• Title/Summary/Keyword: 음극물질

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Characterization of field emission behavior from vitreous carbon (유리화 비정형 탄소의 전계방출 거동)

  • 안상혁;이광렬;은광용
    • Journal of the Korean Vacuum Society
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    • v.9 no.2
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    • pp.122-129
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    • 2000
  • Field emission behavior from vitreous carbon powders deposited on Mo coated glass by electro-phoretic method was investigated. Although the vitreous carbon has only $sp^2$ hybridized carbon bond, we could observe an excellent field emission behavior. Reproducible electron emission was observed without initiation process which is known to be needed in most carbon cathode materials. Critical electric field for electron emission was in the range from 3 to 4 MV/m. The effective work function was estimated to be about 0.06 eV, as obtained from the slope of Fowler-Nordheim plot. The stability of the emission behavior characterized by repeated I-V measurements, was much superior to the Si tips. We observed the possibility of full area light emission in vitreous carbon materials. This results showed that the field emission is not intimately related to the $sp^3$ hybridization of carbon, but the electrical properties of cathod/electrode interface or the conductivity of the cathode materials which required for the electron transport to the cathode surface.

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Performance evaluation for lithium-ion battery of the Cu-Sn alloy deposition (구리-주석 합금 도금층의 리튬이온 배터리 성능 평가)

  • Jeong, Min-Gyeong;Jang, Si-Seong;Kim, Dong-Hyeon;Bok, Gyeong-Sun;Lee, Seong-Jun;Lee, Gi-Baek;Choe, Jin-Seop
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2016.11a
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    • pp.192.2-192.2
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    • 2016
  • 최근 차세대 휴대용 전자기기나 전기자동차의 상용화 연구가 활발히 이루어짐에 따라 리튬이온 배터리가 주력 에너지 저장장치로써 활발히 개발되고 있다. 이러한 리튬이온 배터리의 음극 물질로써 주로 탄소재료가 많이 사용되어 왔지만 낮은 이론용량 (372 mAh/g)으로 인하여 좀더 높은 용량을 가지는 금속이나 합금 등이 주목을 받게 되었다. 그 중에서도 주석이 탄소재료에 비해 3배 정도 높은 이론 용량 (993 mAh/g)을 가지고 있어 많은 연구가 진행되고 있다. 하지만 주석의 경우 리튬이온 배터리의 충방전 과정 중에 급격한 부피 변화가 발생하여 음극이 손상되고 이에 따라 용량이 급격하게 감소하는 한계점이 있다. 이 한계를 극복하기 위한 많은 방법들 중 하나가 구리-주석 합금을 음극으로 사용하는 것이다. 구리는 비활성 금속으로 충방전 중의 부피 변화에 완충제 역할을 하고, 연성과 전기전도성이 있어서 배터리의 전기화학적 성능 또한 향상시켜 준다. 이에 따라, 본 연구에서는 주석이 풍부한 구리-주석 합금 도금을 통하여 구조적으로 튼튼한 리튬이온 배터리의 음극을 만들었고 그 성능을 확인하기 위하여 반쪽전지 실험을 통하여 500회 충방전 동안의 싸이클 특성 및 효율을 확인하였고 순환전압전류 실험 또한 진행하였다.

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Cross-linkable Waterborne Polyurethane based on Castor Oil as an Efficient Binder for Silicon Anodes (실리콘 음극용 효과적인 바인더로서 가교결합이 가능한 캐스터 오일 기반의 수분산 폴리우레탄)

  • Lee, Yong Hun;Kim, Eunji;Lee, Jin Hong
    • Applied Chemistry for Engineering
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    • v.32 no.6
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    • pp.607-612
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    • 2021
  • Silicon (Si) is one of the promising active materials to replace the widely used graphite because of its low electrochemical potential and high theoretical capacity. However, Si anodes still face in problems with the huge volume expansion and continuous decomposition of the electrolyte during repeated charge and discharge processes. To address these issues, a cross-linkable waterborne polyurethane (CWPU) based on a bio-oil, castor oil, was prepared and reacted with Tris(2,3-epoxypropyl) isocyanurate (TGIC) linkers, resulting in the formation of a mechanically robust 3D network structure. Si anodes fabricated with the CWPU-TGIC exhibited stable cycling performances and excellent discharge capacities. The results revealed that the CWPU-TGIC binder efficiently accommodates the large volume change for Si anode during charge and discharge cycles. Overall, the eco-friendly binder shows great promise in improving the electrochemical performances of Si anodes.

Effect of Preparation Conditions of PAN-based Carbon Fibers on Electrochemical Characteristics of Rechargeable Lithium ion Battery Anode (PAN계 탄소섬유 제조조건에 따른 리튬이온 이차전지 음극의 전기화학적 특성)

  • An K. W.;Lee J. K.;Lee S. W.;Kim Y. D.;Cho W. I.;Ju J. B.;Cho B. W.;Park D. G.;Yun K. S.
    • Journal of the Korean Electrochemical Society
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    • v.2 no.2
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    • pp.81-87
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    • 1999
  • Poly-acrylonitrile (PAN) based carbon fibers were stabilized under various tensions in the presence of air at about $200^{\circ}C$ and sequentially carbonized under some different gas environments in the range of 700 to $1500^{\circ}C$. The prepared carbon fibers were used for rechargeable lithium ion battery anode to investigate preparation parameters effects on electrochemical characteristics. It was found that the tension during stabilization, carbonization temperature and gas atmospheres affect the carbon fiber properties such as conductivity, mechanical strength, surface morphology and diffusion coefficient of lithium ion, which are closely related to the on electrolchemical properties as well as the charge/discharge characteristics.

Synthesis of Various Biomass-derived Carbons and Their Applications as Anode Materials for Lithium Ion Batteries (다양한 바이오매스 기반의 탄소 제조 및 리튬이온전지 음극활물질로의 응용)

  • Chan-Gyo Kim;Suk Jekal;Ha-Yeong Kim;Jiwon Kim;Yeon-Ryong Chu;Hyung Sub Sim;Chang-Min Yoon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.31 no.3
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    • pp.27-34
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    • 2023
  • In this study, various plant-based biomass are recycled into carbon materials to employ as anode materials for lithium-ion batteries. Firstly, various biomass of rice husk, chestnut, tea bag, and coffee ground are collected, washed, and ground. The carbonization process is followed under a nitrogen atmosphere at 850℃. The morphological and chemical properties of materials are investigated using FE-SEM, EDS, and FT-IR to compare the characteristic differences between various biomass. It is noticeable that biomass-derived carbon materials vary in shape and degree of carbonization depending on their precursor materials. These materials are applied as anode materials to measure the electrochemical performance. The specific capacities of rice husk-, chetnut-, tea bag-, and coffee ground-derived carbon materials are evaluated as 65.8, 80.2, 90.6, and 104.7 mAh g-1 at 0.2C. Notably, coffee ground-based carbon exhibited the highest specific capacity owing to the difference in elemental composition and the degree of carbonization. Conclusively, this study suggests the possibility of utilizing as energy storage devices by employing various plant-based biomass into active materials for anodes.

Electrochemical Characteristics of Silicon/Carbon Composites for Anode Materials of Lithium Ion Batteries (리튬이온배터리 음극활물질 Silicon/Carbon 복합소재의 전기화학적 특성)

  • Park, Ji Yong;Jung, Min Zy;Lee, Jong Dae
    • Applied Chemistry for Engineering
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    • v.26 no.1
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    • pp.80-85
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    • 2015
  • Silicon/carbon composites as anode materials for lithium-ion batteries were examined to find the cycle performance and capacity. Silicon/carbon composites were prepared by a two-step method, including the magnesiothermic reduction of SBA-15 (Santa Barbara Amorphous material No. 15) and carbonization of phenol resin. The electrochemical behaviors of lithium ion batteries were characterized by charge/discharge, cycle, cyclic voltammetry and impedance tests. The improved electrochemical performance attributed to the fact that silicon/carbon composites suppress the volume expansion of the silicon particles and enhance the conductivity of silicon/carbon composites (30 ohm) compared to that of using the pure silicon (235 ohm). The anode electrode of silicon/carbon composites showed the high capacity approaching 1,348 mAh/g and the capacity retention ratio of 76% after 50 cycles.

TiMo 합금타겟을 이용하여 음극 아크 공정으로 제조된 TiMoN 박막의 기초실험 및 분석

  • Kim, Seong-Hwan;Yang, Ji-Hun;Byeon, In-Seop;Jeong, Jae-In
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.94.1-94.1
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    • 2017
  • 최근 공구산업은 산업 발전으로 특수합금들이 발달하면서 이를 가공할 수 있는 새로운 절삭공구소재들이 개발되어 지고 있다. 또한 공구소재보다 코팅개발이 상대적으로 더욱 효과적이기 때문에 코팅 기술 개발이 활발히 진행되고 있다. 최근 일본에서는 새로운 코팅층 물질 개발보다는 기존의 코팅물질을 조합하거나 개량하여 성능을 향상시키는 추세이다. 또한 다기능 절삭 공구를 지속적으로 사용하는 추세에 따라 공구설계의 새로운 솔루션이 요구된다. 예를 들어 TiN 코팅과 추가 요소를 합금하면 효과적인 경도, 내마모성 등을 향상시키며, TiAlN, TiSiN 등을 예로 들 수 있다. 반면, 기존 TiN에 Mo가 첨가된 TiMoN 박막은 특성화하기 위한 노력이 매우 제한적이었다. Mo가 함유된 코팅층의 특징은 낮은 마찰 계수를 갖는다. 이는 Mo이 공기중의 산소와 반응하여 MoO3를 형성하기 때문이다. 본 연구에서는 TiMo합금 타겟을 음극 아크 증착공정을 이용하여 기초실험을 진행하고 분석평가를 진행하였다. 공정조건은 본 실험실에서 도출한 TiN의 기본공정조건을 바탕으로 기초실험을 진행하였으며, 시편은 스테인리스 강판(SUS304)을 사용하였다. 기초분석은 SEM, EDS, XRD, 초미소경도를 이용하였다. 처음 TiMo합금 타겟을 이용하여 기초실험과 분석을 진행한 결과 TiN과 비슷할 것으로 예상한 것과는 다른 결과가 관찰되었으며, 최적화 된 공정도출을 위한 향후 실험을 계획중이다.

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2D Layered Ti3C2Tx Negative Electrode based Activated Carbon Woven Fabric for Structural Lithium Ion Battery (카본우븐패브릭 기반 2D 구조의 Ti3C2Tx 배터리음극소재)

  • Nam, Sanghee;Umrao, Sima;Oh, Saewoong;Oh, Il-Kwon
    • Composites Research
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    • v.32 no.5
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    • pp.296-300
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    • 2019
  • Two dimensional transition metal carbides and/or nitrides, known as MXenes, are a promising electrode material in energy storage due to their excellent electrical conductivity, outstanding electrochemical performance, and abundant functional groups on the surface. Use of $Ti_3C_2$ as electrode material has significantly enhanced electrochemical performance by providing more chemically active interfaces, short ion-diffusion lengths, and improved charge transport kinetics. Here, we reports the efficient method to synthesize $Ti_3C_2$ from MAX phase, and opens new avenues for developing MXene based electrode materials for Lithium-Ion batteries.

Comparing the methods of making $SnO_2$ nanomaterials with and without templates of anode material for Li-ion battery (Li-ion battery용 음극재료인 $SnO_2$의 합성법의 차이에 따른 음극 성능비교)

  • Shim, Young-Sun;Park, Soo-Jin
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.132.2-132.2
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    • 2010
  • Mesoporous tinoxide ($SnO_2$) as anode materials for Li-ion battery were prepared by hydrothermal method and templating method using SBA-15 as template. And electrochemical properties of $SnO_2$ electrode were investigated with cyclic voltammogram (CV). The morphology and structures of $SnO_2$ were characterized by transmission electron microscopy (TEM) and X-ray diffractometer (XRD), respectively. The specific surface area was defined by $N_2$ adsorption with BET(Brunauer-Emmett-Teller) method. As a result, the surface area of mesoporous $SnO_2$ which was made from templating method is higher than the case of using hydrothermal method. In addition, in anodic performance, mesoporous $SnO_2$ which is prepared by templating method showed higher charge-discharge capasity compared to hydrothermal method and exhibited excellent stability over the entire cycle number. It was indicated that electrochemical performances of mesoporous $SnO_2$mainly affected to the structural features, such as specific surface area and porosity.

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