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      Doped-LiKSO_4계의 안정화 및 전기전도도 = A Study on the Stabilization and Electrical Conductivity of the doped-LiKSO_4 System

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      https://www.riss.kr/link?id=A19599335

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      The LiKSO_4 systems were synthesized by the different kinds of Ba doping methods. All kind of synthesized systems have many compounds which are identified as LiKSO_4 doped with Ba, α-K_2SO_4, Li_2SO_4, etc. From this, it can be found that synthesized specimens form composites and X-ray results reveal that Li_10K_0.9Ba_0.1(SO_4)_(1+0.05) system has orthorombic structure whose lattice parameter, a_0 and c_0 arc increased by the doping of Ba due to the size effect. Substitution site of Ba^2+ is K^+(I) site. The room temperature conductivity of Li_10K_0.9Ba_0.1(SO_4)_(1+0.05) was increased by one order of magnitude higher than that of pure LiKSO_4 and this system has one resistance factor and one capacity factor which are considered as bulk properties.
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      The LiKSO_4 systems were synthesized by the different kinds of Ba doping methods. All kind of synthesized systems have many compounds which are identified as LiKSO_4 doped with Ba, α-K_2SO_4, Li_2SO_4, etc. From this, it can be found that synthesized...

      The LiKSO_4 systems were synthesized by the different kinds of Ba doping methods. All kind of synthesized systems have many compounds which are identified as LiKSO_4 doped with Ba, α-K_2SO_4, Li_2SO_4, etc. From this, it can be found that synthesized specimens form composites and X-ray results reveal that Li_10K_0.9Ba_0.1(SO_4)_(1+0.05) system has orthorombic structure whose lattice parameter, a_0 and c_0 arc increased by the doping of Ba due to the size effect. Substitution site of Ba^2+ is K^+(I) site. The room temperature conductivity of Li_10K_0.9Ba_0.1(SO_4)_(1+0.05) was increased by one order of magnitude higher than that of pure LiKSO_4 and this system has one resistance factor and one capacity factor which are considered as bulk properties.

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