|
|
纳米立方LiF的液相制备及表征 |
王烈林1( ),曾阳1,谢华1,邓司浩1,李兴萍1,易发成1,蒋树庆2,周银行2 |
1. 西南科技大学 核废物与环境安全国防重点学科实验室 绵阳 621010 2. 中国工程物理研究院 核物理与化学研究所 绵阳 621900 |
|
Liquid Synthesis and Characterization of Nanosized Cubic Lithium Fluoride Particles |
Lielin WANG1( ),Yang ZENG1,Hua XIE1,Sihao DENG1,Xingping LI1,Facheng YI1,Shuqing JIANG2,Yinhang ZHOU2 |
1. Fundamental Science on Nuclear Wastes and Environmental Safety Laboratory, Southwest University of Science and Technology, Mianyang 621010, China 2. Institute of Nuclear Physics and Chemistry, China Academy of Engineering Physics, Mianyang 621900, China |
引用本文:
王烈林,曾阳,谢华,邓司浩,李兴萍,易发成,蒋树庆,周银行. 纳米立方LiF的液相制备及表征[J]. 材料研究学报, 2019, 33(4): 271-276.
Lielin WANG,
Yang ZENG,
Hua XIE,
Sihao DENG,
Xingping LI,
Facheng YI,
Shuqing JIANG,
Yinhang ZHOU.
Liquid Synthesis and Characterization of Nanosized Cubic Lithium Fluoride Particles[J]. Chinese Journal of Materials Research, 2019, 33(4): 271-276.
[1] | ZhouL J, LeZ Q. Inorganic Salt Industry Manual [M]. 2nd ed. Beijing: Chemical Industry Press, 1996 | [1] | (周连江, 乐志强. 无机盐工业手册 [M]. 2版. 北京: 化学工业出版社, 1996) | [2] | ShuW F, GaoY, DengZ H, et al. Preparation method of ultra-pure and highly active battery grade lithium fluoride [J]. Mod. Chem. Ind., 2017, 37(2): 141 | [2] | (舒伟锋, 高 月, 邓支华等. 超纯高活性电池级氟化锂的制备方法 [J]. 现代化工, 2017, 37(2): 141) | [3] | JiangC Y. Growth of LiF crystal [J]. J. Synthetic Cryst., 1979, (4): 1 | [3] | (蒋崇义. 氟化锂晶体生长 [J]. 人工晶体学报, 1979, (4): 1) | [4] | KongB G, ChenR F. The research of growing large size LiF single crystal by the czockralski method [J]. Opt. Instrum., 1995, 17(3): 12 | [4] | (孔宝国, 陈瑞芳. 提拉法生长大尺寸氟化锂单晶体的研究 [J]. 光学仪器, 1995, 17(3): 12) | [5] | JiS G, LiY H. Preparation of optical crystal used in vacuum ultraviolet band [J]. J. Synthetic Cryst., 2000, 29(S1): 108 | [5] | (纪慎功, 李艳红. 真空紫外波段光学晶体材料的研制 [J]. 人工晶体学报, 2000, 29(S1): 108) | [6] | FanZ D, WangQ T, YinL J, et al. Research progress of LiF crystal [J]. Bull. Chin. Ceram. Soc., 2010, 29: 893 | [6] | (范志达, 王强涛, 尹利君等. 氟化锂晶体的研究进展 [J]. 硅酸盐通报, 2010, 29: 893) | [7] | XuW, WuX Y. Application of fluoride lithium crystal dosimeter in NPP environmental dose monitoring in China [J]. Radiat. Prot. Bull., 2016, 36(3): 10 | [7] | (徐 伟, 乌晓燕. 氟化锂晶体剂量计用于我国核电站环境热点剂量监测 [J]. 辐射防护通讯, 2016, 36(3): 10) | [8] | KnollG F. Radiation detection and measurement [J]. Proceedings of the IEEE, 2010, 69: 495 | [9] | FranceschiniF, RuddyF H. Properties and applications of silicon carbide: silicon carbide neutron detectors [M]. Rijeka: InTech Europe, 2011 | [10] | ZhangJ, WangY P, GuoY, et al. Determination of measuring and annealing methods for LiF(Mg, Cu, P) thermoluminescence detectors [J]. Radiat Prot, 2003, 23(2): 122 | [10] | (张 建, 王亚平, 郭 勇等. LiF(Mg, Cu, P)热释光探测器测量、退火方式的确定. 辐射防护, 2003, 23(2): 122) | [11] | LiuH X. Lithium fluoride research progress of production [J]. Light Met., 2011, (3): 11 | [11] | (刘海霞. 氟化锂生产工艺研究进展 [J]. 轻金属, 2011, (3): 11) | [12] | LiuM G, WangM H, TangS K. Preparation and analysis of high-purity lithium fluoride [J]. Chin. Nucl. Sci. Tech. Rep., 1999: 381 | [12] | (刘妙根, 王茂涵, 唐书凯. 高纯氟化锂的制备与分析 [J]. 中国核科技报告, 1999: 381) | [13] | GoodenoughR D, JonesG D, AndersonR E. Recovery of lithium from lithiumbearing ores [P]. USA, 3295920, 1963 | [14] | GoodenoughR D. Lithium fluoride production [P]. USA, US3179495, 1965 | [15] | LiS Y, TengX G, ShaS P, et al. Review of preparation and analysis of high-purity LiF [J]. Ind. Miner. Process., 2006, 35(3): 34 | [15] | (李世友, 滕祥国, 沙顺萍等. 高纯氟化锂的制备与分析方法评述 [J]. 化工矿物与加工, 2006, 35(3): 34) | [16] | YuJ K. Progress in synthesis of high purity lithium fluoride [J]. Inorg. Chem. Ind., 2011, 43(5): 15 | [16] | (于剑昆. 高纯氟化锂的合成工艺进展 [J]. 无机盐工业, 2011, 43(5): 15) | [17] | HuQ Y, LiX H, WangZ X, et al. Process for producing high purity nano-lithium fluoride [P]. Chin Pat, 101195495, 2008 | [17] | (胡启阳, 李新海, 王志兴等. 高纯纳米氟化锂的制备方法 [P]. 中国专利, 101195495, 2008) | [18] | LuoC L, GongY, HanM. Formation of nanometer-sized LIF microclters and their properties of fractal aggregation [J]. J. Nanjing Univ . (Nat. Sci.), 1994, 17(3): 19 | [18] | (罗成林, 龚艳春, 韩 民. LiF纳米微簇的制备及其分形凝聚特征 [J]. 南京大学学报(自然科学版), 1994, 17(3): 19) | [19] | BellingerS L. Advanced microstructured semiconductor neutron detectors: design, fabrication, and performance [D]. Manhattan: Kansas State University, 2011 | [20] | GuanR B. Practical Handbook of Chemical Reagent Standards: Inorganic Reagent Fascicle [M]. Beijing: Standards Press of China, 2011 | [20] | (关瑞宝. 化学试剂标准实用手册: 无机试剂分册 [M]. 北京: 中国标准出版社, 2011) | [21] | LangfordJ I, WilsonA J C. Scherrer after sixty years: a survey and some new results in the determination of crystallite size [J]. J. Appl. Crystallogr., 1978, 11: 102 |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|