• 제목/요약/키워드: $LiNi_{0.85}Co_{0.15}O_2$

검색결과 3건 처리시간 0.02초

$LiNi_{0.85}Co_{0.15}O_2/MPCF$전지의 충방전 특성 (Charge-discharge behaviour of $LiNi_{0.85}Co_{0.15}O_2>/MPCF$ cell)

  • 김상필;조정수;박정후;윤문수
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1998년도 추계학술대회 논문집
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    • pp.25-28
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    • 1998
  • Lithiated cobalt and nickel oxides are becoming very attractive as active cathode materials for secondary lithium ion secondary battery. $LiCoO_2$ is easily synthesized from lithium cobalt salts, but has a relatively high oxidizing potential on charge. LiNiOz is synthesized by a more complex procedure and its nonstoichiometry significantly degraded the charge-discharge characteristics. But $LiNiO_2$ has a lower charge potential which increases the system stability. Lithiated cobalt and nickel oxides are iso-structure which make the preparation of solid solutions of $LiNi_{1-x}Co_xO_2$ for O$LiCoO_2 and LiNiO_2$ electrode. The aim of the presentb paper is to study the electrochemical behaviour, as weU as the possibilities for practical application of layered Iithiated nickel oxide stabilized by $Co^{3+}$ substitution as active cathode materials in lithium ion secondary battery.

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Zn와 Al을 첨가한 LiNi0.85Co0.15O2 양극활물질의 제조 및 전기화학적 특성평가 (Synthesis and Electrochemical Properties of Zn and Al added LiNi0.85Co0.15O2 Cathode Materials)

  • 김수진;서진성;나병기
    • Korean Chemical Engineering Research
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    • 제59권1호
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    • pp.42-48
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    • 2021
  • 본 연구에서는 LiNi0.85Co0.15O2의 전기화학적 특성과 열적 안정성을 향상시키기 위하여 LiNi0.85Co0.15O2에 이종원소인 Zn와 Al을 함께 첨가하여 고상법으로 합성하였다. 물질의 결정 구조, 크기 및 표면 상태는 XRD, SEM을 이용하여 분석하였고 전기화학적 특성은 충방전기를 이용하여 CV(cyclic voltammetry), 초기 충·방전 프로파일, 출력 특성, 수명 특성 등을 측정하였다. Al-O의 강한 결합에너지는 양극활물질의 구조적 안정성을 향상시켰으며, Li+와 Ni2+의 양이온 혼합을 막아 전기화학적 특성 또한 향상되었다. Zn의 큰 이온반경은 양극활물질의 격자상수를 증가시켜 단위 셀의 부피가 확장되었다. Zn와 Al을 0.025몰씩 첨가한 물질의 경우, 0.5 C-rate의 전류밀도에서 100 사이클 동안 80%의 용량 유지율을 보여주었으며 이 결과는 NC 양극활물질보다 12% 높은 수치이다. 또한, 5 C-rate에서의 방전용량은 104 mAh/g으로 기존의 NC 양극활물질보다 36 mAh/g 높은 수치를 보였다. Zn과 Al이 0.025몰씩 첨가된 NC 양극활물질은 출력 특성, 수명 특성에서 우수한 특성을 보여주었다.

Synthesis of $Li_xNi_(0.85)Co_(0.15)O_2$ by the PVA-procursor Method and the Effect of Air Flow During the Pyrolysis

  • 권호진;김근배;김수주;송미영;박선희;권혜영;박동곤
    • Bulletin of the Korean Chemical Society
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    • 제20권5호
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    • pp.508-516
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    • 1999
  • Polycrystalline powder of LixNi0.85Co0.15O2 was synthesized by pyrolyzing a powder precursor obtained by the PVA-precursor method. Coin cells of lithium-ion rechargeable battery were assembled, whose the cathodes were fabricated from the crystalline powders of LixNi0.85Co0.15O2 synthesized by the method. The effect of synthetic variation on the property of the cell was tested by carrying out 100 consecutive cycles of charge-dis-charge on the cells. The property of the cell was largely influenced by the pyrolysis conditions applied for the synthesis of the LixNi0.85Co0.15O2. Depending on whether the pyrolysis was carried out in standing air or in the flow of dry air, the discharge capacity and cycle-reversibility of the cell varied in large extent. When the powder precursor was pyrolyzed in standing air, a minor phase of lithium carbonate was remained in the LixNi0.85Co0.15O2. The carbon containing powder precursor had to be pyrolyzed in the flow of dry air to eliminate the minor phase. In the flow of dry air, the lithium carbonate in the precursor was eliminated over 500-700。C without any prominent heat event. By controlling the flow of air over the precursor during its pyrolysis, particle size could also be altered. The effect of flowing dry air, during first step pyrolysis or during second step heat treatment, on the property of the cell was discussed.