Zn 0.95 Mn 0.05 의 제조 및 광화학적 특성

ZnO and Mn-substituted $Zn_{0.95}Mn_{0.05}O$ were synthesized by using precipitation method. $Zn_{0.95}Mn_{0.05}O$ compound absorbed UV light as well as hole range of visible light ($400{\sim}800$ nm). Results obtained revealed that $Zn_{0.95}Mn_{0.05}O$ showed higher activity than P-25 for visible-...

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Veröffentlicht in:Journal of the Korean Chemical Society 2009, Vol.53 (5), p.560-564
Hauptverfasser: 정동운, Jung, Dong-woon
Format: Artikel
Sprache:kor
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Zusammenfassung:ZnO and Mn-substituted $Zn_{0.95}Mn_{0.05}O$ were synthesized by using precipitation method. $Zn_{0.95}Mn_{0.05}O$ compound absorbed UV light as well as hole range of visible light ($400{\sim}800$ nm). Results obtained revealed that $Zn_{0.95}Mn_{0.05}O$ showed higher activity than P-25 for visible-photocatalytic degradation of 1,4- dichlorobenzene. 용액침전법에 의해 ZnO 및 $Zn_{0.95}Mn_{0.05}O$를 제조하였다. Mn이 5% 치환된 ZnO 시료는 순수한 ZnO의 띠 간격인 3.37 eV (380 nm 흡광)로부터 1.50 eV (800 nm 흡광)까지 띠 간격이 줄어들게 되어 자외선 영역 뿐 아니라 가시광선 전체 영역에서도 흡광이 발생하였다. 가시광선에서의 광촉매 활성에서도 $Zn_{0.95}Mn_{0.05}O$ 시료는 P-25보다도 더 높은 활성도를 나타냈다.
ISSN:1017-2548