本文采用水热法,在温度430℃,填充度35%,矿化剂为3mol/L KOH,前驱物为添加适量N iC l2.6H2O的Zn(OH)2,反应时间24h,合成了Zn1-xN ixO稀磁半导体晶体。当在Zn(OH)2中添加一定量的N iC l2.6H2O为前驱物,水热反应产物为掺杂N i的多种形态Zn...本文采用水热法,在温度430℃,填充度35%,矿化剂为3mol/L KOH,前驱物为添加适量N iC l2.6H2O的Zn(OH)2,反应时间24h,合成了Zn1-xN ixO稀磁半导体晶体。当在Zn(OH)2中添加一定量的N iC l2.6H2O为前驱物,水热反应产物为掺杂N i的多种形态ZnO混合晶体,对其个体较大的晶体中进行电子探针测量表明,前驱物中的添加量和晶体中实际掺入量有很大的差异,只有少量的N i离子掺入ZnO,最大N i原子分数含量为0.62%。采用超导量子干涉磁强计测量材料的磁性,发现在室温以下,晶体的磁化强度不随温度升高而下降。在室温下,存在明显的磁饱和现象和磁滞回线,说明具有室温下的铁磁性。展开更多
In this paper different shapes of ZnO crystals were synthesized by hydrotherma l method when different concentrations of mineralizer were used. When KOH was le ss than 2mol·L-1 and the fill factor was approximate...In this paper different shapes of ZnO crystals were synthesized by hydrotherma l method when different concentrations of mineralizer were used. When KOH was le ss than 2mol·L-1 and the fill factor was approximately 35%at 350℃, ZnO cryst als were synthesized with size of several hundred nanometer or several micron. T he shapes of crystals were hexagonal cones. When 3mol·L-1 KOH was used as mine ralize at 350℃and the fill factor was approximately 35%, the crystals with man y different sizes were synthesized, the size of maximal crystal was over 100 mic ron, the small-size crystals were only several micron. When mineralizer KOH was less than 1mol·L-1 and the fill factor was approximately 35%at 430℃, ZnO cr ystals were synthesized with size of several hundred nanometer or several micron . The shapes of crystals were hexagonal cones. When 1.5mol·L-1 KOH or 2mol·L -1 KOH was used as mineralize at 430℃and the fill factor was approximately 35 %, the high quality and hexagonal prism crystals were synthesized with many dif ferent sizes, the size of maximal crystal was over 100 micron, the small-size c rystal was only several micron. Especially when 3mol·L-1 KOH was used as miner alize at 430℃and the fill factor was approximately 35%, the high quality and h exagonal prism crystals were synthesized <IMG SRC="IMAGE/09150023.JPG" HEIGHT=11 WIDTH=23><IMG SRC="IMAGE/09150024.JPG" HEIGHT=11 WIDTH=23><IMG SRC="IMAGE/09150 025.JPG" HEIGHT=11 WIDTH=23><IMG SRC="IMAGE/09150026.JPG" HEIGHT=11 WIDTH=23><IM G SRC="IMAGE/09150027.JPG" HEIGHT=11 WIDTH=23>with size of 1mm along c axis. The exposed faces were hexagonal faces m{}, hexagonal cone faces p{}, negative pola r faces O{}. In addition, many crystals with the shape of hexagonal cone and in several micron to 50 μm of size were present. The exposed faces were hexagonal cone faces p{}, negative polar faces {}.展开更多
文摘本文采用水热法,在温度430℃,填充度35%,矿化剂为3mol/L KOH,前驱物为添加适量N iC l2.6H2O的Zn(OH)2,反应时间24h,合成了Zn1-xN ixO稀磁半导体晶体。当在Zn(OH)2中添加一定量的N iC l2.6H2O为前驱物,水热反应产物为掺杂N i的多种形态ZnO混合晶体,对其个体较大的晶体中进行电子探针测量表明,前驱物中的添加量和晶体中实际掺入量有很大的差异,只有少量的N i离子掺入ZnO,最大N i原子分数含量为0.62%。采用超导量子干涉磁强计测量材料的磁性,发现在室温以下,晶体的磁化强度不随温度升高而下降。在室温下,存在明显的磁饱和现象和磁滞回线,说明具有室温下的铁磁性。
文摘In this paper different shapes of ZnO crystals were synthesized by hydrotherma l method when different concentrations of mineralizer were used. When KOH was le ss than 2mol·L-1 and the fill factor was approximately 35%at 350℃, ZnO cryst als were synthesized with size of several hundred nanometer or several micron. T he shapes of crystals were hexagonal cones. When 3mol·L-1 KOH was used as mine ralize at 350℃and the fill factor was approximately 35%, the crystals with man y different sizes were synthesized, the size of maximal crystal was over 100 mic ron, the small-size crystals were only several micron. When mineralizer KOH was less than 1mol·L-1 and the fill factor was approximately 35%at 430℃, ZnO cr ystals were synthesized with size of several hundred nanometer or several micron . The shapes of crystals were hexagonal cones. When 1.5mol·L-1 KOH or 2mol·L -1 KOH was used as mineralize at 430℃and the fill factor was approximately 35 %, the high quality and hexagonal prism crystals were synthesized with many dif ferent sizes, the size of maximal crystal was over 100 micron, the small-size c rystal was only several micron. Especially when 3mol·L-1 KOH was used as miner alize at 430℃and the fill factor was approximately 35%, the high quality and h exagonal prism crystals were synthesized <IMG SRC="IMAGE/09150023.JPG" HEIGHT=11 WIDTH=23><IMG SRC="IMAGE/09150024.JPG" HEIGHT=11 WIDTH=23><IMG SRC="IMAGE/09150 025.JPG" HEIGHT=11 WIDTH=23><IMG SRC="IMAGE/09150026.JPG" HEIGHT=11 WIDTH=23><IM G SRC="IMAGE/09150027.JPG" HEIGHT=11 WIDTH=23>with size of 1mm along c axis. The exposed faces were hexagonal faces m{}, hexagonal cone faces p{}, negative pola r faces O{}. In addition, many crystals with the shape of hexagonal cone and in several micron to 50 μm of size were present. The exposed faces were hexagonal cone faces p{}, negative polar faces {}.