Browse > Article
http://dx.doi.org/10.5012/bkcs.2012.33.7.2229

Comparative Study of Holmium (III) Selective Sensors Based on Thiacalixarene and Calixarene Derivatives as an Ionophore  

Singh, Sanjay (Department of Chemistry, M.M.H. College)
Rani, Geeta (Department of Chemistry, Mewar University)
Publication Information
Abstract
The two chelates based on calix[4]arene and thiacalix[4]arene have been synthesized and used as neutral ionophores for preparing PVC based membrane sensor selective to $Ho^{3+}$ ion. The addition of potassium tetrakis(4-chlorophenyl)borate (KTpClPB) and various plasticizers, viz., NDPE, o-NPOE, DOP, TEP and DOS have been found to improve significantly the performance of the sensors. The best performance was obtained with the sensor no. 6 having membrane of $L_2$ with composition (w/w) ionophore (2%): KTpClPB (4%): PVC (37%): NDPE (57%). This sensor exhibits Nernatian response with slope $21.10{\pm}0.3mV/decade$ of activity in the concentration range $3.0{\times}10^{-8}-1.0{\times}10^{-2}M\;Ho^{3+}\;ion$, with a detection limit of $1.0{\times}10^{-8}M$. The proposed sensor performs satisfactorily over a wide pH range of 2.8-10, with a fast response time (5 s). The sensor was also found to work successfully in partially non-aqueous media up to 25% (v/v) content of methanol, ethanol and acetonitrile, and can be used for a period of 4 months without any significant drift in potential. The electrode was also used for the determination of $Ho^{3+}$ ions in synthetic mixtures of different ions and the determination of the arsenate ion in different water samples.
Keywords
Ion-selective electrode; Holmium; Calixarene; Ionophore; Sensors;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By Web Of Science : 0  (Related Records In Web of Science)
연도 인용수 순위
1 Rouhollahi, A.; Ganjali, M. R.; Shamsipur, M. Talanta 1998, 46, 1341.   DOI
2 Guilbault, G. G.; Durst, R. A.; Frant, M. S.; Freiser, H.; Hansen, E. H.; Light, T. S.; Pungor, E.; Rechnitz, G.; Rice, M. N.; Rohm, T. J.; Simon, W.; Thomas, D. R. Pure Appl. Chem. 1976, 48, 127.   DOI
3 Debye, P.; Huckel, E. Phys. Z 1923, 24, 305.
4 Mittal, V. K.; Kumar, A.; Gupta, N.; Kaur, S.; Kumar, S. Anal. Chim. Acta 2007, 585, 161.   DOI
5 Bakker, E.; Buhlmann, P.; Pretsch, E. Electroanalysis 1999, 11, 915.   DOI
6 Khayatian, G.; Shariati, S.; Salimi, A. Bull. Korean Chem. Soc. 2003, 24, 421.   DOI
7 Umezawa, Y.; Buhlmann, P.; Umezawa, K.; Hamada, N.; Aokli, H.; Nakanishli, J.; Sato, M.; Xiao, K. P.; Nishimura, Y. Pure Appl. Chem. 2002, 74, 923.   DOI
8 Saez de Viteri, F. J.; Diamond, D. Analyst 1994, 119, 749.   DOI
9 Craggs, A.; Moody, G. J.; Thomas, J. D. R. J. Chem. Educ. 1974, 51, 541.   DOI
10 Yanming, M.; Bakker, E. Anal. Chem. 2001, 73, 5582.   DOI
11 Singh, A. K.; Gupta, V. K.; Gupta, B. Anal. Chim. Acta 2007, 585, 171.   DOI
12 Jain, A. K.; Gupta, V. K.; Khurana, U.; Singh, L. P. Electroanalysis 1997, 9, 857.   DOI
13 Jain, A. K.; Gupta, V. K.; Singh, L. P.; Khurana, U. Analyst 1997, 122, 583.   DOI   ScienceOn
14 Ganjali, M. R.; Rasoolipour, S.; Rezapour, M.; Norouzi, P.; Tajarodi, A.; Hanifehpour, Y. Electroanalysis 2005, 17, 1534.   DOI
15 Gupta, V. K.; Goyal, R. N.; Pal, M. K.; Sharma, R. A. Anal. Chim. Acta 2009, 27, 161.
16 Ganjali, M. R.; Norouzi, P.; Mirnaghi, F. S.; Riahi, S.; Faridbod, F. Sensors Journal, IEEE 2007, 7, 138.
17 Zammani, H. A.; Langroodi, S.; Meghdadi, S. E-Journal of Chemistry 2011, 8, 237.   DOI
18 Ganjali, M. R.; Nemati, R.; Faridbod, F.; Norouzi, P.; Darviche, F.Int. J. Electrochem. Sci. 2008, 3, 1288.
19 Prasad, R.; Gupta, V. K.; Kumar, A. Anal. Chim. Acta 2004, 508, 61.   DOI
20 Peper, S.; Ceresa, A.; Bakker, E. Anal. Chem. 2001, 73, 3768.   DOI
21 Zammani, H. A.; Fatemeh, R.; Reyabbi, N. F.; Arvinfar, A.; Alihossien, I.; Ganjali, M. R.; Faridbod, F.; Masoud, S. N. Chinese Journal of Chem. 2011, 29, 1523.   DOI
22 Telting-Diaz, M.; Bakker, E. Anal. Chem. 2001, 73, 5582.   DOI
23 Ganjali, M. R.; Rasoolipour, S.; Rezapour, M.; Norouzi, P.; Amirnasr, M.; Meghdadi, S. J. Braz.Chem. Soc. 2006, 17, 1211.
24 Ganjali, M. R.; Norouzi, P.; Adib, M.; Ahmadalinezhad, A. Anal. Lett. 2006, 39, 1075.   DOI
25 Deng, G.; Sakaki, T.; Kawahara, Y.; Shinkai, S. Supramol. Chem. 1993, 2, 71.   DOI
26 Chung, T. D.; Park, J.; Kim, J.; Lim, H.; Choi, M. J.; Kim, J. R.; Chang, S. K.; Kim, H. Anal. Chem. 2001, 73, 3975.   DOI
27 Holleman, A. F.; Wiberg, E. Inorganic Chemistry; Academic Press: New York, 2001; p 1693.
28 MacDonald, R. P. Clinical Chemistry 1964, 10, 1117.
29 Vicente, O.; Padro, A.; Martinez, L.; Olsina, R.; Marchevsky, E. Spectrochim. Acta Part B 1998, 53, 1281.   DOI
30 Houk, R. S.; Fassel, V. A.; Reach, G. D.; Svec, H. J. Anal. Chem. 1980, 52, 2283.   DOI
31 Al-Merey, R.; Bowen, H. M. J. Radioanal Nuc. Chem. 1991, 153, 221.   DOI
32 Anbu, M.; Rao, T. P.; Iyer, C. S. P.; Damodaran, A. D. Chem. Anal. (Warsaw) 1996, 41, 781.
33 Wang, N. X.; Jiang, W.; Si, Z. K.; Qi, Z. Analyst 1996, 121, 1317.   DOI
34 Kabalin, J.; Gilling, P.; Fraundorfer, M. J. Clin. Laser Med. Surg. 1998, 16, 21.
35 Wang, N. X.; Jiang, W.; Si, Z. K.; Qi, Z. Mikrochim. Acta 1997, 126, 251.   DOI
36 Li, J.; Liu, S.; Mao, X.; Gao, P.; Yan, Z. J. Electroanal. Chem. 2004, 561, 137.   DOI
37 Gupta, V. K.; Singh, A. K.; Gupta, B. Anal. Chim. Acta 2006, 575, 198.   DOI
38 Gupta, V. K.; Jain, A. K.; Singh, L. P.; Khurana, U. Anal. Chim. Acta 1997, 355, 33.   DOI
39 Srivastava, S. K.; Gupta, V. K.; Jain, S. Anal. Chem. 1996, 68, 1272.   DOI
40 Gupta, V. K.; Mangla, R.; Khurana, U.; Kumar, P. Electroanalysis 1999, 11, 573.   DOI
41 Jain, A. K.; Gupta, V. K.; Singh, L. P. Analytical Proceedings Including Analytical Communication 1995, 32, 263.   DOI
42 Jain, A. K.; Gupta, V. K.; Singh, L. P.; Srivastava, P.; Raisoni, J. R. Talanta 2005, 65, 716.   DOI
43 Mahajan, R. K.; Kaur, I.; Kumar, M. Sens. Actuators B 2003, 91, 26.   DOI