高等学校化学学报
高等學校化學學報
고등학교화학학보
CHEMICAL JOURNAL OF CHINESE UNIVERSITIES
2014年
7期
1523-1528
,共6页
邵克让%李建娇%安兴才%雷自强%苏碧桃
邵剋讓%李建嬌%安興纔%雷自彊%囌碧桃
소극양%리건교%안흥재%뢰자강%소벽도
Ag+ / Ag/ ZnO%多孔纳米结构纤维材料%模板辅助两步法%光催化性能
Ag+ / Ag/ ZnO%多孔納米結構纖維材料%模闆輔助兩步法%光催化性能
Ag+ / Ag/ ZnO%다공납미결구섬유재료%모판보조량보법%광최화성능
Ag+/Ag/ZnO%Porous nano-structured fiber material%Template-assisted two-steps method%Photocatalytic property
借助棉花纤维模板,采用两步法制备了 Ag+/ Ag/ ZnO 多孔纳米结构纤维材料,并利用 X 射线衍射(XRD)、 X 射线光电子能谱(XPS)、扫描电子显微镜(SEM)和紫外-可见光谱(UV-Vis)等对其进行了表征.以亚甲基蓝(MB)的脱色降解为模型反应,考察了银修饰量(摩尔分数,0~1.50%)对 ZnO 纳米结构纤维材料光催化性能的影响.结果表明,利用模板辅助的两步法制备了 Ag+-Ag 共修饰的 ZnO 多孔纳米结构纤维材料 Ag+/ Ag/ ZnO, Ag+和 Ag 通过改变 ZnO 的晶胞结构、光吸收特性及形貌等影响其光催化性能;在可见光条件下, Ag+/ Ag/ ZnO 的催化性能优于纯 ZnO,且与修饰量有关.
藉助棉花纖維模闆,採用兩步法製備瞭 Ag+/ Ag/ ZnO 多孔納米結構纖維材料,併利用 X 射線衍射(XRD)、 X 射線光電子能譜(XPS)、掃描電子顯微鏡(SEM)和紫外-可見光譜(UV-Vis)等對其進行瞭錶徵.以亞甲基藍(MB)的脫色降解為模型反應,攷察瞭銀脩飾量(摩爾分數,0~1.50%)對 ZnO 納米結構纖維材料光催化性能的影響.結果錶明,利用模闆輔助的兩步法製備瞭 Ag+-Ag 共脩飾的 ZnO 多孔納米結構纖維材料 Ag+/ Ag/ ZnO, Ag+和 Ag 通過改變 ZnO 的晶胞結構、光吸收特性及形貌等影響其光催化性能;在可見光條件下, Ag+/ Ag/ ZnO 的催化性能優于純 ZnO,且與脩飾量有關.
차조면화섬유모판,채용량보법제비료 Ag+/ Ag/ ZnO 다공납미결구섬유재료,병이용 X 사선연사(XRD)、 X 사선광전자능보(XPS)、소묘전자현미경(SEM)화자외-가견광보(UV-Vis)등대기진행료표정.이아갑기람(MB)적탈색강해위모형반응,고찰료은수식량(마이분수,0~1.50%)대 ZnO 납미결구섬유재료광최화성능적영향.결과표명,이용모판보조적량보법제비료 Ag+-Ag 공수식적 ZnO 다공납미결구섬유재료 Ag+/ Ag/ ZnO, Ag+화 Ag 통과개변 ZnO 적정포결구、광흡수특성급형모등영향기광최화성능;재가견광조건하, Ag+/ Ag/ ZnO 적최화성능우우순 ZnO,차여수식량유관.
Ag+ / Ag / ZnO porous nano-structured fiber materials were prepared by the template-assisted two-steps method and characterized by thermogravimetric analysis(TG), X-ray diffraction(XRD), X-ray photoe-lectron spectroscopy(XPS), scanning electron microscopy(SEM) and UV-Vis spectroscopy(UV-Vis) tech-niques. The effect of modified silver amount(molar fraction, 0-1. 5% ) on the photocatalytic property of ZnO materials was studied by the degradation of methylene blue(MB) as the model reaction. The results show that the Ag+-Ag co-modified ZnO porous nano-structured fiber materials are successfully prepared via the template-assisted two-steps method and the Ag+-Ag co-modifification affects the photocatalytic performance of ZnO mate-rials by affecting its cell structure and light adsorption property and morphology. Under the irradiation of visi-ble light, the Ag+ / Ag / ZnO porous nano-structured fiber materials showed better catalytic performance than pure ZnO and the catalytic perfrmace of Ag+ / Ag / ZnO is related to the modified amount of Ag+-Ag. In this pa-per, the way of Ag+ and Ag for improving photocatalytic performance of the ZnO materials was discussed. And the obtained results are helpful to understand the photocatalytic phenomena and mechanisms on the multi-structured material.