• 제목/요약/키워드: Fluoride anion detection

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A Naked Eye Detection of Fluoride with Urea Receptors Which have both an Azo Group and a Nitrophenyl Group as a Signaling Group

  • Dang, Nhat Tuan;Park, Jin-Joo;Jang, Soon-Min;Kang, Jong-Min
    • Bulletin of the Korean Chemical Society
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    • 제31권5호
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    • pp.1204-1208
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    • 2010
  • Anion recognition via hydrogen-bonding interactions could be monitored with changes in UV-vis absorption spectra and in some cases easily monitored with naked eye. Urea receptors 1 and 2 connected with both an azo group and a nitrophenyl group as a signaling group for color change proved to be an efficient naked eye receptor for the fluoride ion. The anion recognition phenomena of the receptors 1 and 2 via hydrogen-bonding interactions were investigated through UV-vis absorption and $^1H$ NMR spectra.

간접 분광 검출법에 의한 음이온의 분석(I) (Analysis of Anions by Indirect Photometric Detection (I))

  • 박만기;김박광;박정일;김경호;이미영;정재은
    • 약학회지
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    • 제34권3호
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    • pp.215-218
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    • 1990
  • An ion chromatographic method based on indirect photometric detection of UV transparent anions was developed. Separation of anion was accomplished on strong anion exchange column (Waters SAX) using UV detector at 254 nm. Among examined UV-active additives (Dns-H, Dns-glu, Dnsser, Dns-val), Dns-glu showed the highest sensitivity. Studies on the effects of the pH and ionic strength of eluent revealed that the increase of pH and ionic strength of the eluent decreased capacity factor. The best eluent for the separation of acetate, fluoride, chloride, nitrate and bromide was $1\;{\times}\;10^{-4}M$ Dns-glu in 5 mM phosphate buffer (pH 6.30). The detection limit of chloride ion was 2.1 ng in this condition.

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불산 중 극미량 음이온 분석을 위한 고상 추출법 및 이온크로마토그래프를 이용한 동시분석법 확립 (Optimization of solid phase extraction and simultaneous determination of trace anions in concentrated hydrofluoric acid by ion chromatography)

  • 윤석환;조동호;김현지;신호상
    • 분석과학
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    • 제29권5호
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    • pp.219-224
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    • 2016
  • A sensitive method to detect trace anions in hydrofluoric acid (HF) by solid-phase extraction (SPE) clean-up and ion chromatography (IC) was described. Fluoride in HF solution was eliminated with solid-phase extraction, and residual fluoride, acetate, chloride, bromide, nitrate, phosphate and sulfate were consecutively separated with IC. The SPE parameters (selection of adsorbent, sample volume and pH, elution solvent and its volume) were optimized and selected. The removal effect of fluoride in HF solution was the best on Oasis WAX column, and the optimum conditions (1.0 mL of 25 % HF solution and 50 mM ammonium acetate 5 mL as elution solvent) were established by the variation of parameters. Under the established condition, the method detection limits of chloride, bromide, nitrate, phosphate, and sulfate were 0.04~0.30 µg/L in 25 % HF solutions (w/w) and the relative standard deviation was less than 5 % at concentrations of 20.0 and 40.0 µg/L. The concentrations of anions in a 25 % HF had detectable levels of 4.2 to 47.5 µg/L. The method was sensitive, reproducible and simple enough to permit the reliable routine analysis of anions in HF solution used in the process of producing semiconductors.