125
Views
8
CrossRef citations to date
0
Altmetric
SENSORS

Design of a Novel Gadolinium Optical Sensor Based on Immobilization of (Z)-N′-((Pyridine-2-yl) Methylene) Thiophene-2-carbohydrazide on a Triacetylcellulose Membrane and Its Application to the Urine Samples

, &
Pages 190-203 | Received 27 Aug 2008, Accepted 12 Sep 2008, Published online: 21 Jan 2009

REFERENCES

  • Behrens , A. 1995 . Determination of gadolinium in geological samples by inductively coupled plasma mass spectrometry and multivariate calibration . Spectrochim. Acta B Atomic Spec. , 50 : 1521 – 1530 .
  • Berg , B. , Mainka , E. , and Ache , H.J. 1989 . Determination of gadolinium in aquous solutions by time-resolved fluorimetry . Anal. Bioanal. Chem. , 333 : 766 – 767 .
  • Biju , V.M. , Reddy , M.L.P. , Prasada Rao , T. , Kannan , G. , Mishra , A.K. , and Balasubramanian , N. 2000 . Luminescence determination of europium in high-purity yttrium and gadolinium oxides . Anal. Lett. , 33 : 2271 – 2280 .
  • Blaum , K. , Geppert , C. , Schreiber , W. , Hengstler , J. , Muller , P. , Nortershauser , W. , Wendt , K. , and Bushaw , B. 2002 . Trace determination of gadolinium in biomedical samples by diode-laser-based multi-step resonance ionization mass spectrometry . Anal. Bioanal. Chem. , 372 : 759 – 765 .
  • Cao , X. , Yin , M. , and Li , B. 1999 . Determination of rare earth impurities in high purity gadolinium oxide by inductively coupled plasma mass spectrometry after 2-ethylhexylhydrogen-ethylhexy phosphonate extraction chromatographic separation . Talanta , 48 : 517 – 525 .
  • Ganjali , M.R. , Tahami , M. , Shamsipur , M. , Poursaberi , T. , Haghgoo , S. , and Hosseini , M. 2003 . Novel gadolinium PVC-based membrane sensor based on omeprazole as an antibiotic . Electroanalysis , 15 : 1038 – 1042 .
  • Ganjali , M.R. , Emami , M. , Rezapour , M. , Shamsipur , M. , Maddah , B. , Niasari , M.S. , Hosseini , M. , and Talebpoui , Z. 2003 . Novel gadolinium poly(vinyl chloride) membrane sensor based on a new S–N Schiff's base . Anal. Chim. Acta , 495 : 51 – 59 .
  • Ganjali , M.R. , Daftari , A. , Norouzi , P. , and Salavati-Niasari , M. 2003 . Novel Y(III) PVC-based membrane microelectrode based on a new S-N Schiff's base . Anal. Lett. , 36 : 1511 – 1522 .
  • Ganjali , M.R. , Rezapour , M. , Norouzi , P. , and Salavati-Niasari , M. 2005 . A new pentadentate S-N Schiff's base as a novel ionophore in construction of a novel Gd(III) membrane sensor . Electroanalysis , 17 : 2032 – 2036 .
  • Ganjali , M.R. , Dodangeh , M. , Ghorbani , H. , Norouzi , P. , and Adib , M. 2006. PPb level monitoring of Dy(III) ions by a highly sensitive and selective Dy(III) sensor based on a new asymmetrical Schiff's base. Anal. Lett. , 39: 1075–1086.
  • Ganjali , M.R. , Norouzi , P. , Adib , M. , and Ahmadalinezhad , A. 2006 . A novel holmium(III) membrane sensor based on N-(1-thien-2-ylmethylene)-1,3-benzothiazol-2-amine . Anal. Lett. , 39 : 495 – 506 .
  • Ganjali , M.R. , Norouzi , P. , Alizadeh , T. , Tajarodi , A. , and Hanifehpour , Y. 2007 . Fabrication of a highly selective and sensitive Gd(III)-PVC membrane sensor based on N-(2-pyridyl)-N′-(4-nitrophenyl)thiourea . Sensors Actuators B , 120 : 487 – 493 .
  • Ganjali , M.R. , Norouzi , P. , Akabri-Adergani , B. , Riahi , S. , and Larijani , B. 2007 . An asymmetric lutetium(III) microsensor based on N-(2-furylmethylene) pyridine-2,6-diamine for determination of lutetium(III) ions . Anal. Lett. , 40 : 1923 – 1938 .
  • Ganjali , M.R. , Norouzi , P. , Faridbod , F. , Hajiabdollah , N. , Larijani , B. , and Hanifehpour , Y. 2007 . Procaine as a sensing material for determination of dysprosium(III) ions in presence of other rare-earth elements in biological and environmental samples . Anal. Lett. , 40 : 2544 – 2561 .
  • Ganjali , M.R. , Norouzi , P. , Faridbod , F. , Hajiabdollah , N. , Dinarvand , R. , and Meghdadi , S. 2008 . Lutetium(III) ions determination in biological and environmental samples by a lutetium(III) sensor based on N,N′-bis(2-pyridinecarboxamide)-1,3-benzene as a sensing material . Anal. Lett. , 41 : 3 – 23 .
  • Gong , Z. and Zhang , Z. 1997 . Room temperature phosphorescence optosensing for gadolinium . Mikrochim. Acta , 126 : 117 – 121 .
  • Hampel , C.A. 1968 . The Encyclopedia of the Chemical Elements . New York : Reinhold .
  • Hennebruder , K. , Wennrich , R. , Mattusch , J. , Stark , H.J. , and Engewald , W. 2004 . Determination of gadolinium in river water by SPE preconcentration and ICP-MS . Talanta , 63 : 309 – 316 .
  • Hu , L. , Li , J. , Song , G. , and Zhang , H. 1997 . Enhanced luminescence of europium by gadolinium and its application . Anal. Lett. , 30 : 945 – 951 .
  • Isnard , H. , Brennetot , R. , Caussignac , C. , Caussignac , N. , and Chartier , F. 2005 . Investigations for determination of Gd and Sm isotopic compositions in spent nuclear fuels samples by MC ICPMS . Int. J. Mass Spec. , 246 : 66 – 73 .
  • Jinno , K. , Takeuchi , T. , Amemiya , S. , and Katoh , T. 1979 . The rapid and non-destructive determination of vanadium in carbons by the neutron activation analysis using gadolinium as an internal standard material . Anal. Lett. , 12 : 523 – 533 .
  • Jones , T.P. and Porter , M.D. 1988 . Optical pH sensors based on the chemical. modification of a porous polymer film . Anal. Chem. , 60 : 404 – 406 .
  • Kirk , O.R. and Othmer , D.F. 1982 . Encyclopedia of Chemical Technology . New York : J. Wiley & Sons , vol. 19 .
  • Kuswandi , B. and Narayanaswamy , R. 1999 . Characterisation of Hg(II) ion optrode based on -1-(2-thiazolylazo)-2-7Nafion naphthol composite thin films . J. Environ. Monit. , 1 : 109 – 114 .
  • Marsh , R.H. and Allie , W. 1969 . Precision determination of gadolinium in cadmium fluoride by neutron activation analysis . Anal. Chim. Acta , 45 : 179 – 182 .
  • Miyake , C. and Imoto , S. 1986. Microcharacterivation of U1-vGdvO2 solid solution by electron spin resonance, v-ray photoelectron spectroscopy and magnetic susceptibility. J. Less. Common. Metals , 121: 261–264.
  • Miyake , C. , Kanamaru , M. , and Imoto , S. 1986 . Microcharacterization of gadolinium in U1−xGdxO2 by means of electron spin resonance . J. Nuclear. Mater. , 137 : 256 – 260 .
  • Mori , I. , Fujita , Y. , Toyoda , M. , and Tanaka , K. 1992 . Spectrophotometric determination of gadolinium(III) with O-hydroxyhydroqoinonephthalein in mixed micelles of N-hexadecylpyridinilm chloride and Brij 35 . Anal. Lett. , 25 : 2377 – 2388 .
  • Moyer , S. and McCarthy , W.J. 1969 . Evaluation of electron spin resonance for quantitative determinations of gadolinium, chromium, iron, copper, and manganese . Anal. Chim. Acta , 48 : 79 – 85 .
  • Normann , P.T. , Joff , P. , Martinsen , I. , and Thomsen , H.S. 2000 . Quantification of gadodiamide as Gd in serum, peritoneal dialysate and faeces by inductively coupled plasma atomic emission spectroscopy and comparative analysis by high-performance liquid chromatography . J. Pharm. Biomed. Anal. , 22 : 939 – 947 .
  • Reisfeld , R. and Biron , E. 1970 . Determination of gadolinium in sodium borate glasses . Talanta , 17 : 105 – 108 .
  • Seiler , K. and Simon , W. 1992 . Theoretical aspects of bulk optode membranes . Anal. Chim. Acta , 266 : 73 – 87 .
  • Seitz , R. 1991 . Fiber Optic Chemical Sensors and Biosensors , edited by O.S. Wolfbeis , vol. 2 . Boca Raton , Fl. : CRC Press .
  • Siriwardane , R.V. 1990 . Oxidative coupling of methane over calcium oxide and gadolinium oxide promoted with sodium pyrophosphate . J. Catal. , 123 : 496 – 512 .
  • Siriwardane , R.V. and Shamsi , A. 1990 . Oxidative coupling of methane over calcium manganate and gadolinium manganate perovskites promoted with sodium pyrophosphate . Appl. Cat. , 60 : 119 – 136 .
  • Soenen , S.J.H. , Desender , L. , and Cuyper , M.D. 2007 . Complexation of gadolinium(III) ions on top of nanometre-sized magnetoliposomes . Int. J. Enviro. Anal. Chem. , 87 : 783 – 796 .
  • Taketatsu , T. and Sato , A. 1978 . Spectrophotofluorimetric determination of gadolinium with triethylenetetramine-n,n,n′,n′,n′″,n′″-hexaacetic acid . Anal. Chim. Acta , 98 : 397 – 399 .
  • Winget , J.G. and Lindstrom , R.E. 1971 . Liquid-liquid chromatographic separation of neodymium, samarium, and gadolinium . Sep. Sci. Tech. , 6 : 573 – 581 .
  • Zamani , H.A. , Rajabzadeh , G. , Ganjali , M.R. , and Norouzi , P. 2007 . Determination of gadolinium(III) ions in soil and sediment samples by a novel gadolinium membrane sensor based on 6-methyl-4-{[1-(2-thienyl)methylidene]amino}3-thioxo-3,4-dihydro-1,2,4-triazin-5-(2H)-one . Anal. Chim. Acta , 598 : 51 – 57 .
  • Zamani , H.A. , Ganjali , M.R. , Norouzi , P. , and Meghdadi , S. 2008 . Application of novel praseodymium(III) PVC-membrane electrode for determination of Pr(III) ions in soil and sediment samples . Anal. Lett. , 41 : 902 – 906 .

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.