Bandi Koteswara Rao, Upadhyay Anjali, Singh Ashok K, Jain A K
Department of Chemistry, Indian Institute of Technology-Roorkee, Roorkee 247667, India.
Department of Chemistry, Indian Institute of Technology-Roorkee, Roorkee 247667, India.
Mater Sci Eng C Mater Biol Appl. 2016 May;62:9-17. doi: 10.1016/j.msec.2016.01.035. Epub 2016 Jan 18.
Plasticized membranes using N-(-3-((thiazol-2-ylimino)methyl)benzylidene)thiazol-2-amine (S1) and 5-((-3-((5-mercapto-1,3,4-thiadiazol-2-ylimino)methyl)benzylidene)amino)-1,3,4-thiadiazole-2-thiol (S2) have been prepared and explored as Er (III) selective electrodes. Effect of various plasticizers viz. dibutylphthalate, tri-n-butylphosphate, dioctylphthalate, acetophenone, 1-chloronapthalene, o-nitrophenyloctylether, and anion excluders viz. sodium tetraphenylborate and potassium tetrakis-p-(chlorophenyl)borate was studied in detail and improved performance was observed. Optimum performance was observed for the membrane electrode having a composition of S2: PVC: o-NPOE: KTpClPB in the ratio of 4: 38: 55: 3 (w/w, mg). The performance of the PME based on S2 was compared with CGE. The electrodes exhibit Nernstian slope for Er (III) ion with detection limit 5.4 × 10(-8)mol L(-1) for PME and 6.1 × 10(-9)mol L(-1) for CGE. The response time for PME and CGE was found to be 12s and 9s respectively. The practical utility of the CGE has been demonstrated by its usage as an indicator electrode in potentiometric titration of EDTA with Er (III) solution and determination of fluoride ions in mouthwash solution. The proposed electrode was also applied to the determination of added Er(3+) ion in water and binary mixtures. It is found that the electrode could be able to recover the Er(3+) ion in 96.2-99.5%.
已制备了使用N -(-3-((噻唑-2-基亚氨基)甲基)亚苄基)噻唑-2-胺(S1)和5-((-3-((5-巯基-1,3,4-噻二唑-2-基亚氨基)甲基)亚苄基)氨基)-1,3,4-噻二唑-2-硫醇(S2)的增塑膜,并将其作为铒(III)选择性电极进行了研究。详细研究了各种增塑剂,即邻苯二甲酸二丁酯、磷酸三正丁酯、邻苯二甲酸二辛酯、苯乙酮、1-氯萘、邻硝基苯基辛基醚,以及阴离子排除剂,即四苯硼酸钠和四(对氯苯基)硼酸钾的影响,并观察到性能有所改善。对于组成比例为S2:PVC:邻硝基苯基辛基醚:四(对氯苯基)硼酸钾为4:38:55:3(重量/重量,毫克)的膜电极,观察到了最佳性能。将基于S2的PME的性能与CGE进行了比较。这些电极对铒(III)离子呈现能斯特斜率,PME的检测限为5.4×10⁻⁸mol/L,CGE的检测限为6.1×10⁻⁹mol/L。发现PME和CGE的响应时间分别为12秒和9秒。通过将CGE用作铒(III)溶液电位滴定EDTA以及测定漱口水溶液中氟离子的指示电极,证明了CGE的实际应用价值。所提出的电极还应用于测定水中和二元混合物中添加的铒(3+)离子。发现该电极能够以96.2 - 99.5%的回收率回收铒(3+)离子。