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作 者:赵俊锋[1] 陈建华[2,3] 陈文华[3] 沈晓冬[3] 陆春华[3]
机构地区:[1]常熟理工学院化学与材料工程系,常熟215500 [2]常熟理工学院江苏省新型功能材料重点建设实验室,常熟215500 [3]南京工业大学材料科学与工程学院,南京210009
出 处:《功能材料与器件学报》2010年第4期329-334,共6页Journal of Functional Materials and Devices
基 金:江苏省新型功能材料重点实验室开放基金项目
摘 要:采用水热法制备了不同比例Ni掺杂ZnO晶体。XRD结果表明,Ni掺杂浓度较低时,生成置换型氧化锌镍固溶体,当Ni掺杂浓度增加到5%时,Ni2+过饱和,析出部分立方NiO。FT-IR结果显示:当水热温度达到160℃时,粒子运动速率越快,晶格空隙越开放,Ni2+替代Zn2+形成固溶体的数目增多,掺杂ZnO在906cm-1附近出现了一个新的吸收带,并且随着掺杂浓度的增加,吸收带变强变宽;提高前驱物的pH值,实际进入ZnO晶格Ni2+浓度越高,造成的晶格缺陷越多,从而使吸收带出现了蓝移,表现出良好的红外吸收特性。Ni-doped ZnO crystals were synthesized by the hydrothermal method.XRD indicated that,the solid solution Ni2+/Zn2+O was synthesized when Ni doping content was 1%,2%,NiO appeared when the Ni doping concentrations was up to 5mol%.FT-IR spectra showed that when the hydrothermal temperatures reached 160℃,there were more open voids in the lattice,and more Ni2+ replaced Zn2+ in solid solution,a new absorption band appeared near 910cm-1,and the absorption band became stronger and wider with the increase of doping content;With enhanced of pH value,the more Ni2+ was actually getting into the ZnO lattice,the more defects occurred in the lattice,then a blue shift of absorption band was observed.And sample had a better infrared absorption in both mid and far-infrared.
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