• 제목/요약/키워드: 리튬계 수소화물

검색결과 3건 처리시간 0.016초

LiAlH4-PVDF 전해질 복합체의 열확산 및 전기화학적 특성평가 (Evaluation of Thermal Diffusivity and Electrochemical Properties of LiAlH4-PVDF Electrolyte Composites)

  • 황준현;홍태환
    • 한국수소및신에너지학회논문집
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    • 제33권5호
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    • pp.574-582
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    • 2022
  • A lithium-ion battery exhibits high energy density but has many limitations due to safety issues. Currently, as a solution for this, research on solid state batteries is attracting attention and is actively being conducted. Among the solid electrolytes, sulfide-based solid electrolytes are receiving much attention with high ion conductivity, but there is a limit to commercialization due to the relatively high price of lithium sulfide, which is a precursor material. This study focused on the possibility of relatively inexpensive and light lithium hydride and conducted an experiment on it. In order to analyze the characteristics of LiAlH4, ion conductivity and thermal stability were measured, and a composites mixed with PVDF, a representative polymer electrolyte, was synthesized to confirm a change in characteristics. And metallurgical changes in the material were performed through XRD, SEM, and BET analysis, and ion conductivity and thermal stability were measured by EIS and LFA methods. As a result, Li3AlH6 having ion conductivity higher than LiAlH4 is formed by the synthesis of composite materials, and thus ion conductivity is slightly improved, but thermal stability is rapidly degraded due to structural irregularity.

리튬계 수소화물 전해질 복합막의 열확산 및 전기화학적 특성평가 (Evaluations of Thermal Diffusivity and Electrochemical Properties for Lithium Hydride and Electrolyte Composites)

  • 황준현;홍태환
    • 한국재료학회지
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    • 제32권10호
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    • pp.429-434
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    • 2022
  • There is ongoing research to develop lithium ion batteries as sustainable energy sources. Because of safety problems, solid state batteries, where electrolytes are replaced with solids, are attracting attention. Sulfide electrolytes, with a high ion conductivity of 10-3 S/cm or more, have the highest potential performance, but the price of the main materials is high. This study investigated lithium hydride materials, which offer economic advantages and low density. To analyze the change in ion conductivity in polymer electrolyte composites, PVDF, a representative polymer substance was used at a certain mass ratio. XRD, SEM, and BET were performed for metallurgical analyses of the materials, and ion conductivity was calculated through the EIS method. In addition, thermal conductivity was measured to analyze thermal stability, which is a major parameter of lithium ion batteries. As a result, the ion conductivity of LiH was found to be 10-6 S/cm, and the ion conductivity further decreased as the PVDF ratio increased when the composite was formed.

보란-염화리튬에 의한 유기화합물의 환원반응 (Effect of Lithium Chloride on the Borane Reduction of Organic Compound)

  • 윤능민;차진순
    • 대한화학회지
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    • 제22권1호
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    • pp.37-44
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    • 1978
  • $BH_3$-THF 용액에 염화리튬을 가한 새로운 환원계의 환원특성에 대한 연구가 대표적인 작용기를 가진 유기화합물을 가지고 표준조건($0^{\circ}$, THF)에서 이루어졌다. 조사 연구된 화합물중 벤조페논, 4가지 에스테르 및 시클로헥센은 $BH_3$ 환원과 별 차이를 보이지 않았으나, 2-헵탄온, 아세토페논, 염화벤조일, 프탈산무수물, 그리고 3가지 에폭시화물은 소량의 염화리튬에 의해 빠른 속도로 환원이 완결 되었다. 특히 에폭시화시클로헥센의 환원에 있어서는 소량의 염화리튬 존재하에서는 정량적으로 시클로헥산올을 생성하였으나 염화리튬의 양이 증가하면 2-클로로시클로헥산올이 시클로헥산올과 함께 생성됨을 알았다. 또한, 에폭시화시클로헥센과의 반응에 있어서 질산리튬은 염화리튬과는 달리 별로 효과가 없었다. 따라서 보란-염화리튬용액에 클로로수소화붕소리튬의 생성가능성을 논의하였다.

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