• Title/Summary/Keyword: solar cell doping

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Characterization of Amorphous Silicon $n^{+}-p-p^{+}$ Solar Cells (비정질 실리콘 $n^{+}-p-p^{+}$ 태양전지의 특성 연구)

  • Lee, Yi-Sang;Kim, Jae-Boong;Lee, Young-Keun;Chu, Hye-Yong;Jang, Jin
    • Proceedings of the KIEE Conference
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    • 1988.07a
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    • pp.324-327
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    • 1988
  • The photovoltaic performances of a-si : H$n^{+}-p-p^{+}$ solar cells have been investigated. The optimum substrate temperature for the deposition of a-Si : H $n^{+}-p-p^{+}$ cell decreases with increasing doping concentration of the p-layer, and is less than 200$^{\circ}C$ when the gas phase doping concentration is higher than 10 ppm. The results can be explained as the dependences of substrate temperature for the relaxation of silicon atoms and for the bonded hydrogen concentration in the p-layer.

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Selective Emitter Solar Cell의 표면 Doping 농도에 따른 광학적, 전기적 특성에 관한 연구

  • An, Si-Hyeon;Jang, Gyeong-Su;Park, Hyeong-Sik;Jo, Jae-Hyeon;Lee, Jun-Sin
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.308-308
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    • 2010
  • 산업의 기반이 되는 화석연료의 고갈과 화석연료의 사용으로 야기되는 환경오염 문제로 인하여 새로운 에너지원의 개발이 요구되고 있다. 이러한 시대적 요구에 부흥하고자 신재생 에너지원에 관한 많은 연구가 진행되고 있으며, 그중에 태양전지가 가장 주목받고 있다. 그러나 태양전지는 기존 전력 생산 방법에 비해 경제성이 낮아 이를 극복하기 위한 다양한 연구가 진행되고 있다. 특히 결정질 태양전지에 관한 연구가 가장 활발한데 경제성과 변환효율을 향상시키기 위해 태양전지의 전면에 선택적 doping 형성법이 사용되고 있는데, 선택적 doping 구조의 태양전지는 기존의 태양전지보다 변환효율이 높으면서 양산에서 사용 가능한 구조이기 때문에 경제적 측면에서 더 유리한 구조라 할 수 있다. 하지만 선택적 doping 형성을 위한 실험적인 분석 방법에는 많은 시간과 노력이 필요하며 많은 시행착오를 겪어야 한다. 따라서 이러한 시간과 노력을 줄이고 실험을 하기 이전에 결과를 예측하여 실험의 방향을 제시하고자 TCAD simulation을 이용하여 결정질 태양전지의 전면에 형성한 선택적 doping 농도에 따른 pn 접합 형성 구조와 doping profile에 따른 전기적, 광학적 특성을 예측하고 효과적인 특성을 가질 수 있는 구조를 제시하고자 한다. 선택적 doping의 효과를 확인하기 위해 SR로 각 파장별 양자효율의 변화와 전기적 특성을 분석하여 selective emitter 태양전지에 적합한 pn 접합 형성구조를 제시하고자 한다.

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Operating AFORS HET Simulation for Optimize of HIT Cell (HIT Cell 최적화를 위한 AFORS HET 시뮬레이션 실행)

  • You, Ho-Jun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.11a
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    • pp.448-449
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    • 2008
  • HIT(Heterojunction with intrinsic thin layer) solar cell은 결정 실리콘 (c-Si)을 n-type으로 제작시 수율이 어렵고 결정 실리콘 (c-Si)을 p-type위에 제조하는 것이 보다 보편적인 방법이므로 베이스의 결정 실리콘에는 p-type을, 그 위에는 진성 층(intrinsic layer) 그리고 반투명 전극의 아래에 제조되는 비정질 실리콘 (a-Si)을 n-type으로 하여 베이스 층과 TCO 후면 층의 두께, 도핑 농도 (doping concentration)와의 관계를 확인하여 본다.

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Fabrication and Characteristics of $P^+N$ and $P^+NN^+$ Junction Silicon Solar Cell ($P^+N, P^+NN^+$ 접합형 실리콘 태양전지의 제작 및 특성)

  • Lee, Dae-U;Lee, Jong-Deok;Kim, Gi-Won
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.20 no.1
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    • pp.22-26
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    • 1983
  • P+N and P+NN+ solar cells with the area of 3.36 $\textrm{cm}^2$ were fabricated by thermal diffusion. Under the light intensity of 100 mW/$\textrm{cm}^2$, total area(active area) conversion efficiency was 13.4%(14.7%) for P+N cell fabricated by 15 min boron predeposition at 94$0^{\circ}C$ and 20 min annealing at 80$0^{\circ}C$, and 14.3%(15.6%) for P+NN+ cell processed by 15 min boron predeposition at 94$0^{\circ}C$ and 50 min annealing at 80$0^{\circ}C$ after 20 min back phosphorus diffusion at 1,05$0^{\circ}C$. The minority carrier lifetime in bulk of P+NN+ cells was increased about 2~3 times comparing with P+N cells because of guttering and BSF effect due to back phosphorus doping. The methods used for efficiency improvement were AR coating, Ag electroplating, back doping and fine grid pattern as well as the control of front doping profile.

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On Electroless Plating and Double Sided Buried Contact Silicon Solar Cells

  • Ebong, A.U.;Kim, D.S.;Lee, S.H.;Honsberg, C.B.
    • Korean Journal of Materials Research
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    • v.6 no.6
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    • pp.568-575
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    • 1996
  • The double sided buried contact(DSBC)silicon solar cell processing requires doping of the rear and front grooves with boron and phosphorus respectively. The successful electroless plating of these grooves with the appropriate metals haave been found to depend on the boron conditions for the rear fingers. However, an increased understanding of electroless plating has removed this restriction. Thus the DSBC cells using different boron conditions can be electrolessly plated with ease. This paper presents the recent work done on metallizing the double sided buried contact silicon solar cells with heavily doped boron grooves. The cells results indicate that, the heavier the boron grooves, the poorer the cell performance because of the probable higher metal contact recombination associated with boron grooves.

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A effect of the back contact silicon solar cell with surface texturing size and density (표면 텍스쳐링 크기와 밀도가 후면 전극 실리콘 태양전지에 미치는 영향)

  • Jang, Wanggeun;Jang, Yunseok;Pak, Jungho
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.112.1-112.1
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    • 2011
  • The back contact solar cell (BCSC) has several advantages compared to the conventional solar cell since it can reduce grid shadowing loss and contact resistance between the electrode and the silicon substrate. This paper presents the effect of the surface texturing of the silicon BCSC by varying the texturing depth or the texturing gap in the commercially available simulation software, ATHENA and ATLAS of the company SILVACO. The texturing depth was varied from $5{\mu}m$ to $150{\mu}m$ and the texturing gap was varied from $1{\mu}m$ to $100{\mu}m$ in the simulation. The resulting efficiency of the silicon BCSC was evaluated depending on the texturing condition. The quantum efficiency and the I-V curve of the designed silicon BCSC was also obtained for the analysis since they are closely related with the solar cell efficiency. Other parameters of the simulated silicon BCSC are as follows. The substrate was an n-type silicon, which was doped with phosphorous at $6{\times}10^{15}cm^{-3}$, and its thickness was $180{\mu}m$, a typical thickness of commercial solar cell substrate thickness. The back surface field (BSF) was $1{\times}10^{20}\;cm^{-3}$ and the doping concentration of a boron doped emitter was $8.5{\times}10^{19}\;cm^{-3}$. The pitch of the silicon BCSC was $1250{\mu}m$ and the anti-reflection coating (ARC) SiN thickness was $0.079{\mu}m$. It was assumed that the texturing was anisotropic etching of crystalline silicon, resulting in texturing angle of 54.7 degrees. The best efficiency was 25.6264% when texturing depth was $50{\mu}m$ with zero texturing gap in case of low texturing depth (< $100{\mu}m$).

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A Study on Poly-Si Solar Cell of Novel Structure with the Reduced Effects of Grain Boundaries (결정입계 영향을 줄인 새로운 구조의 다결정 실리콘 모양전지에 관한 연구)

  • Lim, Dong-Gun;Lee, Su-Eun;Park, Sung-Hyun;Yi, Jun-Sin
    • Proceedings of the KIEE Conference
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    • 1999.07d
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    • pp.1738-1740
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    • 1999
  • This paper deals with a novel structure of poly-Si solar cell. A solar cell conversion efficiency was degraded by grain boundary effect in Polycrystalline silicon. To reduce grain boundary effect, we performed a preferential grain boundary etching, $POCl_3$ n-type emitter doping, and then ITO film growth on poly-Si. Among the various preferential etchants, Schimmel etch solution exhibited the best result having grain boundary etch depth about $10{\mu}m$. RF magnetron sputter grown ITO films showed a low resistivity of $10^{-4}\Omega-cm$ and high transmittance of 85%. With well fabricated poly-Si solar cells. we were able to achieve as high as 15% conversion efficiency at the input power of 20mW/$cm^2$.

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Luminescence Properties of Ag Doped ZnO as Quantum Dot Materials for Improving Efficiency of Dye-sensitized Solar Cell (염료감응형 태양전지에서 효율 향상을 위한 Quantum Dot 재료로서 Ag가 도핑된 ZnO의 발광 특성 연구)

  • 김현주;이동윤;송재성
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.17 no.9
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    • pp.988-993
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    • 2004
  • Luminescence characteristics of Ag-doped ZnO as the quantum dot materials to increasing the efficiency on dye-sensitized solar cells (DSC) have been studied. Ag doped ZnO powder was produced by the self-sustaining combustion process using ultrasonic spraying heating method. Luminescence wavelength region of the ZnO by Ag doping was shifted to longer wavelength. Tn the case of the Ag doped ZnO powder, broad luminescence spectrum centered on 600nm was observed. On the other hand, we compared PL data of RTA treated ZnO:Ag film at various temperatures because the front electrode of solar cell was in need of the sintering process. In XRD and PL data for RTA treated film at the 500$^{\circ}C$ showed good property. And, it was found that the grain size wasn't growing but only optical property was changed. According to the result of XRD, PL, absorption, emission spectrum and DV-X${\alpha}$ used in theoretical calculation, it is considered to be possible to use Ag doped ZnO as quantum dot material for improving DSC efficiency.

Poly-Si Cell with Preferential Grain Boundary Etching and ITO Electrode

  • Lim, D.G.;Lee, S.E.;Park, S.H.;Yi, J.
    • Solar Energy
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    • v.19 no.3
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    • pp.125-131
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    • 1999
  • This paper deals with a novel structure of poly-Si solar cell. A grain boundary(GB) of poly-Si acts as potential barrier and recombination center for photo-generated carriers. To reduce unwanted side effects at the GB of poly-Si, we employed physical GB removal of poly-Si using chemical solutions. Various chemical etchants such as Sirtl, Yang, Secco, and Schimmel were investigated for the preferential GB etching. Etch depth about 10 ${\mu}m$ was achieved by a Schimmel etchant. After a chemical etching of poly-Si, we used $POCl_3$ for emitter junction formation. This paper used an easy method of top electrode formation using a RF sputter grown ITO film. ITO films with thickness of 300 nm showed resistivity of $1.26{\times}10^{-4}{\Omega}-cm$ and overall transmittance above 80%. Using a preferential GB etching and ITO top electrode, we developed a new fabrication procedure of poly-Si solar cells. Employing optimized process conditions, we were able to achieve conversion efficiency as high as 16.6% at an input power of 20 $mW/cm^2$. This paper investigates the effects of process parameters: etching conditions, ITO deposition factors, and emitter doping densities in a poly-Si cell fabrication procedure.

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Fabrication of an Automatic Color-Tuned System with Flexibility Using a Dry Deposited Photoanode

  • Choi, Dahyun;Park, Yoonchan;Lee, Minji;Kim, Kwangmin;Choi, Jung-Oh;Lee, Caroline Sunyong
    • International Journal of Precision Engineering and Manufacturing-Green Technology
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    • v.5 no.5
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    • pp.643-650
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    • 2018
  • A self-powered electrochromic device was fabricated on an indium tin oxide-polyethylene naphthalate flexible substrate using a dye-sensitized solar cell (DSSC) as a self-harvesting source; the electrochromic device was naturally bleached and operated under outdoor light conditions. The color of the organic electrochromic polymer, poly(3,4-ethylenedioxythiophene) polystyrene sulfonate, was shifted from pale blue to deep blue with an antimony tin oxide film as a charge-balanced material. Electrochromic performance was enhanced by secondary doping using dimethyl sulfoxide. As a result, the device showed stable switching behavior with a high transmittance change difference of 40% at its specific wavelength of 630 nm for 6 hrs. To improve the efficiency of the solar cell, 1.0 wt.% of Ag NWs in the photoanode was applied to the $TiO_2$ photoanode. It resulted in an efficiency of 3.3%, leading to an operating voltage of 0.7 V under xenon lamp conditions. As a result, we built a standalone self-harvesting electrochromic system with the performance of transmittance switching of 29% at 630 nm, by connecting with two solar cells in a device. Thus, a self-harvesting and flexible device was fabricated to operate automatically under the irradiated/dark conditions.