51
Views
24
CrossRef citations to date
0
Altmetric
Original Articles

A SELECTIVE MEMBRANE ELECTRODE FOR THIOCYANATE ION BASED ON A COPPER-1,8-DIMETHYL-1,3,6,8,10,13-AZACYCLOTETRADECANE COMPLEX AS IONOPHORE

, , , , , , & show all
Pages 2621-2632 | Received 06 Dec 2000, Accepted 16 Jul 2001, Published online: 02 Feb 2007

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

Read on this site (3)

Aditya Shukla, Gaurav Agnihotri, Khageshwar Singh Patel & Peter Hoffmann . (2004) Determination of Thiocyanate in Waste Water. Analytical Letters 37:9, pages 1991-2001.
Read now
Mohammad Reza Ganjali, Mahnaz Abdi, Hooshang Pirelahi, Arash Mouradzadegun & Mohammad Reza Sohrabi. (2004) Novel Imidazole PVC‐Based Membrane Sensor Based on 4‐Methyl‐2,6‐diphenylthiopyrylium. Analytical Letters 37:2, pages 179-190.
Read now
Mohammad Reza Ganjali, Morteza Rezapour, Mohammad Reza Pourjavid, Masoud Salavati-Niasari & Tahereh Poursaberi. (2003) A Novel Potentiometric Membrane Sensor for Quick Determination of Trace Amount of Based on a Zinc–Schiff 's Base. Analytical Letters 36:5, pages 881-894.
Read now

Articles from other publishers (21)

A. Benvidi, M.T. Ghanbarzadeh, M. Dehghan, M. Mazloum-Ardakani & R. Vafazadeh. (2014) Thiocyanate ion selective electrode based on bis(N-3-methylphenyl salicylidenaminato)copper(II) ionophore. Chinese Chemical Letters 25:12, pages 1639-1642.
Crossref
Claudio Zuliani, Giusy Matzeu & Dermot Diamond. (2014) A potentiometric disposable sensor strip for measuring pH in saliva. Electrochimica Acta 132, pages 292-296.
Crossref
Alireza Nezamzadeh-Ejhieh & Atefeh Badri. (2011) Surfactant modified ZSM-5 zeolite as an active component of membrane electrode towards thiocyanate. Desalination 281, pages 248-256.
Crossref
Atefeh Badri & Pouya Pouladsaz. (2011) Highly Selective and Sensitive Thiocyanate PVC Membrane Electrodes Based on Modified Zeolite ZSM-5. International Journal of Electrochemical Science 6:8, pages 3178-3195.
Crossref
Mihail Revenco, Mariana Martin & Waell Abu Dayyih. (2010) Thiocyanate Ion-Selective PVC Membrane Electrode. Chemistry Journal of Moldova 5:1, pages 73-77.
Crossref
Bhargav Patel, Anish Kumar & Shobhana K. Menon. (2009) Thiocyanate: selective membrane electrode based on macrotricyclic binuclear Cu(II)–Schiff base complex. Journal of Inclusion Phenomena and Macrocyclic Chemistry 64:3-4, pages 239-247.
Crossref
Farnoush Faridbod, Parviz Norouzi, Rassoul Dinarvand & Mohammad Ganjali. (2008) Developments in the Field of Conducting and Non-conducting Polymer Based Potentiometric Membrane Sensors for Ions Over the Past Decade. Sensors 8:4, pages 2331-2412.
Crossref
Farnoush Faridbod, Mohammad Ganjali, Rassoul Dinarvand, Parviz Norouzi & Siavash Riahi. (2008) Schiff's Bases and Crown Ethers as Supramolecular Sensing Materials in the Construction of Potentiometric Membrane Sensors. Sensors 8:3, pages 1645-1703.
Crossref
Pinghua Yang, Wanzhi Wei & Chunyuan Tao. (2007) Determination of trace thiocyanate with nano-silver coated multi-walled carbon nanotubes modified glassy carbon electrode. Analytica Chimica Acta 585:2, pages 331-336.
Crossref
Wen-Ju Xu, Ya-Qin Chai, Ruo Yuan & Su-Li Liu. (2006) A novel thiocyanate-selective electrode based on a zinc–phthalocyanine complex. Analytical and Bioanalytical Chemistry 385:5, pages 926-930.
Crossref
Ibrahim H.A. Badr. (2006) Potentiometric anion selectivity of polymer-membrane electrodes based on cobalt, chromium, and aluminum salens. Analytica Chimica Acta 570:2, pages 176-185.
Crossref
Hassan Ali Zamani, Farhad Malekzadegan & Mohammad Reza Ganjali. (2006) Highly selective and sensitive thiocyanate membrane electrode based on nickel(II)-1,4,8,11,15,18,22,25-octabutoxyphthalocyanine. Analytica Chimica Acta 555:2, pages 336-340.
Crossref
Wang Fu‐Chang, Chai Ya‐Qin, Yuan Ruo, Chen Chun‐Hua, Dai Jian‐Yuan & Xu Lan. (2005) A Selective Membrane Electrode for Thiocyanate Ion Based on a Bis‐taurine‐salicylic Binuclear Copper(II) Complex as Ionophore. Chinese Journal of Chemistry 23:7, pages 865-869.
Crossref
Lan Xu, Ruo Yuan, Ya‐Qin Chai & Ying‐Zi Fu. (2005) Novel Membrane Potentiometric Thiocyanate Sensor Based on Tribenzyltin(IV) Dithiocarbamate. Electroanalysis 17:11, pages 1003-1007.
Crossref
. (2004) Improved Thiocyanate-Selective Electrode Based on Tetra(trimethylphenyl)-porphyrinato Manganese(III) Chloride: The Electronic and pH Effects. Bulletin of the Korean Chemical Society 25:10, pages 1484-1488.
Crossref
Philippe Bühlmann, Lisa Yahya & Rolly Enderes. (2004) Ion‐Selective Electrodes for Thiocyanate Based on the Dinuclear Zinc(II) Complex of a Bis‐ N , O ‐bidentate Schiff Base . Electroanalysis 16:12, pages 973-978.
Crossref
Mohammad Reza Ganjali, Mohammad Reza Pourjavid, Mojtaba Shamsipur, Taherh Poursaeri, Morteza Rezapour, Mehran Javanbakht & Hashem Sharghi. (2003) Novel Membrane Potentiometric Sulfate Ion Sensor Based on Zinc-Phthalocyanine for the Quick Determination of Trace Amounts of Sulfate. Analytical Sciences 19:7, pages 995-999.
Crossref
Mojtaba Shamsipur, Ahmad Soleymanpour, Morteza Akhond, Hashem Sharghi & Ali Reza Hasaninejad. (2003) Perchlorate selective membrane electrodes based on a phosphorus(V)–tetraphenylporphyrin complex. Sensors and Actuators B: Chemical 89:1-2, pages 9-14.
Crossref
Mohammad Reza Ganjali, Farhang Mizani & Masoud Salavati-Niasari. (2003) Novel monohydrogenphosphate sensor based on vanadyl salophen. Analytica Chimica Acta 481:1, pages 85-90.
Crossref
. (2003) Titanium Acetylacetonate as an Excellent Ion-Carrier in Construction of Iodide Sensor. Bulletin of the Korean Chemical Society 24:1, pages 23-23.
Crossref
Mohammad Reza Ganjali, Mohammad Yousefi, Mehran Javanbakht, Tahereh Poursaberi, Masoud Salavati-Niasari, Leila Hajiagha-Babaei, Elnaz Latifi & Mojtaba Shamsipur. (2002) Determination of SCN– in Urine and Saliva of Smokers and Non-Smokers by SCN–-Selective Polymeric Membrane Containing a Nickel(II)-Azamacrocycle Complex Coated on a Graphite Electrode. Analytical Sciences 18:8, pages 887-892.
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.