• 제목/요약/키워드: SEI formation

검색결과 86건 처리시간 0.028초

The Surface Modification of Electrode with Solid Electrolyte Interphase for Hybrid Supercapacitor

  • Choi, Min-Geun;Kang, Soo-Bin;Yoon, Jung Rag;Lee, Byung Gwan;Jeong, Dae-Yong
    • Journal of Electrical Engineering and Technology
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    • 제10권3호
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    • pp.1102-1106
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    • 2015
  • A hybrid supercapacitor (HS) is an energy storage device used to enhance the low weight energy density (Wh/kg) of a supercapacitor. On the other hand, a sudden decrease in capacity has been pointed out as a reliability problem after many charge/discharge cycles. The reliability problem of a HS affects the early aging process. In this study, the capacity performance of a HS was observed after charge/discharge. For detailed analysis of the initial charge/discharge cycles, the charge and discharge curve was measured at a low current density. In addition, a solid electrolyte interphase (SEI) layer was confirmed after the charge/discharge. A HC composed of a lithium titanate (LTO) anode and active carbon cathode was used. The charge/discharge efficiency of the first cycle was lower than the late cycles and the charge/discharge rate was also lower. This behavior was induced by SEI layer formation, which consumed Li ions in the LTO lattice. The formation of a SEI layer after the charge/discharge cycles was confirmed using a range of analysis techniques.

Improvement of Electrochemical Properties and Thermal Stability of a Ni-rich Cathode Material by Polypropylene Coating

  • Yoo, Gi-Won;Son, Jong-Tae
    • Journal of Electrochemical Science and Technology
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    • 제7권2호
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    • pp.179-184
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    • 2016
  • The interface between the surface of a cathode material and the electrolyte gives rise to surface reactions such as solid electrolyte interface (SEI) and chemical side reactions. These reactions lead to increased surface resistance and charge transfer resistance. It is consequently necessary to improve the electrochemical characteristics by suppressing these reactions. In order to suppress unnecessary surface reactions, we coated cathode material using polypropylene (PP). The PP coating layer effectively reduced the SEI film that is generated after a 4.3 V initial charging process. By mitigating the formation of the SEI film, the PP-coated Li[(Ni0.6Co0.1Mn0.3)0.36(Ni0.80Co0.15Al0.05)0.64)]O2(NCS) electrode provided enhanced transport of Li+ ions due to reduced SEI resistance (RSEI) and charge transfer resistance (Rct). The initial charge and discharge efficiency of the PP-coated NCS electrode was 96.2 % at a current density of 17 mA/g in a voltage range of 3.0 ~ 4.3 V, whereas the efficiency of the NCS electrode was only 94.7 %. The presence of the protective PP layer on the cathode improved the thermal stability by reducing the generated heat, and this was confirmed via DSC analysis by an increased exothermic peak.

리튬이온전지의 유기용매분해에 따른 SEI film 형성과 전기화학적 거동에 관한 연구 (A study on the SEI film formation as organic solvent decomposition of lithium ion batteries and its electrochemical behavior)

  • 김민성;구할본
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2001년도 추계학술대회 논문집 Vol.14 No.1
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    • pp.545-549
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    • 2001
  • We have produced electrolyte solution out of 1.15M $LiPF_6$ EC/EMC/DEC/PC(30/55/10/5 by vol%) as a reference, and at the same time, performed basic physical property test using a single solvent of 1.15M $LiPF_6$ DEC, DMC, EMC and a 2 component electrolyte solution of 1.15M $LiPF_6$ EC/DEC(1/2 by vol%) and PC/DEC(1/2 by vol%). Cyclic Voltammetry Analysis showed that, compared to existing carbonate organic solvent, the addition of DEC,DMC and EMC brought the de-decomposition peak of salt anion of $PF_6$ and the solvent at lower oxidization potential of 2.3V, 0.7V and 2.1V(vs. $Li/Li^+$). In addition, a kinetics current peak, in which intercalation of Lt is proceeded at 750mV, 450mV(vs. $Li/Li^+$), was confirmed. These findings suggest that the DEC solvent decomposition occurred at an electric potential lower than that of oxidization of existing carbonate organic solvent. Through the impedance analysis, we checked electric charge transfer resistance($R_{ct}$) according to the electric potential of $Li^+$ intercalation at 750mV(vs. $Li/Li^+$), which was the same as the resistance ($R_f$) and cyclic voltammetry of SEI film that was formed at Reference. By doing so, we found that the significant decrease of polarization resistance($R_p$) when Reference was played a part in the formation of compact SEI layer at the initial decomposition reaction.

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리튬이온전지의 유기용매분해에 따른 SEI film형성과 전기화학적 거동에 관한 연구 (A study on the SEI film formation as organic solvent decomposition of lithium ion batteries and its electrochemical behavior)

  • 김민성;구할본
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2001년도 추계학술대회 논문집
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    • pp.545-549
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    • 2001
  • We have produced electrolyte solution out of 1.15M LiPF$\sub$6/ EC/EMC/DEC/PC(30/55/10/5 by vol%) as a reference, and at the same time, performed basic physical property test using a single solvent of 1.15M LiPF$\sub$6/DEC, DMC, EMC and a 2 component electrolyte solution of 1.15M LiPF$\sub$6/ EC/DEC(1/2 by vo%%) and PC/DEC(1/2 by vol%). Cyclic Voltammetry Analysis showed that, compared to existing carbonate organic solvent, the addition of DEC, DMC and EMC brought the de-decomposition peak of salt anion of PF$\sub$6/$\^$-/ and the solvent at lower oxidization potential of 2.3V, 0.7V and 2.1V(vs. Li/Li$\^$+/\`). In addition, a kinetics current peak, in which intercalation of Li$\^$+/ is proceeded at 750mv, 450mv(vs. Li/Li$\^$+/), was confirmed. These findings suggest that the DEC solvent decomposition occurred at an electric potential lower than that of oxidization of existing carbonate organic solvent. Through the impedance analysis, we checked electric charge transfer resistance(R$\sub$ct/) according to the electric potential of Li$\^$+/ intercalation at 750mv(vs. Li/Li$\^$+/), which was the same as the resistance (R$\sub$f/) and cyclic voltammetry of SEI film that was formed at Reference. By doing so, we found that the significant decrease of polarization resistance(R$\sub$p/) when Reference was played a part in the formation of compact SEI layer at the initial decomposition reaction.

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리튬이온 전지의 초기 흡착 거동 해석 (Analysis of the initial absorbing behavior of Li ion battery)

  • 정철수;이도원
    • 한국진공학회지
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    • 제16권3호
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    • pp.227-230
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    • 2007
  • 리튬이온 제조공정에서 전해질 주입 후 반드시 거쳐야 하는 숙성공정은 일반적으로 별로 중요하게 다루어 지지 않고 있다. 왜냐하면 전지 숙성공정이 전지성능에 영향을 주는 인자에 대하여 그다지 깊이 있게 연구가 되어있지 않기 때문이다. 하지만 숙성공정 중에 나타나는 OCV 변화는 전해질 내에 포함되어 있는 성분이 전극으로 전기화학적 흡착되어 나타나는 현상으로 SEI 피막 형성에 매우 중요한 역할을 하게 된다. 이에 본 연구에서는 숙성기간 중에 변하게 되는 OCV와 SEI피막의 관계, 그리고 전지성능과의 연계에 대하여 깊이 있게 논의하고자 한다.

BDMI+ 양이온을 함유한 이온성 액체로부터 흑연으로의 전기화학적 리튬 삽입 (Electrochemical Lithium Intercalation within Graphite from Ionic Liquids containing BDMI+ Cation)

  • 이유신;정순기;이헌영;김지수
    • 전기화학회지
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    • 제13권3호
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    • pp.186-192
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    • 2010
  • 흑연과 1-buthyl-2,3-dimethylimidazolium(BDMI)계 이온성 액체의 계면 반응을 이해하기 위하여 lithium bis(fluorosulfonyl)imide(LiTFSI)가 용해된 BDMI-TFSI 용액 중에서 전기화학 원자간력 현미경(electrochemical atomic force microscopy, ECAFM)을 이용하여 순환 전압전류법 전후에 있어서의 고배향성 열분해 흑연(highly oriented pyrolytic graphite, HOPG)의 표면을 in-situ로 관찰하였다. HOPG 전극에서 리튬의 가역적인 삽입과 탈리반응은 진행되지 않았으며, $BDMI^+$ 양이온의 삽입에 의한 blister의 형성 및 그라펜 층의 파괴만이 관찰되었다. 한편, $BDMI^+$ 양이온의 삽입 반응은 농도가 4.90 mol/kg인 LiTFSI-propylene carbonate(PC)를 15 wt% 함유하고 있는 BDMI-TFSI계에서는 일어나지 않았으며, 이 경우에는 가역적인 리튬의 삽입과 탈리반응이 진행 되었다. ECAFM 결과는 고농도의 PC계 용액이 solid electrolyte interface(SEI)를 형성함으로 인해 $BDMI^+$ 양이온의 삽입을 막는 매우 효과적인 첨가제임을 나타내었다.

Geminivirus에 감염된 Arabidopsis 줄기의 이상세포분열에 관한 세포조직학적 연구 (Cytohistological Study of Abnormal Cell Division of Arabidopsis Stem Infected with Geminivirus)

  • 박종범;이석찬
    • 식물조직배양학회지
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    • 제25권3호
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    • pp.153-158
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    • 1998
  • Arabidopsis thaliana에 beet curly top virus (BCTV)를 인공접종하여 외부병징 및 조직내부구조 변화를 광학현미경으로 검경하였다. BCTV-Logan에 접종된Arbidopsis thaliana ecotype Sei-O 줄기에서 약 2주 후 이상비대현상이 관찰되었고, 약 4주 후에는 캘러스조직이 형성되었다. 감염된 각 시기별로 증상부위의 Sei-O 줄기를 횡단절단하여 관찰한 결과 다음과 같은 순서, (1) 사부조직의 이상비대, (2) 이상비대된 사부의 괴사, (3) 괴사조직의 lacuna 형성, (4) lacuna형성된 사부 주위의 피층과 표피세포 신장 및 확대, (5) 신장된 피층 및 표피세포에서의 세포분열 유도, (6) 캘러스 조직의 유도 순으로 내부구조 변화가 관찰되었다. BCTV에 감염된 Arabidopsis에서의 캘러스 형성은 바이러스의 감염결과로 유도되었으며, azure-A염색법에 의해 바이러스 inclusion body는 사부조직과 캘러스에서도 존재함이 관찰되었다. 본 연구 결과 BCTV에 감염된 Arabidopsis에서 관찰된 캘러스 형성의 원인은 감염된 숙주식물의 사부조직의 괴사에 따른 lacuna 주위 피층세포의 세포분열에 기인한 것으로 사료된다.

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Lithium-silicate coating on Lithium Nickel Manganese Oxide (LiNi0.7Mn0.3O2) with a Layered Structure

  • Kim, Dong-jin;Yoon, Da-ye;Kim, Woo-byoung;Lee, Jae-won
    • 한국분말재료학회지
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    • 제24권2호
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    • pp.87-95
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    • 2017
  • Lithium silicate, a lithium-ion conducting ceramic, is coated on a layer-structured lithium nickel manganese oxide ($LiNi_{0.7}Mn_{0.3}O_2$). Residual lithium compounds ($Li_2CO_3$ and LiOH) on the surface of the cathode material and $SiO_2$ derived from tetraethylorthosilicate are used as lithium and silicon sources, respectively. Powder X-ray diffraction and scanning electron microscopy with energy-dispersive spectroscopy analyses show that lithium silicate is coated uniformly on the cathode particles. Charge and discharge tests of the samples show that the coating can enhance the rate capability and cycle life performance. The improvements are attributed to the reduced interfacial resistance originating from suppression of solid-electrolyte interface (SEI) formation and dissolution of Ni and Mn due to the coating. An X-ray photoelectron spectroscopy study of the cycled electrodes shows that nickel oxide and manganese oxide particles are formed on the surface of the electrode and that greater decomposition of the electrolyte occurs for the bare sample, which confirms the assumption that SEI formation and Ni and Mn dissolution can be reduced using the coating process.

림프절 전이를 동반한 폐세포종(경화성 혈관종) - 1례 보고 - (A Case of Pneumocytoma(Sclerosing Hemangioma) with Lymph Node Metastasis. -A Case Report)

  • 정경영;김길동;임상현
    • Journal of Chest Surgery
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    • 제30권5호
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    • pp.548-551
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    • 1997
  • 경화성 혈관종으로 흔히 부르는 폐세포종(pneumocytoma)은 간혹 다발성으로 발생한 예가 보고되나 림 프절로 전이된 예는 문헌상 세계적으로 1예만이 보고되었다. 연세의대 흉부외과에서는 29세의 남자에서 우연히 발견된 우측 폐문부 폐종괴를 수술전 폐암(선암) 진 단하에 우상엽폐절제술 및 림프절박리술을 시행한 결과, 조직병리검사상 림프절 전이를 동반한 폐세포종 을 경험하였다. 폐세포종은 양성 종양으로 알려져 있으나 매우 드문 경우에서 전이할 수 있음을 보였다.

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