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作 者:梁晓韵 梁威威[1] 李旭仙 许海珊 万霞[1] 铁绍龙[1]
机构地区:[1]华南师范大学化学与环境学院,广州510006
出 处:《华南师范大学学报(自然科学版)》2015年第3期45-50,共6页Journal of South China Normal University(Natural Science Edition)
基 金:国家自然科学基金项目(11374109)
摘 要:采用直接沉淀法合成了具有六棱柱形貌的Cu2+掺杂ZnO双晶结构材料,研究了Cu2+的存在对ZnO双晶的形成及形貌的影响,发现溶液中存在的Cu2+物质的量浓度越高,获得的Zn(Cu)O材料粒径越大,形貌从细长棒形逐步变为短粗六方柱体,长径比也从10∶1变到1.2∶1.采用简单的碱腐蚀法获得了管状结构的Cu2+掺杂Zn(Cu)O材料,并探讨了管状结构的形成机理.Cu掺杂使得Zn(Cu)O样品的绿光发射由550 nm蓝移至520 nm附近,且强度大幅增加.形成管状结构使绿光发射进一步增强,该发射由Cu2+掺杂引起的样品内部的Cu2+与Cu+之间的相互转变引起.The Cu-doped ZnO twinned structure materials with hexagonal prism morphology were synthesized by di rect precipitation and the effects of Cu^2 + ion on the formation of twinned structure and morphology were investigated. With the increase of Cu^2 + concentration in reaction solution the particle sizes of as-prepared ZnO materials increased following the change of morphologies from slender rod to stumpy hexagonal prism and the decrease of lengthdiameter ratios from 10:1 to 1.2: 1. The tubular Cu-doped ZnO materials were obtained via corroding process by concentrated aqueous alkali and the formation mechanism was proposed. The fluorescence properties of Zn (Cu) O materials were studied and the Cu-doped ZnO showed broad and strong green emission at 520 nm, attributed to the transition of copper ion between Cu^2 + and Cu^2+ in interior of ZnO crystal. The formation of tubular construction en- hanced the intensity of green emission.
关 键 词:Cu掺杂ZnO 管状Zn(Cu)O材料 碱腐蚀法 光致荧光
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