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Enhanced 2-Chorophenol Photodecomposition using Nano-Sized Mn-incorporated TiO2 Powders Prepared by a Solvothermal Method
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  • Enhanced 2-Chorophenol Photodecomposition using Nano-Sized Mn-incorporated TiO2 Powders Prepared by a Solvothermal Method
  • Enhanced 2-Chorophenol Photodecomposition using Nano-Sized Mn-incorporated TiO2 Powders Prepared by a Solvothermal Method
저자명
Kim. Dongjin,Im. Younghwan,Jeong. Kyung Mi,Park. Sun-Min,Um. Myeong-Heon,Kang. Misook
간행물명
Bulletin of the Korean Chemical Society
권/호정보
2014년|35권 8호|pp.2295-2298 (4 pages)
발행정보
대한화학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

To effectively destruct 2-chlorophenol, a representative sterile preservative, nanometer-sized Mn (0.5, 1.0, 3.0 mol %)-incorporated $TiO_2$ powders were synthesized by a solvothermal method. XRD result demonstrated that the Mn ingredients were perfectly inserted into $TiO_2$ framework. The Mn-$TiO_2$ particles exhibited an anatase structure with a particle size of below 20 nm. The absorbance was shifted to the higher wavelength on Mn-$TiO_2$ compared to that of $TiO_2$. Otherwise, the PL intensities which has a close relationship for recombination between holes and electrons significantly decreased on Mn-$TiO_2$. The photodecomposition for 2-chlorophenol in a liquid system was enhanced over Mn-doped $TiO_2$ compared with pure $TiO_2$: 2-chlorophenol of 50 ppm was completely decomposed after 12 h when 1.0 mol % Mn-$TiO_2$ was used. Consequently, the core of this paper is as follows. introducing Mn into $TiO_2$ framework reduced the band-gap, moreover, it played as an electron capture resulted to lower recombination between electrons and holes during photocatalytic reaction for removal of 2-cholophenol.