• 제목/요약/키워드: CdSe films

검색결과 95건 처리시간 0.025초

CIGSe2 박막태양전지용 Mo 하부전극의 물리·전기적 특성 연구 (A Study of Mo Back Electrode for CIGSe2 Thin Film Solar Cell)

  • 최승훈;박중진;윤정오;홍영호;김인수
    • 한국진공학회지
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    • 제21권3호
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    • pp.142-150
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    • 2012
  • CIGS 박막 태양전지 기판소재인 소다라임유리 표면에 플라즈마 전처리 후 DC 마그네트론 스퍼터링 방법으로 Mo 박막을 제조하였다. 증착압력과 증착시간 변화에 따른 Mo 박막의 물리적, 전기적 특성을 분석하였고, 셀렌화 처리 조건에 따른 $MoSe_2$ 생성 여부와 경향성을 연구하였으며, Mo 박막 두께에 따른 AZO/i-ZnO/CdS/CIGS/Mo/SLG 구조의 태양전지를 제조하여 그 특성을 분석 및 평가하였다. 증착압력이 4.9 mTorr에서 1.3 mTorr로 감소할수록 치밀하고 결정입자 사이의 공극이 적고, 증착속도가 감소하고 전기저항도가 낮은 Mo 박막이 증착되었다. 증착온도가 상온에서 $200^{\circ}C$로 증가할수록 Mo 박막은 치밀한 구조를 가지고 결정성은 향상되어 면저항이 낮게 나타났다. 셀렌화 시간이 길어질수록 Mo 박막 층은 줄어들고, $MoSe_2$ 층 생성두께가 커지는 것을 알 수 있었고, 열처리로 인해 결정화 되면서 전체 박막의 두께가 줄어들었으며, $MoSe_2$ 층의 배양성은 c축이 Mo 표면과 수직 방향으로 성장된 것을 알 수 있었다. Mo 박막의 두께가 1.2 ${\mu}m$와 0.6 ${\mu}m$인 AZO/i-ZnO/CdS/CIGS/Mo/SLG 구조로 이루어진 CIGS 박막 태양전지를 제조하였다. Mo 박막의 두께가 1.2 ${\mu}m$일 때 보다 0.6 ${\mu}m$일 때 CIGS 박막 태양전지의 변환 효율은 9.46%로 비교적 우수한 특성을 나타났다. CIGS 박막 태양전지에서 하부전극인 Mo 박막 특성은 유리기판 및 광흡수 층과의 계면 형성 따라 큰 영향을 미친다는 것을 알 수 있었고, 유리기판의 플라즈마 처리와 Mo 박막의 두께조절로 Na 효과 및 $MoSe_2$층 형성 제어함으로써 CIGS 박막 태양전지의 특성 개선에 효과를 가질 수 있었다.

HWE방법에 의한 CdSe 박막 성장과 광전기적 특성 (Growth of CdSe thin films using Hot Wall Epitaxy method and their photoelectrical characteristics)

  • 홍광준;이관교;이상열;유상하;신용진;서상석;정준우;정경아;신영진;정태수;김택성;문종대;김혜숙
    • 센서학회지
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    • 제6권4호
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    • pp.328-336
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    • 1997
  • HWE 방법에 의해 CdSe 박막을 (100)방향 Si 기판 위에 성장시켰다. 증발원과 기판의 온도를 각각 $600^{\circ}C$, $430^{\circ}C$로하여 성장시킨 CdSe 박막의 이중 결정 X-선 요동곡선(DCRC)의 반폭치(FWHM)값이 380 arcsec로 가장 작았다. Van der Pauw 방법으로 Hall 효과를 측정하여 운반자농도의 In n 대 (1/T)에서 구한 활성화에너지는 0.19eV로 측정되었다. Hall 이동도의 온도 의존성은 30K에서 150K까지는 $T^{3/2}$에 따라 증가하여 불순물산란에 기인하고, 150K에서 293K까지는 $T^{-3/2}$에 따라 감소하여 격자산란에 기인한 것으로 고찰되었다. 광전도셀의 특성으로 spectral response, 최대 허용소비전력(MAPD), 광전류와 암전류(pc/dc)의 비 및 응답시간을 측정하였다. Cu 증기분위기에서 열처리한 광전도셀의 경우, 감도(${\gamma}$)는 0.99, pc/dc은 $1.39{\times}10^{7}$, 그리고 최대 허용소비전력(MAPD)은 335mW, 오름시간(rise time)은 10ms, 내림시간(decay time)은 9.5ms로 가장 좋은 광전도 특성을 얻었다.

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$Cu_2ZnSnS_4$ Thin Film Absorber Synthesized by Chemical Bath Deposition for Solar Cell Applications

  • Arepalli, Vinaya Kumar;Kumar, Challa Kiran;Park, Nam-Kyu;Nang, Lam Van;Kim, Eui-Tae
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 추계학술발표대회
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    • pp.35.1-35.1
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    • 2011
  • New photovoltaic (PV) materials and manufacturing approaches are needed for meeting the demand for lower-cost solar cells. The prototypal thin-film photovoltaic absorbers (CdTe and $Cu(In,Ga)Se_2$) can achieve solar conversion efficiencies of up to 20% and are now commercially available, but the presence of toxic (Cd,Se) and expensive elemental components (In, Te) is a real issue as the demand for photovoltaics rapidly increases. To overcome these limitations, there has been substantial interest in developing viable alternative materials, such as $Cu_2ZnSnS_4$ (CZTS) is an emerging solar absorber that is structurally similar to CIGS, but contains only earth abundant, non-toxic elements and has a near optimal direct band gap energy of 1.4~1.6 ev and a large absorption coefficient of ${\sim}10^4\;cm^{-1}$. The CZTS absorber layers are grown and investigated by various fabrication methods, such as thermal evaporation, e-beam evaporation with a post sulfurization, sputtering, non-vacuum sol-gel, pulsed laser, spray-pyrolysis method and electrodeposition technique. In the present work, we report an alternative method for large area deposition of CZTS thin films that is potentially high throughput and inexpensive when used to produce monolithically integrated solar panel modules. Specifically, we have developed an aqueous chemical approach based on chemical bath deposition (CBD) with a subsequent sulfurization heat treatment. Samples produced by our method were analyzed by scanning electron microscopy, X-ray diffraction, transmission electron microscopy, absorbance and photoluminescence. The results show that this inexpensive and relatively benign process produces thin films of CZTS exhibiting uniform composition, kesterite crystal structure, and good optical properties. A preliminary solar cell device was fabricated to demonstrate rectifying and photovoltaic behavior.

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Synthesis and Characterization of CZTS film deposited by Chemical Bath Deposition method

  • Arepalli, Vinaya Kumar;Kumar, Challa Kiran;Park, Nam-Kyu;Nang, Lam Van;Kim, Eui-Tae
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.99.1-99.1
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    • 2012
  • The thin-film photovoltaic absorbers (CdTe and $Cu(In,Ga)Se_2$) can achieve solar conversion efficiencies of up to 20% and are now commercially available, but the presence of toxic (Cd,Se) and expensive elemental components (In, Te) is a real issue as the demand for photovoltaics rapidly increases. To overcome these limitations, there has been substantial interest in developing viable alternative materials, such as $Cu_2ZnSnS_4$ (CZTS) is an emerging solar absorber that is structurally similar to CIGS, but contains only earth abundant, non-toxic elements and has a near optimal direct band gap energy of 1.4 - 1.6 eV and a large absorption coefficient of ~104 $cm^{-1}$. The CZTS absorber layers are grown and investigated by various fabrication methods, such as thermal evaporation, e-beam evaporation with a post sulfurization, sputtering, non-vacuum sol-gel, pulsed laser, spray-pyrolysis method and electrodeposition technique. In the present work, we report an alternative aqueous chemical approach based on chemical bath deposition (CBD) method for large area deposition of CZTS thin films. Samples produced by our method were analyzed by scanning electron microscopy, X-ray diffraction, transmission electron microscopy, absorbance and photoluminescence. The results show that this inexpensive and relatively benign process produces thin films of CZTS exhibiting uniform composition, kesterite crystal structure, and some factors like triethanolamine, ammonia, temperature which strongly affect on the morphology of CZTS film.

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Cu(InGa)$Se_2$ 광흡수막의 두께에 따른 태양전지의 전기광학 특성 (Electrical and Optical Properties with the Thickness of Cu(lnGa)$Se_2$ Absorber Layer)

  • 김석기;이정철;강기환;윤경훈;박이준;송진수;한상옥
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 춘계학술대회 논문집 유기절연재료 전자세라믹 방전플라즈마 일렉트렛트 및 응용기술
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    • pp.108-111
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    • 2002
  • CIGS film has been fabricated on soda-lime glass, which is coated with Mo film. by multi-source evaporation process. The films has been prepared with thickness of 1.0 ${\mu}m$, 1.75${\mu}m$, 2.0${\mu}m$, 2.3${\mu}m$, and 3.0${\mu}m$. X-ray diffraction analysis with film thickness shows that CIGS films exhibit a strong (112) preferred orientation. Furthermore. CIGS films exhibited distinctly decreasing the full width of half-maximum and (112) preferred peak with film thickness. Also, The film's microstructure, such as the preferred orientation, the full width at half-maximum(FWHM), and the interplanar spacing were examined by X-ray diffraction. The preparation condition and the characteristics of the unit layers were as followings ; Mo back contact DC sputter, CIGS absorber layer : three-stage coevaporation, CdS buffer layer : chemical bath deposition, ZnO window layer : RF sputtering, $MgF_2$ antireflectance : E-gun evaporation

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비정질 SeGe 박막의 PL 특성과 광흑화 효과에 관한 연구 (The Photoluminescence(PL) Spectroscopy and the Photo-Darkening(PD) Effect of the Amorphous SeGe Thin Films)

  • 김진우;이현용;정홍배
    • 한국전기전자재료학회논문지
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    • 제15권5호
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    • pp.435-440
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    • 2002
  • In this study, we have investigated photo-induced changes of optical energy gap( $E_{OP)}$ and photoluminescence (PL) in amorphous ($\alpha$-) S $e_{100-x}$G $e_{x}$ (x=5, 25 and 33) thin films prepared by conventional thermal evaporation method. In the $\alpha$-S $e_{100-x}$G $e_{x}$ thin film, the $E_{OP}$ is obtained by a linear extrapolation of the ($\alpha$hν)$^{\frac{1}{2}}$ versus hν plot to the energy axis using the optical absorption coefficient ($\alpha$) calculated from the extinction coefficient k measured in the wavelength range of 290~900nm. Although the values of $\Delta$ $E_{OP}$ are very different, all films exhibit photo-induced photo-darkening (PD) effect that is a red shift of $E_{OP}$ . In particular, $\Delta$ $E_{OP}$ in $\alpha$-S $e_{75}$ G $e_{25}$ thin film exhibits the largest value (i, e., $\Delta$ $E^{OP}$ ~40meV for $\alpha$-S $e_{95}$ G $e_{5}$ , $\Delta$ $E_{OP}$ ~200meV for $\alpha$-S $e_{75}$ G $e_{25}$ , $\Delta$ $E_{OP}$ ~130meV for $\alpha$-S $e_{67}$ G $e_{33}$ ). PL spectra in $\alpha$-SeGe by hν$_{HeCd}$ have no-Stokes shift (SS) and show a tendency dependent on both composition and illumination time. We explain the energy-induced phenomena such as the PD and thermal bleaching, the native charged-defect generation and the no-SS PL, etc..the PD and thermal bleaching, the native charged-defect generation and the no-SS PL, etc..tc..

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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메조포러스 이산화티타늄 박막 기반 양자점-감응 태양전지 (Quantum Dot-Sensitized Solar Cells Based on Mesoporous TiO2 Thin Films)

  • 이효중
    • 전기화학회지
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    • 제18권1호
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    • pp.38-44
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    • 2015
  • 본 총설은 다공성의 메조포러스 이산화티타늄 박막을 기반으로 하는 양자점-감응 태양 전지의 최근 발전 과정에 대해 정리하였다. 나노스케일의 무기물 양자점이 가지는 본질적 특성에 기반하고 다양한 양자점 구성 물질을 이용하여, 용액-공정 기반의 다양한 3세대 박막 태양전지를 만들 수 있었다. 양자점 감응제는 준비하는 방법에 따라 크게 2가지로 나눌 수 있는데, 첫 번째는 콜로이드 형태로 용액상에서 준비한 다음 $TiO_2$ 표면에 붙이는 것이고 두 번째는 양자점 전구체가 녹아있는 화학조를 이용하여 직접 $TiO_2$ 표면에 성장시키는 것이다. 폴리썰파이드 전해질을 사용하여, 콜로이드 양자점 감응제의 경우는 최근 들어 정밀한 조성 조절을 통하여 전체 광전 변환효율이 ~7%에 이르렀고 화학조 침전법을 이용하여 준비된 대표적 감응제인 CdS/CdSe는 ~5%의 효율을 보이고 있다. 앞으로는 지금까지 보고된 양자점 감응제의 뛰어난 광전류 생성 능력을 유지하면서, 새로운 정공 전달체의 개발 및 계면 조절을 통한 개방 전압과 채움 상수의 개선을 통한 효율 증가 및 안정성에 관한 체계적 연구가 필요한 상황이다.

성장온도에 따른 Cu(In1Ga)Se2박막 태양전지의 광전특성 분석 (Photovoltaic Properties of Cu(In1Ga)Se2Thin film Solar Cells Depending on Growth Temperature)

  • 김석기;이정철;강기환;윤경훈;송진수;박이준;한상옥
    • 한국전기전자재료학회논문지
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    • 제16권2호
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    • pp.102-107
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    • 2003
  • This study puts focus on the optimization of growth temperature of CIGS absorber layer which affects severely the performance of solar cells. The CIGS absorber layers were prepared by three-stage co-evaporation of metal elements in the order of In-Ga-Se. The effect of the growth temperature of 1st stage was found not to be so important, and 350$^{\circ}C$ to be the lowest optimum temperature. In the case of growth temperature at 2nd/3rd stage, the optimum temperature was revealed to be 550$^{\circ}C$. The XRD results of CIGS films showed a strong (112) preferred orientation and the Raman spectra of CIGS films showed only the Al mode peak at 173cm$\^$-1/. Scanning electron microscopy results revealed very small grains at 2nd/3rd stage growth temperature of 480$^{\circ}C$. At higher temperatures, the grain size increased together with a reduction in the number of the voids. The optimization of experimental parameters above mentioned, through the repeated fabrication and characterization of unit layers and devices, led to the highest conversion efficiency of 15.4% from CIGS-based thin film solar cell with a structure of Al/ZnO/CdS/CIGS/Mo/glass.

Fabrication of wide-bandgap β-Cu(In,Ga)3Se5 thin films and their application to solar cells

  • Kim, Ji Hye;Shin, Young Min;Kim, Seung Tae;Kwon, HyukSang;Ahn, Byung Tae
    • Current Photovoltaic Research
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    • 제1권1호
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    • pp.38-43
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    • 2013
  • $Cu(In,Ga)_3Se_5$ is a candidate material for the top cell of $Cu(In,Ga)Se_2$ tandem cells. This phase is often found at the surface of the $Cu(In,Ga)Se_2$ film during $Cu(In,Ga)Se_2$ cell fabrication, and plays a positive role in $Cu(In,Ga)Se_2$ cell performance. However, the exact properties of the $Cu(In,Ga)_3Se_5$ film have not been extensively studied yet. In this work, $Cu(In,Ga)_3Se_5$ films were fabricated on Mo-coated soda-lime glass substrates by a three-stage co-evaporation process. The Cu content in the film was controlled by varying the deposition time of each stage. X-ray diffraction and Raman spectroscopy analyses showed that, even though the stoichiometric Cu/(In+Ga) ratio is 0.25, $Cu(In,Ga)_3Se_5$ is easily formed in a wide range of Cu content as long as the Cu/(In+Ga) ratio is held below 0.5. The optical band gap of $Cu_{0.3}(In_{0.65}Ga_{0.35})_3Se_5$ composition was found to be 1.35eV. As the Cu/(In+Ga) ratio was decreased further below 0.5, the grain size became smaller and the band gap increased. Unlike the $Cu(In,Ga)Se_2$ solar cell, an external supply of Na with $Na_2S$ deposition further increased the cell efficiency of the $Cu(In,Ga)_3Se_5$ solar cell, indicating that more Na is necessary, in addition to the Na supply from the soda lime glass, to suppress deep level defects in the $Cu(In,Ga)_3Se_5$ film. The cell efficiency of $CdS/Cu(In,Ga)_3Se_5$ was improved from 8.8 to 11.2% by incorporating Na with $Na_2S$ deposition on the CIGS film. The fill factor was significantly improved by the Na incorporation, due to a decrease of deep-level defects.