Determination of trace molybdenum by solid substrate-room temperature phosphorescence quenching method based on catalytic effect of H"2O"2 on ... [An article from: Analytica Chimica Acta] Buy on Amazon

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Determination of trace molybdenum by solid substrate-room temperature phosphorescence quenching method based on catalytic effect of H"2O"2 on ... [An article from: Analytica Chimica Acta]

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PublisherElsevier
ISBN / ASINB000RR71WQ
ISBN-13978B000RR71W0
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This digital document is a journal article from Analytica Chimica Acta, published by Elsevier in . The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.

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A new solid substrate-room temperature phosphorescence (SS-RTP) quenching method for the determination of trace molybdenum has been established. The SS-RTP can be quenched by H"2O"2 oxidizing [Rhod.B]^+.B[(C"6H"6)"4]^- ion association complex, which is formed of Rhod.B reacting with NaB(C"6H"6)"4 and [Rhod.B]^+.B[(C"6H"6)"4]^- ion association complex can emit strong and stable room temperature phosphorescence on filter paper substrate, while molybdenum can catalyze H"2O"2 to oxidize [Rhod.B]^+.B[(C"6H"6)"4]^- ion association complex to quench the SS-RTP sharply in HCl medium, heated at 90^oC for 10min. Based on the facts above, a new method for the determination of trace molybdenum has been proposed. When using PVA-H"3BO"3-NaOH to modify the surface of filter, the results showed that @DI"p of the system enhanced 1.5 times than that of unmodified. The linear range of this method is 1.6-160agspot^-^1 (the sample volume: 0.40@mlspot^-^1), and the regression equation of working curve is @DI"p=18.23+0.8935m"M"o"("V"I")agspot^-^1, n=6, r=0.9980. The detection limit is 0.34agspot^-^1 (corresponding concentration: 8.5x10^-^1^6gml^-^1). This method has been successfully applied to the determination of trace molybdenum in actual samples with special feature such as wide linear range, high sensitivity, good repeatability, high selectivity and so on. Meanwhile, the mechanism of catalysis reaction is also discussed.
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