• Title/Summary/Keyword: 3차원 전극

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Physical Property Analysis of Composite Electrodes with Different Active Material Sizes and Densities using 3D Structural Modeling (3차원 구조 모델링을 이용한 활물질 입자 크기 및 전극 밀도에 따른 복합 전극 내 물리적 특성 분석)

  • Yang, Seungwon;Park, Joonam;Byun, Seoungwoo;Kim, Nayeon;Ryou, Myung-Hyun;Lee, Yong Min
    • Journal of the Korean Electrochemical Society
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    • v.23 no.2
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    • pp.39-46
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    • 2020
  • Composite electrodes for rechargeable batteries generally consist of active material, electric conductor, and polymeric binder. And their composition and distribution within the composite electrode determine the electrochemical activity in the electrochemical systems. However, it is not easy to quantify the physical properties of composite electrodes themselves using conventional experimental analysis tools. So, 3D structural modeling and simulation can be an efficient design tool by looking into the contact areas between particles and electric conductivity within the composite electrode. In this study, while maintaining the composition (LiCoO2 : Super P Li® : Polyvinylidene Fluoride (PVdF) = 93 : 3 : 4 by wt%) and loading level (13 mg cm-2) of the composite electrode, the effects of LiCoO2 size (10 ㎛ and 20 ㎛) and electrode density (2.8 g cm-3, 3.0 g cm-3, 3.2 g cm-3, 3.5 g cm-3, 4.0 g cm-3) on the physical properties are investigated using a GeoDict software. With this tool, the composite electrode can be efficiently designed to optimize the contact area and electric conductivity.

3-dimensional shape of $TiO_2$-nanobranch electrode using Dye-sensitized Solar Cells (3차원 형태의 $TiO_2$-nanobranch 전극을 이용한 염료감응형 태양전지)

  • Oh, Jae-Kyung;Lee, Jin-Kyu;Kim, Hyun-Su;Park, Kyung-Won
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.150-152
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    • 2009
  • 본 연구는 염료감응형 태양전지에 적용되는 TiO2 나노입자를 개선하여 3차원적인 nanobranch를 수열법으로 합성하여 전자의 이동을 향상시키며, 비표면적을 늘려 효율향상을 위하여 전극 구조를 제어하였다. nanobranch의 seed인 nanowire를 XRDd, FE-TEM과 solar simulator를 이용하여 비교 분석하였다.

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Preparation of Three-Dimensional Graphene/Metal Oxide Nanocomposites for Application of Supercapacitors (슈퍼커패시터 응용을 위한 3차원 그래핀/금속 산화물 나노복합체 제조)

  • Kim, Jung Won;Choi, Bong Gill
    • Applied Chemistry for Engineering
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    • v.26 no.5
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    • pp.521-525
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    • 2015
  • Graphene-based electrode materials have been widely explored for supercapacitor applications due to their unique two-dimensional structure and properties. In particular, Three-dimensional (3D) graphene materials are of great importance for preparing electrode materials because they can provide large surface area, efficient and rapid electron and ion transfer, and mechanical stability. Recently, a number of 3D hybrid architecture of graphene/metal oxides have been developed to increase simultaneously energy and power densities of supercapacitors. This review presents the recent progress of 3D nanocomposites based on graphene and metal oxides. Preparation methods and structures of these 3D nanocomposites and their great potential in supercapacitor applications have been summarized.

Preparation of Flexible 3D Porous Polyaniline Film for High-Performance Electrochemical pH Sensor (고성능 전기 화학 pH 센서를 위한 유연한 3차원 다공성 폴리아닐린 필름 제조)

  • Park, Hong Jun;Park, Seung Hwa;Kim, Ho Jun;Lee, Kyoung G.;Choi, Bong Gill
    • Applied Chemistry for Engineering
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    • v.31 no.5
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    • pp.539-544
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    • 2020
  • A three-dimensional (3D) porous polyaniline (PANI) film was fabricated by a combined photo-and soft-lithography technique based on a large-area nanopillar array, followed by a controlled chemical dilute polymerization. The as-obtained 3D PANI film consisted of hierarchically interconnected PANI nanofibers, resulting in a 3D hierarchical nanoweb film with a large surface and open porous structure. Using electrochemical measurements, the resulting 3D PANI film was demonstrated as a flexible pH sensor electrode, exhibiting a high sensitivity of 60.3 mV/pH, which is close to the ideal Nernstian behavior. In addition, the 3D PANI electrode showed a fast response time of 10 s, good repeatability, and good selectivity. When the 3D PANI electrode was measured under a mechanically bent state, the electrode exhibited a high sensitivity of 60.4 mV/pH, demonstrating flexible pH sensor performance.

Effectiveness of the Electrode Arrays for Delineating 2-D Subsurface Structure (2차원 지하구조 규명을 위한 전극배열의 효율성)

  • Yoon, Jong-Ryeol;Lee, Kiehwa
    • Economic and Environmental Geology
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    • v.29 no.3
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    • pp.345-355
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    • 1996
  • The effectiveness of various electrode configurations in horizontal mappings and 1-D inversions of vertical sounding data for delineating 2-D structures was studied. Apparent resistivity values of three point, dipole-dipole, Wenner, and Schlumberger mappings were simulated for such structures as vertical dyke, tabular prism, buried vertical fault, ramp and complex structure by finite difference method (FDM) and they were compared with each other. Also 2-D cross sections for three structures obtained by interpolation of 1-D inverted sounding data in terms of three layers were compared for Schlumberger and Wenner arrays. On these cross sections, horizontal and vertical resistivity interfaces of the 2-D structures are revealed relatively clearly. Apparent resistivity curves of Schlumberger mapping show vertical resistivity discontinuities very well. On the whole, Schlumberger array is superior to the other arrays in electric sounding as well as mapping. This study clearly indicates that interpretations of 2-D structures based on 1-D inversion are possible.

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In-situ EQCM Study on Growth of Polypyrrole Films Using Gold Electrodes Modified with Self-Assembled Monolayers in an Aqueous Solution (자기 집합 단분자막 개질 금 전극을 이용한 수용액 중 폴리피를 성장에 관한 In-situ EQCM 연구)

  • Seo, Kyoung--Ja;Jeon, Il-Cheol
    • Journal of the Korean Electrochemical Society
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    • v.5 no.3
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    • pp.143-152
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    • 2002
  • The growth of Polypyrrole film has been investigated during electropolymerization in an aqueous solution on bare and SAM modified gold electrodes by in-situ EQCM and ex-situ AFM. According to the result of cyclic voltammetry measurements, in the case of a bare gold electrode, the electrochemical deposition of polypyrrole were dependent on the limiting oxidative potential, but not on scan numbers. When the limiting potential higher than 0.8 V was applied on the electrode, the amount of polypyrrole deposited on a gold electrode was rapidly increased and the abnormal mass change attributed to the rearrangement of polypyrrole films was observed as the scan number increased. The polypyrrole film Prepared on electrodes modified with 1-dodecanethiol SAM or thiophene SAM grew 3-dimensionally with the rearrangement of film. However, in the case of BPUS SAM, 2-dimensional layer-by-layer growth of film was observed without the rearrangement of film. AFM images showed films with chain-shaped and/ or donut-shaped polymers when grown rapidly and a wrinkled film at the steady state condition.

ZnO Nanostructures for Photovoltaic Applications

  • Im, Dong-Chan;Lee, Gyu-Hwan;Jeong, Yong-Su;Park, Mi-Yeong
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2009.05a
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    • pp.6.1-6.1
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    • 2009
  • 최근 신 재생 에너지에 대한 관심이 고조되고 있으며 특히 태양전지는 차세대 대체에너지로 많은 연구 개발이 이루어지고 있다. 현재 태양전지 시장은 벌크실리콘 태양전지가 주를 이루고 있으나, 박막형, 유기물, 염료감응형 등 다양한 차세대 태양전지가 개발되고 있다. 차세대 태양전지는 글래스나 폴리머 기판위에 형성된 전극을 바탕으로 하여 다양한 형태의 태양전지가 형성되기 때문에 태양전지용 투명도전성 산화물 전극에 대한 중요성이 증가하고 있다. 예를 들어 실리콘 박막형 태양전지의 경우 수소 플라즈마 분위기 안정성 때문에 ZnO:Al 전극이 개발, 적용되고 있다. 이밖에도 ZnO는 나노입자, 나노로드 등의 다양한 형태를 기반으로 유기물 및 염료감응형 태양전지 전극으로 적용되고 있다. 본 연구에서는 전기화학적 방법을 이용해 나노입자, 나노로드, 나노 sheet 등 다양한 형태의 ZnO 나노구조를 형성한 후, 태양전지 적용을 위한 전기적, 광학적 특성을 분석하였다. 3차원 형태의 ZnO sheet 전극은 90% @ 550 nm 가 넘는 우수한 광특성 (Haze value)을 보였으며, 염료감응형 태양전지에 적용되었을 경우 2차원 형태의 ZnO 전극에 비해 Jsc 값이 2.5배 이상 향상되었다.

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Development of Three-dimensional Chamber-type Glucose Sensor Using Micromachining Technology (마이크로머시닝 기술을 이용한 3차원 마이크로 챔버형 글루코스 센서의 개발)

  • Kim Sung Ho;Kim Chang Kyo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.6 no.1
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    • pp.24-28
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    • 2005
  • A micromachined biochip with a three dimensional silicon chamber was developed for the construction of biosensors. Anisotropic etching was used fur the formation of the chamber on the p-type silicon wafer(100) and then was glued to the Pyrex glass bottom-substrate with pre-deposited platinum electrode. The electrochemical characterization of its Pt electrode and Ag/AgCl reference electrode was investigated.

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A Review on 3D Structure Formation, Analysis and Performance Prediction Technique for All-solid-state Electrode and Battery (3차원 전고체 전극 구조체 형성, 분석 및 성능 예측 기술 동향)

  • Park, Joonam;Jin, Dahee;Kim, Dohwan;Bae, Kyung Taek;Lee, Kang Taek;Lee, Yong Min
    • Journal of the Korean Electrochemical Society
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    • v.22 no.4
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    • pp.139-147
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    • 2019
  • Lithium-ion battery (LiB) with high energy density and efficiency has been utilized for the electric vehicle (EV) and energy storage system (ESS) as well as portable devices. However, as explosion accidents have frequently happened till lately, all-solid-state lithium secondary battery (ALSB) began to get in a spotlight because it can secure a very high safety and energy density by substituting flammable organic liquid electrolyte to nonflammable inorganic solid electrolyte. In spite of ALSB's certain merits, it has shown much poorer performance of cells than one of LiB due to some challenges, which have been small or never dealt with in the LiB system. Hence, although plenty of studies made progress to solve them, an approach about design of all-solid-state electrode (ASSE) has been limited on account of difficulty of ALSB's experiments. That is why the virtual 3D structure of an all-solid-state electrode has to be built and used for the prediction of cell performance. In this study, we elucidate how to form the 3D ASSE structure and what to be needed for the simulation of characteristics on ALSB. Furthermore, the ultimate orientation of 3D modeling and simulation for the study of ALSB are briefly suggested.