ, CARSTEN ERGLER, STEFAN BELLE & CHRISTIANE THIELEMANN. (2018) ELECTROCHEMICAL PREPARATION OF BISMUTH NANOWIRES USING ION-ETCHED POROUS POLYCARBONATE MEMBRANE. Safety Engineering 8:1, pages 1-5.
Crossref
Anastasios Economou. (2018) Screen-Printed Electrodes Modified with “Green” Metals for Electrochemical Stripping Analysis of Toxic Elements. Sensors 18:4, pages 1032.
Crossref
Tingting Wang & Wei Yue. (2017) Carbon Nanotubes Heavy Metal Detection with Stripping Voltammetry: A Review Paper. Electroanalysis 29:10, pages 2178-2189.
Crossref
Guo Zhao, Hui Wang & Gang Liu. (2017) Recent Advances in Chemically Modified Electrodes, Microfabricated Devices and Injection Systems for the Electrochemical Detection of Heavy Metals: A review. International Journal of Electrochemical Science 12:9, pages 8622-8641.
Crossref
Ivan Shtepliuk, Jens Eriksson, Volodymyr Khranovskyy, Tihomir Iakimov, Anita Lloyd Spetz & Rositsa Yakimova. (2016) Monolayer graphene/SiC Schottky barrier diodes with improved barrier height uniformity as a sensing platform for the detection of heavy metals. Beilstein Journal of Nanotechnology 7, pages 1800-1814.
Crossref
Marek Trojanowicz. (2016) Impact of nanotechnology on design of advanced screen-printed electrodes for different analytical applications. TrAC Trends in Analytical Chemistry 84, pages 22-47.
Crossref
Carlo Dossi, Damiano Monticelli, Andrea Pozzi & Sandro Recchia. (2016) Exploiting Chemistry to Improve Performance of Screen-Printed, Bismuth Film Electrodes (SP-BiFE). Biosensors 6:3, pages 38.
Crossref
X. Zhang, Y. Zhang, D. Ding, J. Zhao, J. Liu, W. Yang & K. Qu. (2016) On-site determination of Pb2+ and Cd2+ in seawater by double stripping voltammetry with bismuth-modified working electrodes. Microchemical Journal 126, pages 280-286.
Crossref
Roberto María-Hormigos, Mª Jesús Gismera, Jesús R. Procopio & Mª Teresa Sevilla. (2016) Disposable screen-printed electrode modified with bismuth–PSS composites as high sensitive sensor for cadmium and lead determination. Journal of Electroanalytical Chemistry 767, pages 114-122.
Crossref
Xuzhi Zhang, Keming Qu & Dongpeng Li. (2015) Review: Advance in the Stripping Voltammetry Using Alloy Electrodes for the Determination of Heavy Metal Ions. International Journal of Electrochemical Science 10:10, pages 8497-8512.
Crossref
Andrzej Bobrowski, Agnieszka Królicka, Mariola Maczuga & Jerzy Zarębski. (2014) A novel screen-printed electrode modified with lead film for adsorptive stripping voltammetric determination of cobalt and nickel. Sensors and Actuators B: Chemical 191, pages 291-297.
Crossref
Jorge Armando Ardila, Geiser Gabriel Oliveira, Roberta Antigo Medeiros & Orlando Fatibello-Filho. (2014) Square-wave adsorptive stripping voltammetric determination of nanomolar levels of bezafibrate using a glassy carbon electrode modified with multi-walled carbon nanotubes within a dihexadecyl hydrogen phosphate film. The Analyst 139:7, pages 1762-1768.
Crossref
Alain Walcarius, Mathieu Etienne, Grégoire Herzog, Veronika Urbanova & Neus Vilà. 2014. Environmental Analysis by Electrochemical Sensors and Biosensors. Environmental Analysis by Electrochemical Sensors and Biosensors 403 495 .
Elena Bernalte, Carmen Marín-Sánchez, Eduardo Pinilla-Gil & Christopher M.A. Brett. (2013) Characterisation of screen-printed gold and gold nanoparticle-modified carbon sensors by electrochemical impedance spectroscopy. Journal of Electroanalytical Chemistry 709, pages 70-76.
Crossref
Jiri Sochor, Jiri Dobes, Olga Krystofova, Branislav Ruttkay-Nedecky, Petr Babula, Miroslav Pohanka, Tunde Jurikova, Ondrej Zitka, Vojtech Adam, Borivoj Klejdus & Rene Kizek. (2013) Electrochemistry as a Tool for Studying Antioxidant Properties. International Journal of Electrochemical Science 8:6, pages 8464-8489.
Crossref
Núria Serrano, Arístides Alberich, José Manuel Díaz-Cruz, Cristina Ariño & Miquel Esteban. (2013) Coating methods, modifiers and applications of bismuth screen-printed electrodes. TrAC Trends in Analytical Chemistry 46, pages 15-29.
Crossref
Liang Fu, Xueling Li, Jianshuan Yu & Jianshan Ye. (2013) Facile and Simultaneous Stripping Determination of Zinc, Cadmium and Lead on Disposable Multiwalled Carbon Nanotubes Modified Screen-Printed Electrode. Electroanalysis 25:2, pages 567-572.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.