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氮化铝晶体的生长惯习面和晶体形态 被引量:10
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作者 傅仁利 赵宇龙 周和平 《人工晶体学报》 EI CAS CSCD 北大核心 2004年第3期310-315,共6页
本文采用氧化铝碳热还原方法制备出了多种形态的氮化铝单晶 (晶须 )。通过透射电子显微镜电子衍射和X射线单晶衍射分析 ,确定了氮化铝单晶常见的生长惯习面 ,并分析和讨论了氮化铝晶须形态与氮化铝晶体结构与生长惯习面的关系。具有规... 本文采用氧化铝碳热还原方法制备出了多种形态的氮化铝单晶 (晶须 )。通过透射电子显微镜电子衍射和X射线单晶衍射分析 ,确定了氮化铝单晶常见的生长惯习面 ,并分析和讨论了氮化铝晶须形态与氮化铝晶体结构与生长惯习面的关系。具有规则六棱柱锥形的AlN晶须的生长取向为 [0 0 0 1]晶向 ,而叶片状和四方截面形状的AlN晶须则大多沿〈2 1- 1- 3- 〉晶向进行生长 ,细小的薄片状AlN晶须则多以 { 10 1- 0 }面和 { 10 1- 1}面为生长面。 展开更多
关键词 氮化铝 晶体 生长惯习面 晶体形态 碳热还原方法 晶须
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Synthesis and characterization of triclinic structural LiVPO_4F as possible 4.2 V cathode materials for lithium ion batteries 被引量:8
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作者 钟胜奎 尹周澜 +1 位作者 王志兴 陈启元 《Journal of Central South University of Technology》 EI 2007年第3期340-343,共4页
A potential 4.2 V cathode material LiVPO4F for lithium batteries was prepared by two-step reaction method based on a carbon-thermal reduction (CTR) process. Firstly, V2O5, NH4H2PO4 and acetylene black are reacted un... A potential 4.2 V cathode material LiVPO4F for lithium batteries was prepared by two-step reaction method based on a carbon-thermal reduction (CTR) process. Firstly, V2O5, NH4H2PO4 and acetylene black are reacted under an Ar atmosphere to yield VPO4. The transition-metal reduction is facilitated by the CTR based on C→CO transition. These CTR conditions favor stabilization of the vanadium as V^3+ as well as leaving residual carbon, which is useful in the subsequent electrode processing. Secondly, VPO4 reacts with ElF to yield LiVPO4F product. The property of the LiVPO4F was investigated by X-ray diffractometry (XRD), scanning electron microscopy (SEM) and electrochemical measurement. XRD studies show that LiVPO4F synthesized has triclinic structure(space group p I ), isostructural with the naturally occurring mineral tavorite, EiFePO4-OH. SEM image exhibits that the particle size is about 2μm together with homogenous distribution. Electrochemical test shows that the initial discharge capacity of LiVPO4F powder is 119 mA·h/g at the rate of 0.2C with an average discharge voltage of 4.2V (vs Ei/Li^+), and the capacity retains 89 mA·h/g after 30 cycles. 展开更多
关键词 lithium ion batteries cathode material LIVPO4F carbon-thermal reduction method
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