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Sr掺杂量对La_(1-x)Sr_xMnO_(3-δ)离子导电性能的影响 被引量:10
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作者 夏正才 唐超群 周东祥 《功能材料》 EI CAS CSCD 北大核心 2000年第2期155-156,共2页
本文从La1 -xSrxMnO3-δ材料的缺陷结构出发 ,探讨了材料在高温条件下离子 (氧离子 )导电的形成机制。分析了Sr掺杂量对氧离子导电性的影响 ,发现当Sr掺杂量x =0 .5时 ,La1 -xSrxMnO3-δ材料的离子电导率达到最大 ,因为在这一掺杂浓度... 本文从La1 -xSrxMnO3-δ材料的缺陷结构出发 ,探讨了材料在高温条件下离子 (氧离子 )导电的形成机制。分析了Sr掺杂量对氧离子导电性的影响 ,发现当Sr掺杂量x =0 .5时 ,La1 -xSrxMnO3-δ材料的离子电导率达到最大 ,因为在这一掺杂浓度时 ,材料中形成了最佳的氧空 (氧离子 )传输通道。 展开更多
关键词 离子导电性质 La1-xSrxMnO3-δ 锶掺杂
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Preparation and properties of PEO/LiClO_4/KH560-SiO_2 composite polymer electrolyte by sol-gel composite-in-situ method 被引量:4
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作者 潘春跃 高金环 +2 位作者 张倩 冯庆 巢猛 《Journal of Central South University of Technology》 2008年第3期295-300,共6页
Composite polymer electrolytes based on polyethylene oxide(PEO) were prepared by using LiClO4 as doping salt and silane-modified SiO2 as filler. SiO2 was formed in-situ in (PEO)8LiClO4 matrix by the hydrolysis and con... Composite polymer electrolytes based on polyethylene oxide(PEO) were prepared by using LiClO4 as doping salt and silane-modified SiO2 as filler. SiO2 was formed in-situ in (PEO)8LiClO4 matrix by the hydrolysis and condensation reaction of Si(OC4H9)4. The crystallinity,morphology and ionic conductivity of composite polymer electrolyte films were examined by differential scanning calorimetry,scanning electron microscopy,atom force microscopy and alternating current impedance spectroscopy,respectively. Compared with the crystallinity of the unmodified SiO2 as inert filler,that of composite polymer electrolytes is decreased. The results show that silane-modified SiO2 particles are uniformly dispersed in (PEO)8LiClO4 composite polymer electrolyte film and the addition of silane-modified SiO2 increases the ionic conductivity of the (PEO)8LiClO4 more noticeably. When the mass fraction of SiO2 is about 10%,the conductivity of (PEO)8LiClO4-modified SiO2 attains a maximum value of 4.8×10-5 S·cm-1. 展开更多
关键词 polyethylene oxide(PEO) SOL-GEL composite-in-situ polymer electrolyte ionic conductivity
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Fast-ionic conductor Li_(2.64)(Sc_(0.9)Ti_(0.1))_(2)(PO_(4))_(3) doped PVDF-HFP hybrid gel-electrolyte for lithium ion batteries 被引量:5
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作者 WANG Zhen-yu LI Cong +5 位作者 HUANG Ying-de HE Zhen-jiang YAN Cheng MAO Jing DAI Ke-hua ZHENG Jun-chao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期2980-2990,共11页
With increasing demand on energy density of lithium-ion battery,wide electrochemical window and safety performance are the crucial request for next generation electrolyte.Gel-electrolyte as a pioneer for electrolyte s... With increasing demand on energy density of lithium-ion battery,wide electrochemical window and safety performance are the crucial request for next generation electrolyte.Gel-electrolyte as a pioneer for electrolyte solidization development aims to solve the safety and electrochemical window problems.However,low ionic conductivity and poor physical performance prohibit its further application.Herein,a fast-ionic conductor(Li_(2.64)(Sc_(0.9)Ti_(0.1))_(2)(PO_(4))_(3))(LSTP)was added into poly(vinylidene fluoride-co-hexafluoropropylene)(PVDF-HFP)base gel-electrolyte to enhance mechanical properties and ionic conductivity.Evidences reveal that LSTP was able to weaken interforce between polymer chains,which increased the ionic conductibility and decreased interface resistance during the cycling significantly.The obtained LiFePO_(4)/hybrid gel-electrolyte/Li-metal coin cell exhibited excellent rate capacity(145 mA·h/g at 1C,95 mA·h/g at 3C,28℃)which presented a potential that can be comparable with commercialized liquid electrolyte system. 展开更多
关键词 lithium ion battery hybrid gel-electrolyte fast-ionic conductor inorganic filler electrochemical performance
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