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流延法制备高致密固态电解质LATP的研究 被引量:2

Study on Dense Solid Electrolyte LATP Prepared by Tape-casting
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摘要 采用溶胶凝胶法合成了超细固态电解质Li1.3Al0.3Ti1.7(PO4)3(LATP)前驱体粉体,通过配制浆料和流延工艺制备了加工性能良好的LATP素坯体。利用差示扫描量热分析了LATP前驱体的热分解过程,采用X射线衍射、扫描电镜、交流阻抗法对不同烧结工艺条件下LATP玻璃-陶瓷片的结构、形貌和电导率进行分析表征。结果表明,采用溶胶凝胶法制备的LATP前驱体粉体的平均粒径为200 nm,且分布均匀。纳米级的粒径尺寸使得LATP前驱体粉末在烧结过程中具有更好的反应活性,结晶温度比固相烧结法制备的LATP下降了150℃,烧结性能好。通过优化烧结工艺,制备的LATP玻璃陶瓷体的相对密度高达99%,室温电导率为2.19×10-4S·cm-1。 Solgel method was adopted to prepare uhrafine Li1.3Al0.3Ti1.7(PO4)3(LATP) Powders. The LATP biscuit with excellent machinability was prepared by tape-casting technology. The biscuit presented a high density after sintered. DSC-TG was used to test thermal properties. The structure and morphology of the synthesized powders were investigated by XRD and SEM and ionic conduetivities were measured by EIS. The results show that the products prepared by sol-gel method were LATP powders with particle size of 200 -300 nm. The heating temperature of the synthesized powders decreased to 150 ℃, and it exhibited that the powders obtained better crystallinity. The relative density of sintered LATP sheet reached 99% and its conductivity was 2. 19×10^-4S·cm^-1.
出处 《广州化工》 CAS 2016年第15期58-61,共4页 GuangZhou Chemical Industry
基金 国防科技大学科研计划资助(No:ZDYYJCYJ20140701)
关键词 固态电解质 LATP NASICON结构 致密 溶胶凝胶 流延成型 solid electrolyte LATP NASICON-type dense sol-gel tape-casting
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  • 1Anantharamulu N, Koteswara R K, Rambabu G, et al. A wide-ranging review on nasicon type materials [ J ]. Journal of Materials Science, 2011,46(9) :2821-2837.
  • 2AONOH, SUGIMOTO E, SADAOKA Y, et al. Ionic conductivity of solid electrolytes based on lithium titanium phosphate systems [ J ]. Journal of Electrochemical Society, 1990,137 (4) : 1023-1027.
  • 3Jie Fu. Superionic conductivity in the system of glass-ceramics Li20- A12 03 -Ti02 -P2 05 [ J ]. Solid State Ionics, 1997,96 : 195-200.
  • 4黄祯,杨菁,陈晓添,陶益成,刘登,高超,龙鹏,许晓雄.无机固体电解质材料的基础与应用研究[J].储能科学与技术,2015,4(1):1-18. 被引量:22
  • 5何海亮,吴显明,陈上,赵俊海,丁其晨,陈守彬.固体电解质Li_(1.3)Al_(0.3)Ti_(1.7)(PO_4)_3烧结片的制备与表征[J].应用化工,2014,43(11):1945-1947. 被引量:2
  • 6黄勇,向军辉,谢志鹏,杨金龙.陶瓷材料流延成型研究现状[J].硅酸盐通报,2001,20(5):22-27. 被引量:49
  • 7Xu X, Wen Z, Wu X, et al. Lithium ion-conducting glass-ceramics of Lil. 5 M0.5 Gel. 5 ( PO4 ) 3 -x Li:z O ( x = 0 - O. 20 ) with good electrical and electrochemical properties [ J ]. Journal of the American Ceramic Society, 2007, 90(9) :2802-2806.
  • 8K Takabashi. A Super High Lithium Ion Conducting Solid Electrolyte of Grain Boundary Modified Lil.4Til.6 Alo.4( PO4 )3 [ J].Journal of The Electrochemical Society, 2012, 159 (4) : A342-A348.
  • 9Zhang P, Matsui M, Hirano A, et al. Water- stable lithium ion conducting solid electrolyte of the Lil. 4 A10.4 Til. 6-x Gex ( PO4 ) 3 system ( x = 0 ~ 1.0 ) with NASICON - type structure [ J ]. Solid State Ionics, 2013,253 : 175-180.
  • 10Xu X, Wen Z, Wu X, ct al. Dense nanostmctured solid electrolyte with high Li-ion conductivity by spark plasma sintering technique[ J]. Materials Research Bulletin, 2008,43 (8-9) :2334-2341.

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