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Articles

Solid Phase Extraction Using Polymer-Based C18 Cartridge Modified with 5-(2‘-Methyl-4‘-Hydroxyphenylazo)-6-Hydroxypyrimidine-2,4-Dione for Spectrophotometric Determination of Indium(III) in Water and Real Samples

Pages 582-593 | Received 13 May 2018, Accepted 15 Aug 2019, Published online: 10 Nov 2019

References

  • Ferreira, E.D.M., Morelli, T., Moreira, I.M.N.S., de Carvalho, M.S. (2004). Studies on indium sorption from iodide medium by polyurethane foam. J. Braz. Chem. Soc. 15: 563–569. doi: 10.1590/S0103-50532004000400019
  • Acar, O., Kilic, Z., Turker, A.R. (1999). Determination of bismuth, indium and lead in geological and sea water samples by electrothermal atomic absorption spectrometry with nickel-containing chemical modifiers. Anal. Chim. Acta 382: 329–338. doi: 10.1016/S0003-2670(98)00788-0
  • Ferreira, S.L.C., Costa, A.C.S., and Andrade, H.A.S. (1991). 2-(2-Thiazolyl-azo)-p-cresol (TAC) as a reagent for the spectrophotometric determination of indium(III). Microchem. J. 44: 63–66. doi: 10.1016/0026-265X(91)90077-3
  • Bermejo-Barrera, P., Martinez-Alsonso, N., Bermejo-Barrera, A. (2001). Separation of gallium and indium from ores matrix by sorption on Amberlite XAD-2 coated with PAN. Fresenius J. Anal. Chem. 369: 191–194. doi: 10.1007/s002160000605
  • Minami, T. (2005). Transparent conducting oxide semiconductors for transparent electrodes. Semiconductor Sci. & Tech. 20: S35–S44. doi: 10.1088/0268-1242/20/4/004
  • Pang, H.Y., Zhu, Q., Li, W.F., Liu, C.X., Zhao, D. (2002). Determination of indium in smelting waste by flame-AES. Spectrosc. Spectr. Anal. 22: 845–846.
  • Minamisawa, H., Murashima, K., Minamisawa, M., Arai, N., Okutani, T. (2003). Determination of indium by graphite furnace atomic absorption spectrometry after coprecipitation with chitosan. Anal. Sci. 19: 401–404. doi: 10.2116/analsci.19.401
  • Hart, M.M., Smith, C.F., Yancey, S.T., Adamson, R.H. (1971). Toxicity and antitumor activity of gallium nitrate and periodically related metal salts. J. Nat. Cancer Inst. 5: 1121–1127.
  • Auvergne, E., Caujolle, F., Oustrin, J., Voisin, M.C. (1966). Intoxications expérimentales par l’indium./[Experimental poisoning by indium]. Ann. Biol. Clin. 24: 739–743.
  • Haguenoer, J.M., Furon, D. (1981). Toxicologie et Hygiene Industrielles, Tome I: Les Drivds Mindraux, 1 er Partie, Technique & Documentation, Paris.
  • Hart, M.M., Adamson, R.H. (1971). Antitumor activity and toxicity of salts of inorganic group 3a metals: aluminum, gallium, indium, and thallium. Proc. Nat. Acad. Sci. USA 68: 1623–1626. doi: 10.1073/pnas.68.7.1623
  • Downs, W.L., Scott, J.K., Steadman, L.T., Maynard, E.A. (1959). U.S. At. Energy Commission, UR-558,
  • Castronovo, F.P., Wagner, H.N. (1971). Factors Affecting the Toxicity of the Element Indium. Brit. J. Exp. Path. 52: 543–559.
  • Soylak, M., Buyuksekerci, E.B., Elci, L. (2004). A Procedure for the flame atomic absorption spectrometric determination of gold, palladium and platinum in catalytic converters. Asian J. Chem. 16: 1625–1629.
  • Her, G., Choi, H.S. (2005). Determination of nickel after column preconcentration with its nitro-so-r salt and cetyltrimethylammonium bromide ternary complex on bezophenone, J. Korean Chem. Soc. 49: 145–149. doi: 10.5012/jkcs.2005.49.2.145
  • Du, B., Wu, D., Wei, Q., Zhang, H., Ou, Q.Y. (2005). Spectrophotometric determination of trace indium with trimethoxyphenylflurone in microemulsion after preconcentration and separation by sulfhydryl dextrane gel. Chin. J. Anal. Chem. 33: 142–143.
  • Praveen, R.S., Daniel, S., Rao, T.P. (2005). Solid phase extraction preconcentration of cobalt and nickel with 5,7-dichloroquinone-8-ol embedded styrene-ethylene glycol dimethacrylate polymer particles and determination by flame atomic absorption spectrometry (FAAS). Talanta. 66: 513–520. doi: 10.1016/j.talanta.2004.11.026
  • Alibo, D.S., Amakawa, H., Nozaki, Y. (1998). Determination of indium in natural waters by flow injection inductively coupled plasma mass spectrometry. Proc. Indian Acad. Sci. Earth Planet. Sci. 107: 359–366.
  • Kagaya, S., Ueda, J. (1994). Preconcentration of indium(III) by coprecipitation with gallium phosphate for electrothermal atomization atomic-absorption spectrometry. Bull. Chem. Soc. Jpn. 67: 1965–1967. doi: 10.1246/bcsj.67.1965
  • Yoshimura, W., Hong, L.X., Uzawa, A. (1994). Determination of trace amounts of indium in some sediments by means of coprecipitation with zirconium hydroxide and differential-pulse anodic-stripping voltammetry. Bunseki Kagaku. 43: 551–556. doi: 10.2116/bunsekikagaku.43.551
  • Sharma M., Chandrawanshi, S.K., Patel, K.S. (1996). Spectrophotometric determination of indium in zinc effluent. Environ. Monit. Assess. 41: 247–253. doi: 10.1007/BF00419745
  • Kawaguchi, H., Okamoto, T., Miura, K., Shimizu, T., Shirakashi, T. (1999). Determination of ultratrace indium in water sample by electrothermal atomic absorption spectrometry after preconcentration with solvent extraction and back extraction. Bull. Chem. Soc. Jpn. 72: 2445–2449. doi: 10.1246/bcsj.72.2445
  • Kawaguchi, H. (2000). Determination of ultratrace metals of group-13 elements in natural water by graphite-furnace AAS after preconcentration with solvent extraction and back extraction. Bunseki Kagaku. 49: 801–802. doi: 10.2116/bunsekikagaku.49.801
  • Tao, S., Huang J., Ma W., Chen L., Chen, D. (1998). Determination of trace indium in geochemical samples using electrothermal atomization laser excited atomic fluorescence spectrometry after a solvent extraction. Atom. Spectr. 19: 180–185.
  • Kenawy, I.M.M., Hafez, M.A.H., Elwanees, S.A. (1991). Preconcentration and separation by electrodeposition of indium from its different solution complexes. Bull. Soc. Chim. Fr. 5: 677–683.
  • Medvecky, L., Briancin, J. (2004). Possibilities of simultaneous determination of indium and gallium in binary InGa alloys by anodic stripping voltammetry in acetate buffer. Chem. Pap. Chem. Zvesti. 58: 93–100.
  • Soylak, M., Buyuksekerci, E.B., Elci, L. (2004). A Procedure for the flame atomic absorption spectrometric determination of gold, palladium and platinum in catalytic converters. Asian J. Chem. 16: 1625–1629.
  • Dutta, S., Das, A.K. (2005). Microwave-assisted synthesis and characterization of a new chelating resin functionalized with 2-aminothiazole: application in trace level cadmium–mercury separation in biological samples. Indian J. Chem. Technol. 12: 139–144.
  • Afzali, D., Mostafavi, A., Taher, M.A., Rezaeipour, E., Mahani, M.K. (2005). Natural analcime zeolite modified with 5-Br-PADAP for the preconcentration and anodic stripping voltammetric determination of trace amount of cadmium. Anal. Sci. 21: 383–386. doi: 10.2116/analsci.21.383
  • Dubey, R.K., Puri, S., Gupta, M.K., Puri, B.K. (1998). Preconcentration of indium(III) from complex materials after adsorption of its morpholine-4-dithiocarbamate on naphthalene or using morpholine-4-dithiocarbamate-cetyltrimethylammonium bromide-naphthalene adsorbent. Anal. Lett. 31: 2729–2746. doi: 10.1080/00032719808005339
  • Taher, M.A. (2000). Differential pulse polarography determination of indium after column preconcentration with [1-(2-pyridylazo)-2-naphthol]-naphthalene adsorbent or its complex on micro-crystalline naphthalene. Talanta 52: 301–309. doi: 10.1016/S0039-9140(00)00327-1
  • Masi, A.N., Olsina, R.A. (1999). Determination by XRF of trace amounts of Ga and In in geological samples preconcentrated with macroporous resins loaded with 5-phenylazo-8-quinolinol (5-PHAQ). J. Trace Microprobe Tech. 17: 315–325.
  • Wei, J.S., Liu, Q., Okutani, T., (1994). Determination of trace amounts of indium by graphite-furnace atomic-absorption spectrometry after preconcentra-tion as the acetylacetonato complex on activated carbon. Anal. Sci. 10: 465–468. doi: 10.2116/analsci.10.465
  • Tong, A., Akama, Y., Tanaka, S. (1990). Preconcentration of indium with 1-phenyl-3-methyl-4-stearoyl-5-pyrazolone on silica-gel. Anal. Chim. Acta. 230: 175–177. doi: 10.1016/S0003-2670(00)82777-4
  • Ershova, N.I., Ivanov, V.M. (1998). Diffuse reflection spectroscopy of indium sorbates with immobilized heterocyclic azo compounds. Anal. Chim. Acta. 364: 235–241. doi: 10.1016/S0003-2670(98)00180-9
  • Cai, Y., Jiang, G., Liu, J., He, B. (2002). Evaluation of several gas chromatographic stationary phases for the solid-phase extraction of trace amounts of copper in aqueous samples. Anal. Sci. 18: 705–707. doi: 10.2116/analsci.18.705
  • Cai, Y., Jiang, G., Liu, L. (2002). Preconcentration of cobalt with 8-hidroxyquinoline and gas chromatographic stationary phase chromosorp-105 and its determination by graphite atomic absorption spectrometry. Talanta 7: 1173–1180. doi: 10.1016/S0039-9140(02)00194-7
  • Akman, S., Tokman, N. (2003). Determination of lead and nickel in apple-leaves and sea-water by electrothermal atomic absorption spectrometry after solid-phase extraction using chromosorb-107 filled in a syringe. Talanta 60: 199–204. doi: 10.1016/S0039-9140(03)00124-3
  • Tuzen M., Parlar K., Soylak, M. (2005). Enrichment/separation of cadmium(II) and lead(II) in environmental samples by solid phase extraction. J. Hazard. Mater. 121: 79–87. doi: 10.1016/j.jhazmat.2005.01.015
  • Itsuo, M., Yoshikazu, F., Fujita, K.K., Munakata, R. (1986). Color reaction between indium(III) and o-hydroxyhydroquinonephthalein, and its application. Bull. Chem. Soc. Jpn. 59: 958–960. doi: 10.1246/bcsj.59.958
  • Chen, X.B., Han, C.Y., Yuan, Zh. L. (1984). Determination of trace amounts of indium using o-hydroxyhydroquininephthalein and salicyfluorone in the presence of cationic surfactant. Fenxi Huaxue 12: 135–137.
  • Albota, L.A., Gutsulyak, R.B. (1983). Indium ions complexing with phenylfluoron in the presence of surfactants. Ukr. Khim. Tekhnol. 49: 385–391.
  • Wang, D.J., He, W.Q., Cai, Zh.G., Pan, Q.H. (1985). Spectrophotometric determination of indium using 3,4-dihydroxyazo-benzene-4'-sulfonate as complexing agent. Yanshi Kuangwu Ji Ceshi. 4: 82–83.
  • Chem, H.X., Zhu. L., Wang, Y.X. (1990). Determination of trace amount of indium using different organic reagents. Rare Met. (Beijing) 9: 213–216.
  • Singh, I., Saini, R. (1994). 2,4,6-Tris(1-hydroxy-4-sulphonaphthyl-2-azo) pyrimidine as a reagent for the determination of indium in its alloys. Indian J. Chem. (A) 33: 440–441.
  • Al-Mallah, Z., Amin A.S. (2018). Utilization of polymer-based c18 cartridge modified with 6-{4-(2,4-dihydroxyphenyl) diazenyl) phenyl}-2-oxo-4-phenyl-1,2-dihydro-pyridine-3-carbonitrile for preconcentration and determination of cerium (III) ions from environmental samples. Chem. Data Collec. 13-14, 28–39. doi: 10.1016/j.cdc.2017.12.001
  • Amin A.S. (2012). Solid-phase extraction using polymer-based cartridge modified with 2-(2-benzothiazolylazo)-3-hydroxyphenol for preconcentration of uranium (VI) ions from water and real samples. Spect. Lett. 45(4): 246–255. doi: 10.1080/00387010.2011.607207
  • Amin A.S. (2010). Utility of solid phase extraction for spectrophotometric determination of gold in water, jewel and ore samples. Spectrochim. Acta (A) 77(5): 1054–1058. doi: 10.1016/j.saa.2010.08.072
  • Amin, A.S., Mohammed, T.Y., Mousa, A.A. (2003). Spectrophotometric studies and applications for the determination of yttrium in pure and in nickel base alloys. Spectrochim. Acta (A) 59: 2577–2584. doi: 10.1016/S1386-1425(03)00040-4
  • Busev, A.I., Tiptsova, V.G., Ivanov, V.M. (1970). Handbook of the Analytical Chemistry of Rare Elements. Ann Arbor-Humphrey Science Publishers, London, Ann. Arbor. p. 262.
  • Tuzen M., Soylak M. (2006). A solid phase extraction procedure for indium prior to its graphite furnace atomic absorption spectrometric determination. J. Hazard. Mat. 129(1-3): 179–185. doi: 10.1016/j.jhazmat.2005.08.031
  • Irving, H.M.N.H., Freiser, H., West, T.S. (1981). IUPAC compendium of analytical nomenclature: Definitive rules. Oxford, UK: Pergamon Press.
  • Poedniok, J., Buhl, F. (2006). Application of chrome azurol S and benzyldodecyl-dimethyl-ammonium bromide for determination of indium in zinc and its compounds. Chem. Anal. (Warsaw) 51: 631.
  • Agnihotri, N.K., Ratnanii, S., Singh, V.K., Singh, H.B. (2003). Simultaneous determination of gallium and indium with 2-(5-bromo-2-pyridylazo)-5-diethyl-aminophenol in cationic micellar medium using derivative spectrophotometry. Anal. Sci. 19: 1297–1301. doi: 10.2116/analsci.19.1297
  • Agrawal, Y.K., Bhatt, V.J. (1986). Extraction-spectrophotometric determination of indium using 4-(2-pyridylazo)resorcinol. Analyst. 111: 57–60. doi: 10.1039/an9861100057
  • Huseyinli, A.A., Alieva, R., Haciyeva, S., Güray, T. (2009). Spectrophotometric determination of aluminium and indium with 2,2',3,4-tetrahydroxy-3',5'-disulphoazobenzene. J. Hazard. Mater. 163: 1001–1007. doi: 10.1016/j.jhazmat.2008.07.055
  • Rosales, D., Millan, I., Ariza, J.L.G. (1986). Spectrophotometric determination of indium in nickel alloys and zinc ores with 1-(2-pyridylmethylideneamine)-3-(salicylideneamine)thiourea. Talanta 33: 607–610. doi: 10.1016/0039-9140(86)80138-2
  • Joshi, A.P., Munshi, K.N. (1971). Spectrophotometric determination of indium using gallion. Microchim. Acta 59: 526–530. doi: 10.1007/BF01219065
  • Miller, J.C. (2005). Miller, Statistics and Chemometrics for Analytical Chemistry, 5th ed., Prentice-Hall, London.

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