• 제목/요약/키워드: CIGS solar-cell

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Mo : Na/Mo 이중층 구조 두께에 따른 태양전지 후면전극의 조직 및 전기적 특성 (Morphology and Electrical Properties of Back Electrode for Solar Cell Depending on the Mo : Na/Mo Bilayer Thickness)

  • 신윤학;김명한
    • 한국재료학회지
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    • 제23권9호
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    • pp.495-500
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    • 2013
  • Mo-based thin films are frequently used as back electrode materials because of their low resistivity and high crystallinity in CIGS chalcopyrite solar cells. Mo:Na/Mo bilayer thin films with $1{\mu}m$ thickness were deposited on soda lime glass by varying the thickness of each layer using dc-magnetron sputtering. The effects of the Mo:Na layer on morphology and electrical property in terms of resistivity were systematically investigated. The resistivity increased from $159{\mu}{\Omega}cm$ to $944{\mu}{\Omega}cm$; this seemed to be caused by increased surface defects and low crystallinity as the thickness of Mo:Na layer increased from 100 nm to 500 nm. The surface morphologies of the Mo thin films changed from a somewhat coarse fibrous structures to irregular and fine celled structures with increased surface cracks along the cell boundaries as the thickness of Mo:Na layer increased. Na contents varied drastically from 0.03 % to 0.52 % according to the variation of Mo:Na layer thickness. The change in Na content may be ascribed to changes in surface morphology and crystallinity of the thin films.

태양전지용 Mo 박막의 스퍼터 압력에 따른 구조적, 전기적 특성의 변화 (Influence of sputtering pressure on structural and electrical properties of molybdenum thin film for solar cell application)

  • 김중규;이수호;이재형
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2013년도 춘계학술대회
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    • pp.786-788
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    • 2013
  • 몰리브덴(Molybdenum) 박막은 높은 전기전도성을 가진 금속으로 CIGS계 태양전지의 후면전극으로 많이 사용되고 있다. 스퍼터링법을 통해 증착되는 몰리브덴 박막의 경우, 전기 전도성 및 기판과의 밀착성은 스퍼터 전력 및 압력과 같은 공정 조건에 따라 변화된다. 본 연구에서는 DC 마그네트론 스퍼터링법을 이용하여 몰리브덴 박막을 Ar 가스 분위기에서 압력별로 증착하였다. SEM(scanning electron microscope), XRD(X-ray Diffraction), 4-point probe, 광반사율, Hall measurement를 이용하여 박막의 전기적, 구조적 특성을 분석하였다.

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Three-Dimensional Automated Crystal Orientation and Phase Mapping Analysis of Epitaxially Grown Thin Film Interfaces by Using Transmission Electron Microscopy

  • Kim, Chang-Yeon;Lee, Ji-Hyun;Yoo, Seung Jo;Lee, Seok-Hoon;Kim, Jin-Gyu
    • Applied Microscopy
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    • 제45권3호
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    • pp.183-188
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    • 2015
  • Due to the miniaturization of semiconductor devices, their crystal structure on the nanoscale must be analyzed. However, scanning electron microscope-electron backscatter diffraction (EBSD) has a limitation of resolution in nanoscale and high-resolution electron microscopy (HREM) can be used to analyze restrictive local structural information. In this study, three-dimensional (3D) automated crystal orientation and phase mapping using transmission electron microscopy (TEM) (3D TEM-EBSD) was used to identify the crystal structure relationship between an epitaxially grown CdS interfacial layer and a $Cu(In_xGa_{x-1})Se_2$ (CIGS) solar cell layer. The 3D TEM-EBSD technique clearly defined the crystal orientation and phase of the epitaxially grown layers, making it useful for establishing the growth mechanism of functional nano-materials.

Electrical, Optical, and Electrochemical Corrosion Resistance Properties of Aluminum-Doped Zinc Oxide Films Depending on the Hydrogen Content

  • Cho, Soo-Ho;Kim, Sung-Joon;Jeong, Woo-Jun;Kim, Sang-Ho
    • 한국표면공학회지
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    • 제51권2호
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    • pp.116-125
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    • 2018
  • Aluminum-doped zinc oxide (AZO) is a commonly used material for the front contact layer of chalcopyrite $CuInGaSe_2$ (CIGS) based thin film solar cells since it satisfies the requisite optical and electrical properties with low cost and abundant elemental availability. Low-resistivity and high-transmission front contacts have been developed for high-performance CIGS solar cells, and nearly meet the required performance. However, the durability of the cell especially for the corrosion resistance of AZO films has not been studied intensively. In this work, AZO films were prepared on Corning glass 7059 substrates by radio frequency magnetron sputtering depending on the hydrogen content. The electrical and optical properties and electrochemical corrosion resistance of the AZO films were evaluated as a function of the hydrogen content. With increasing hydrogen content to 6 wt%, the crystallinity, crystal size, and surface roughness of the films increased, and the resistivity decreased with increased carrier concentration, Hall mobility, oxygen vacancies, and $Zn(OH)_2$ binding on the AZO surface. At a hydrogen content of 6 wt%, the corrosion resistance was also relatively high with less columnar morphology, shallow pore channels, and lower grain boundary angles.

유기 태양전지의 개발 현황과 기술 과제 (Technical Tasks and Development Current Status of Organic Solar Cells)

  • 장지근;박병민;임성규;장호정
    • 한국재료학회지
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    • 제24권8호
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    • pp.434-442
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    • 2014
  • Serious environmental problems have been caused by the greenhouse effect due to carbon dioxide($CO_2$) or nitrogen oxides($NO_x$) generated by the use of fossil fuels, including oil and liquefied natural gas. Many countries, including our own, the United States, those of the European Union and other developed countries around the world; have shown growing interest in clean energy, and have been concentrating on the development of new energy-saving materials and devices. Typical non-fossil-fuel sources include solar cells, wind power, tidal power, nuclear power, and fuel cells. In particular, organic solar cells(OSCs) have relatively low power-conversion efficiency(PCE) in comparison with inorganic(silicon) based solar cells, compound semiconductor solar cells and the CIGS [$Cu(In_{1-x}Ga_x)Se_2$] thin film solar cells. Recently, organic cell efficiencies greater than 10 % have been obtained by means of the development of new organic semiconducting materials, which feature improvements in crystalline properties, as well as in the quantum-dot nano-structure of the active layers. In this paper, a brief overview of solar cells in general is presented. In particular, the current development status of the next-generation OSCs including their operation principle, device-manufacturing processes, and improvements in the PCE are described.

Ag 함량이 진공증발법으로 형성된 광금지대 (Ag,Cu)(In,Ga)Se2 태양전지에 미치는 영향 (Effects of Ag Content on Co-evaporated Wide Bandgap (Ag,Cu)(In,Ga)Se2 Solar Cells)

  • 박주완;윤재호;조준식;유진수;이희덕;김기환
    • Current Photovoltaic Research
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    • 제3권1호
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    • pp.16-20
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    • 2015
  • Ag addition in chalcopyrite materials is known to lead beneficial changes in aspects of structural and electronic properties. In this work, the effects of Ag alloying of $Cu(In,Ga)Se_2$-based solar cells has been investigated. Wide bandgap $(Ag,Cu)(In_{1-x},Ga_x)Se_2$ (x = 0.75~0.8) films have been deposited using a three-stage co-evaporation with various Ag/(Ag+Cu) ratios. With Ag alloying the $(Ag,Cu)(In_{1-x},Ga_x)Se_2$ (x~0.8) films were found to have greater grainsize and film thickness. Device were also fabricated with the $(Ag,Cu)(In_{1-x},Ga_x)Se_2$ (x~0.8) films and their J-V and quantum efficiency measurements were carried out. The highest-efficiency $(Ag,Cu)(In_{1-x},Ga_x)Se_2$ solar cell with Eg > 1.5 eV had an efficiency of 12.2% with device parameters $V_{OC}=0.810V$, $J_{SC}=21.7mA/cm^2$, and FF = 69.0%.

유기태양전지의 효율 및 수명 향상을 위한 기능성 계면 소재 연구 (Interface Functional Materials for Improving the Performance and Stability of Organic Solar Cell)

  • 홍기현;박선영;임동찬
    • 공업화학
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    • 제25권5호
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    • pp.447-454
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    • 2014
  • 유기태양전지는 제조비용이 저렴하고 플렉서블 전자소자에 적용이 가능하다는 장점들로 인해 최근 많은 연구가 진행되고 있다. 일반적인 정구조의 태양전지(conventional structured solar cell)의 경우 10%대의 향상된 발전 효율을 보이고 있으나, 여전히 기타 Si 및 CIGS 등과 같은 태양전지에 비해 낮은 효율과 짧은 수명은 상용화의 걸림돌로 작용하고 있다. 일반적으로 유기태양전지의 짧은 수명은 유기물의 광산화뿐만 아니라 수분 및 산소에 의한 음극, 양극 소재의 부식으로 인한 소재/소자 열화 문제로 설명되어지고 있다. 한편 이와 같은 문제점을 해결하기 위해 새로운 소자 구조(역구조 태양 전지; Inverted structured solar cell)가 제안되었으며 전자 수송층 및 기능성 계면 소재 연구를 통한 발전 효율 및 수명 향상에 관한 연구가 꾸준히 되고 있다. 그 결과 최근 2D/3D 산화 아연(ZnO) 소재를 역구조 태양전지의 전자 수송층으로 적용하고 건,습식 표면 후처리를 통해 약 9% 수준의 발전효율을 달성하였다. 본 총설에서는 ZnO를 기반으로 하는 전자 수송층 소재의 연구 동향 및 역구조 태양전지의 효율 향상 기술에 관한 최신 연구 동향을 소개하고자 한다.

Ga 함량에 따른 $Cu(In_xGa_{1-x})Se_2$ 태양전지의 특성분석 (Characterization of $Cu(In_xGa_{1-x})Se_2$ Solar Cells with Ga Content)

  • 김석기;권세한;이두열;이정철;강기환;윤경훈;안병태;송진수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 D
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    • pp.1264-1267
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    • 1998
  • $Cu(In_xGa_{1-x})Se_2$ thin films were prepared and characterized with various Ga contents. As the Ga content increased, the grain size of CIGS film became smaller. The 2 $\theta$ values in XRD patterns were shifted to larger values and the overlapped peaks were splitted. The energy bandgap increased from 1.04 to 1.67 eV and the resistivity decreased. The solar cell fabricated with ZnO/CdS/$Cu(In_{0.7}Ga_{0.3})Se_2/Mo$ structure yielded an efficeincy of 14.48% with an acitive area of 0.18 $cm^2$. The efficiency decreased with further increase of Ga content.

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Preparation of CIGSe thin film solar cells by solution process and selenization

  • 박미선;조효정;성시준;황대규;김대환;강진규
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.410-410
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    • 2011
  • Chalcopyrite계 화합물 $CuInGaSe_2$($CIGSe_2$)는 높은 광흡수율과 전기적 특성 및 안정성, 그리고 1.02~1.67 eV 범위의 최적의 에너지 밴드갭을 가져 박막태양전지용 광흡수층 재료로 많은 관심을 받고 있다. 일반적으로 $CIGSe_2$ 박막태양전지의 광흡수층을 형성하는 공정은 고효율 태양전지 제작이 가능한 진공공정을 이용한다. $CIGSe_2$ 광흡수층을 형성하는데 있어 진공 공정을 용액기반 공정으로 대처한다면 저비용으로 보다 간단하면서 효율적인 태양전지의 제조가 가능 할 것으로 기대된다. 본 연구에서는 $CIGSe_2$ 광흡수층을 2 단계에 걸쳐 제작하였다. 먼저 Cu, In, Ga 성분을 포함하는 용액을 이용하여 CIG 전구체막을 형성한 후, 다음 단계로 selenization 공정을 진행함으로써 $CIGSe_2$ 박막을 제작하였다. $CIGSe_2$의 결정 성장을 위하여 selenization 공정의 열처리 온도와 시간을 조절하여 CIG 전구체막과 Se 원소의 결합반응을 최적화할 수 있는 공정 조건을 확보하였으며 이를 통해 우수한 결정 및 전기적 특성을 갖는 $CIGSe_2$박막을 제조하였다. 제작된 $CIGSe_2$ 박막의 광전변환 효율을 측정하여 단위셀로서의 구현이 가능함을 확인하였으며 XRD, SEM, EDS, UV-visible을 통하여 $CIGSe_2$박막의 특성을 분석하였다.

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CIS 태양전지용 이원 화합물 $Cu_xSe$ 나노입자를 이용한 $Cu_xSe$ 박막 제조 (Fabrication of $Cu_xSe$ thin films by selenization of $Cu_xSe$ nanoparticles prepared by a colloidal process)

  • 김균환;안세진;윤재호;곽지혜;김도진;윤경훈
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 춘계학술대회 논문집
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    • pp.96-98
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    • 2009
  • This report summarizes our recent efforts to produce large-grained CIGS materials from porous nanoparticle thin films. In our approach, a $Cu_xSe$ nanoparticle colloid were first prepared by reacting a mixture of CuI in pyridine with $Na_2Se$ in methanol at reduced temperature. purified colloid was sprayed onto heated molybdenum-coated sodalime glass substrates to form thin film. After thermal processing of the thin film under a selenium ambient. $Cu_xSe$ colloid and thin film were characterized by scanning electron microscopy, x-ray diffraction. The optical(direct) band gap energy of $Cu_xSe$ thin films is 1.5 eV.

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