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纳米氧化镍微粉的制备及光吸收谱
引用本文:汪国忠,张立德,牟季美.纳米氧化镍微粉的制备及光吸收谱[J].物理化学学报,1997,13(5):445-448.
作者姓名:汪国忠  张立德  牟季美
作者单位:Institute of Solid State Physics,Chinese Academy of Sciences,Hefei 230031,P.R.China,Department of Science and Engineering of Material,University of Science and Technology of China,Hefei 230026,P.R.China
基金项目:国家重大基础研究“攀登”基金
摘    要:

关 键 词:纳米微粉  NiO  共沉积  光吸收  红移  蓝移  
收稿时间:1996-07-15
修稿时间:1996-12-25

Preparation and optical Absorption of Nanometer-sized NiO Powder
Wang Guo-Zhong,Zhang Li-De,Mou Ji-Mei.Preparation and optical Absorption of Nanometer-sized NiO Powder[J].Acta Physico-Chimica Sinica,1997,13(5):445-448.
Authors:Wang Guo-Zhong  Zhang Li-De  Mou Ji-Mei
Institution:Institute of Solid State Physics,Chinese Academy of Sciences,Hefei 230031,P.R.China|Department of Science and Engineering of Material,University of Science and Technology of China,Hefei 230026,P.R.China
Abstract:Uniform nanosized NiO particles were prepared by a chemical coprecipitation using NiCl2?6H2O as the starting material. The relationship between various annealing temperatures and grain size of NiO crystallite was investigated. Optical reflectivity spectra of Nanometer-sized NiO powders at room temperature were studied. The results show that seven optical absorption bands (P1、 P2、P3、P4、P5、P6 and P7) with the peak energies of 3.30, 2.99, 2.78, 2.25,1.92, 1.72 and 1.07eV, respectively, are located on a continuous refiectivity background. P1、 P2、P3 and P4 exhibit "blue shift", but P5、P6 and P7 present "red shift" in comparison with that of single crystal NiO. The continuous reflectivity background increases rapidly with increasing the annealing temperature from 500℃ to 600℃ to 700℃. The origins of P1 to P7 and the reasons of "blue shift", "red shift" and the increase of the reflectivity background with increasing the annealing temperature have been analyzed in detail.
Keywords:Nnanometer-sized powder  NiO  Coprecipitation  Optical absorption  Redshift  Blue shift
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