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结晶碳酸钕的水热合成、外观形貌及其组成

Hydrothermal Synthesis,Composition and Morphology of Crystalline Neodymium Carbonate

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【作者】 吴燕利孙伟丽冯晓平徐欣李永绣

【Author】 WU Yan-Li1,2 SUN Wei-Li1 FENG Xiao-Ping1 XU Xin1 LI Yong-Xiu,1 (1Research Center for Rare Earths & Nano/micro Functional Materials, Nanchang University, Nanchang 330047) (2Jiangxi Key Laboratory of Organic Functional Molecules, Jiangxi Science and Technology Normal College, Nanchang 330013)

【机构】 南昌大学稀土与微纳功能材料研究中心南昌大学稀土与微纳功能材料研究中心 南昌330047 江西省有机功能分子重点实验室江西科技师范学院南昌330013南昌330047

【摘要】 Crystalline neodymium carbonates were prepared by treating the amorphous precipitate formed from the reaction between neodymium chloride and ammonium bicarbonate under hydrothermal condition. Their composition, morphology and crystal phase were identified by means of elemental analysis, SEM and XRD. It was found that Nd2(CO3)3·2.5H2O with tengerite-type structure and sheet morphology was obtained when the feed molar ratio(FMR=n(NH4)2CO3/ NdCl3)was 2 or 1.8 and hydrothermally treated at 150 ℃ for 12h. However, orthogonal NdOHCO3 particles agglomerated with long rod crystals were formed when lowering FMR to 1.5 under the same hydrothermal condition. Phase transformation from tengerite-type Nd2(CO3)3·2.5H2O to orthogonal NdOHCO3 was occurred when increasing hydrothermal temperature or prolonging hydrothermal time, which is beneficial to the preparation of neodymium hydroxyl-carbonate with neodymium oxide content higher than 70%.

【Abstract】 Crystalline neodymium carbonates were prepared by treating the amorphous precipitate formed from the reaction between neodymium chloride and ammonium bicarbonate under hydrothermal condition. Their composition, morphology and crystal phase were identified by means of elemental analysis, SEM and XRD. It was found that Nd2(CO3)3·2.5H2O with tengerite-type structure and sheet morphology was obtained when the feed molar ratio(FMR=n(NH4)2CO3/ NdCl3)was 2 or 1.8 and hydrothermally treated at 150 ℃ for 12h. However, orthogonal NdOHCO3 particles agglomerated with long rod crystals were formed when lowering FMR to 1.5 under the same hydrothermal condition. Phase transformation from tengerite-type Nd2(CO3)3·2.5H2O to orthogonal NdOHCO3 was occurred when increasing hydrothermal temperature or prolonging hydrothermal time, which is beneficial to the preparation of neodymium hydroxyl-carbonate with neodymium oxide content higher than 70%.

【基金】 国家自然科学基金(No.59764001,201610002);江西省教育厅重点项目(2006)资助
  • 【文献出处】 无机化学学报 ,Chinese Journal of Inorganic Chemistry , 编辑部邮箱 ,2007年03期
  • 【分类号】O614.335
  • 【被引频次】14
  • 【下载频次】259
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