Phosphate-selective fluorescent sensing microspheres based on uranyl salophene ionophores.
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[1] E. Bakker,et al. Fluorescent microsphere fiber optic microsensor array for direct iodide detection at low picomolar concentrations. , 2007, The Analyst.
[2] I. McKelvie,et al. On-line Removal of Sulfide Interference in Phosphate Determination by Flow Injection Analysis , 2006 .
[3] Amitava Das,et al. Urea and thiourea based efficient colorimetric sensors for oxyanions , 2005 .
[4] A. Radu,et al. Fiber-optic microsensor array based on fluorescent bulk optode microspheres for the trace analysis of silver ions. , 2005, Analytical chemistry.
[5] E. Lindner,et al. Detrimental changes in the composition of hydrogen ion-selective electrode and optode membranes , 2005 .
[6] I. McKelvie,et al. Evaluation of on-line preconcentration and flow-injection amperometry for phosphate determination in fresh and marine waters. , 2005, Talanta.
[7] Eric Bakker,et al. Imaging fiber microarray fluorescent ion sensors based on bulk optode microspheres , 2005 .
[8] G. Palleschi,et al. Investigation of amperometric detection of phosphate Application in seawater and cyanobacterial biofilm samples. , 2004, Talanta.
[9] E. Bakker,et al. Elimination of dimer formation in InIIIporphyrin-based anion-selective membranes by covalent attachment of the ionophore. , 2004, Analytical chemistry.
[10] David Scholefield,et al. Phosphate-selective electrodes containing immobilised ionophores , 2004 .
[11] A. Radu,et al. Rotating disk potentiometry for inner solution optimization of low-detection-limit ion-selective electrodes. , 2003, Analytical chemistry.
[12] Z. Brzózka,et al. Anion buffering in the internal electrolyte resulting in extended durability of phosphate-selective electrodes. , 2003, Analytical chemistry.
[13] M. Ganjali,et al. Novel monohydrogenphosphate sensor based on vanadyl salophen , 2003 .
[14] E. Bakker,et al. Quantitive binding constants of H(+)-selective chromoionophores and anion ionophores in solvent polymeric sensing membranes. , 2002, Talanta.
[15] Min Su Han,et al. Naked-eye detection of phosphate ions in water at physiological pH: a remarkably selective and easy-to-assemble colorimetric phosphate-sensing probe. , 2002, Angewandte Chemie.
[16] Z. Brzózka,et al. Durability of membranes containing uranyl salophenes , 2001 .
[17] S. Sasaki,et al. Design and synthesis of preorganized tripodal fluororeceptors based on hydrogen bonding of thiourea groups for optical phosphate ion sensing , 2001 .
[18] E. Bakker,et al. Monodisperse plasticized poly(vinyl chloride) fluorescent microspheres for selective ionophore-based sensing and extraction. , 2001, Analytical chemistry.
[19] D. Reinhoudt,et al. Stoichiometry of uranyl salophene anion complexes , 1998 .
[20] D. Reinhoudt,et al. H2PO4 -selective CHEMFETs with uranyl salophene receptors , 1998 .
[21] P. Bühlmann,et al. A phase boundary potential model for apparently "twice-nernstian" responses of liquid membrane ion-selective electrodes. , 1998, Analytical chemistry.
[22] David N. Reinhoudt,et al. Neutral anion receptors; synthesis and evaluation as sensing molecules in chemically modified field effect transistors (CHEMFETs) , 1997 .
[23] Ernö Pretsch,et al. Carrier-Based Ion-Selective Electrodes and Bulk Optodes. 1. General Characteristics. , 1997, Chemical reviews.
[24] Guo-Li Shen,et al. Polymeric membrane phosphate sensitive electrode based on binuclear organotin compound , 1997 .
[25] E Pretsch,et al. Selective optical sensing of silver ions in drinking water. , 1996, Analytical chemistry.
[26] I. McKelvie,et al. Determination of total phosphorus in waters and wastewaters by on-line UV/thermal induced digestion and flow injection analysis , 1996 .
[27] M. Mascini,et al. AP-GOD Biosensor Based on a Modified Poly(PHENOL) Film Electrode and Its Application in the Determination of Low Levels of Phosphate , 1995 .
[28] C M Carey,et al. Cyclic polyamine ionophore for use in a dibasic phosphate-selective electrode. , 1994, Analytical chemistry.
[29] U. Pedrazza,et al. Plasticizers for liquid polymeric membranes of ion-selective chemical sensors , 1994 .
[30] H. Kubo. Coulometric detection of peptides by reversed-phase liquid chromatography with a solid-phase reactor containing copper metal , 1994 .
[31] N. Chaniotakis,et al. Potentiometric phosphate selective electrode based on a multidendate—tin (IV) carrier , 1993 .
[32] P. Coulet,et al. Effect of enzyme ratio and enzyme loading on the performance of a bienzymatic electrochemical phosphate biosensor , 1993 .
[33] E. Bakker,et al. Synthesis and characterization of neutral hydrogen ion-selective chromoionophores for use in bulk optodes , 1993 .
[34] R. Buck,et al. The potentiometric pH response of chromoionophores used in optical sensors , 1993 .
[35] T. Osakai,et al. A voltammetric phosphate sensor based on heteropolyanion formation at the nitrobenzene/water interface , 1993 .
[36] E. Bakker,et al. Selectivity of ion-sensitive bulk optodes , 1992 .
[37] K. Seiler,et al. Reversible optical sensing membrane for the determination of chloride in serum , 1991 .
[38] D. Walt,et al. Sensitivity enhancement of fluorescent pH indicators by inner filter effects , 1991 .
[39] M A Arnold,et al. Phosphate-selective polymer membrane electrode. , 1988, Analytical chemistry.
[40] A. Montaser,et al. Laminar-flow torch for helium inductively coupled plasma spectrometry , 1988 .
[41] H. V. Malmstadt,et al. Mechanistic investigation of molybdenum blue method for determination of phosphate , 1967 .
[42] Eric Bakker,et al. Mechanistic insights into the development of optical chloride sensors based on the [9]mercuracarborand-3 ionophore. , 2003, Analytical chemistry.
[43] Z. Brzózka,et al. Why do uranyl salophene ionophores lose phosphate selectivity in time? The 1H NMR and UV/Vis studies , 2002 .
[44] E Pretsch,et al. Polymeric membrane electrodes for monohydrogen phosphate and sulfate. , 2000, Analytical chemistry.
[45] Hong-Yan. Yuan,et al. Surface-modified cobalt-based sensor as a phosphate-sensitive electrode , 1995 .
[46] K. Seiler,et al. Development of an ethanol-selective optode membrane based on a reversible chemical recognition process , 1991 .
[47] P. Coulet,et al. Phosphate-sensitive enzyme electrode : a potential sensor for environment control , 1990 .
[48] S. Wakida,et al. Phosphate ion-sensitive coated-wire/field-effect transistor electrode based on cobalt phthalocyanine with poly(vinyl chloride) as the membrane matrix , 1989 .