• 제목/요약/키워드: Solar Cells

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Impact of Cyano and Fluorine Group Functionalization on the Optoelectronic and Photovoltaic Properties of Donor-Acceptor-π-Acceptor Benzothiadiazole Derived Small Molecules: A DFT and TD-DFT Study

  • Prabhat Gautam;Anurag Gautam;Neeraj Kumar
    • 한국재료학회지
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    • 제33권6호
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    • pp.236-241
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    • 2023
  • Solar cells based on p-conjugated donor-acceptor (D-A) organic molecular systems are a promising alternative to conventional electrical energy generation. D-A molecular systems, which have a triphenylamine (TPA) moiety linked with a benzothiadiazole (BTD) moiety, open the potential development of new small molecule donors for bulk heterojunction (BHJ) solar cells. Here, a series of donor-acceptor-π-acceptor (D-A-π-A) small molecule donors (SMD) derived from triphenylamine (TPA) donor and benzothiadiazole (BTD) acceptor building blocks, were designed for BHJ organic solar cells. The small molecule donors SMD1-4 were studied using density functional theory (DFT) and time dependent-DFT (TDDFT) methods, to understand the effect of cyano and fluorine group functionalization on their properties. The effect of structure alteration by cyano and fluorine group functionalization on the optoelectronic properties, the calculated highest occupied molecular orbitals (HOMOs) and lowest unoccupied molecular orbitals (LUMOs) and the HOMO-LUMO gaps were theoretically explored. The Voc (open-circuit photovoltage) and fill factor (FF) for SMD1-4 were obtained with a PC71BM acceptor, which showed that these organic small molecules are potential small molecule donors for organic bulk heterojunction solar cells.

ALD ZnO 버퍼층 증착 온도가 전착 Cu2O 박막 태양전지 소자 특성에 미치는 영향 (The Influence of Deposition Temperature of ALD n-type Buffer ZnO Layer on Device Characteristics of Electrodeposited Cu2O Thin Film Solar Cells)

  • 조재유;트란 휴 만;허재영
    • Current Photovoltaic Research
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    • 제6권1호
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    • pp.21-26
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    • 2018
  • Beside several advantages, the PV power generation as a clean energy source, is still below the supply level due to high power generation cost. Therefore, the interest in fabricating low-cost thin film solar cells is increasing continuously. $Cu_2O$, a low cost photovoltaic material, has a wide direct band gap of ~2.1 eV has along with the high theoretical energy conversion efficiency of about 20%. On the other hand, it has other benefits such as earth-abundance, low cost, non-toxic, high carrier mobility ($100cm^2/Vs$). In spite of these various advantages, the efficiency of $Cu_2O$ based solar cells is still significantly lower than the theoretical limit as reported in several literatures. One of the reasons behind the low efficiency of $Cu_2O$ solar cells can be the formation of CuO layer due to atmospheric surface oxidation of $Cu_2O$ absorber layer. In this work, atomic layer deposition method was used to remove the CuO layer that formed on $Cu_2O$ surface. First, $Cu_2O$ absorber layer was deposited by electrodeposition. On top of it buffer (ZnO) and TCO (AZO) layers were deposited by atomic layer deposition and rf-magnetron sputtering respectively. We fabricated the cells with a change in the deposition temperature of buffer layer ranging between $80^{\circ}C$ to $140^{\circ}C$. Finally, we compared the performance of fabricated solar cells, and studied the influence of buffer layer deposition temperature on $Cu_2O$ based solar cells by J-V and XPS measurements.

소형위성용 태양전지 개발 동향 및 발전 방향 (Development trends of Solar cell technologies for Small satellite)

  • 최준희
    • 한국산학기술학회논문지
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    • 제22권5호
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    • pp.310-316
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    • 2021
  • 기존의 인공위성은 다기능·높은 성능을 가진 대형위성을 국가 단위에서 운용하는 것이 일반적이었으나 최근의 전기·전자 및 광학 기술의 경량 소형화 발전에 따라 점차 소형위성이 주목받고 있다. 크기와 무게가 감소됨에 따라 적은 비용으로 개발 및 발사가 가능하여 위성 개발에 진입장벽이 낮아지고 있으나, 인공위성의 전력공급에 필수적인 태양전지 패널의 경우 태양광에 효율적으로 노출되기 위해 넓은 표면적이 필요하여 소형화 및 경량화가 제한적이다. 우주용 태양전지는 우주선과 태양열, 온도와 같은 다양한 우주환경을 고려하여 제작되어야하고, 부피를 최적화하기 위해 전개 매커니즘을 적용하며 경량화 및 고효율화를 위하여 태양전지 셀의 구조적 재료적인 연구개발이 필요하다. 현재 태양전지 패널로 개발되어 운용되고 있는 제품들은 고효율화를 위하여 주로 InGaP/GaAs/Ge 소재의 3중구조를 적용하고 있다. 최근에는 초고효율 다층구조 태양전지를 위하여 4중접합 이상의 구조가 연구되고 있으며, 나아가 소재적으로 경량화에 유리한 유연박막 태양전지, 유기 및 유무기 하이브리드 태양전지 등이 차세대 소형위성용 태양전지로 주목받고 있다.

태양전지의 양자효율 측정 및 분석 (Quantum Efficiency Measurement and Analysis of Solar Cells)

  • 김영국;오동현;박진주;이준신
    • 한국전기전자재료학회논문지
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    • 제36권4호
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    • pp.351-361
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    • 2023
  • 본 논문은 대학연구실과 산업현장에서 태양전지를 연구 개발하는 초년생들이 태양전지 성능 분석하는 데 있어 가장 기본적이면서도 중요한 양자효율(quantum efficiency) 측정, 분석 방법에 이해를 돕는 것을 목적으로 한다. 양자효율의 정의를 시작으로, 측정 방법, 분석 방법에 대한 자세한 소개와 함께 태양광 스펙트럼으로부터 태양전지 소재의 밴드 갭에 따른 이론적인 전류밀도를 계산하고, 이론적인 전류밀도와 양자효율 측정, 분석을 통해 태양전지의 성능을 분석하는 방법에 대해 깊이 있게 논의한다. 태양전지의 양자효율 측정 분석은 태양전지를 깊이(전면, bulk, 후면)에 따라 분석할 수 있어 태양전지 성능 분석에 직관을 줄 수 있는 매우 유용한 방법이다. 이론적 전류밀도와 양자효율 측정 분석에 대한 깊은 이해로 태양전지를 연구하는 학생과 연구원들이 태양전지의 성능 분석을 하는 데 있어 기반으로 활용할 수 있기를 기대한다.

고효율 단결정 실리콘 태양전지 (High Efficiency Crystalline Silicon Solar Cells)

  • 김동섭;조은철;조영현;;민요셉;이수홍
    • 태양에너지
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    • 제17권1호
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    • pp.17-26
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    • 1997
  • 단결정 실리콘 태양전지는 PESC(Passivated Emitter Solar Cell), PERC(Passivated Emitter and Rear Cell), Point Contact Cell, PERL(Passivated Emitter and Rear Locally-Diffused Cell) 형태로 기술적인 발전을 해왔다. BCSC(Buried Contact Solar Cell)는 낮은 제조 단가로 높은 효율을 얻을 목적으로 개발되었으며 개량된 형태인 DSBC(Double Sided Buried Contact Cell)는 양면으로 빛을 흡수할 수 있는 장점이 있다.

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실리콘 웨이퍼 비저항에 따른 Dopant-Free Silicon Heterojunction 태양전지 특성 연구 (The Influence of the Wafer Resistivity for Dopant-Free Silicon Heterojunction Solar Cell)

  • 김성해;이정호
    • 한국표면공학회지
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    • 제51권3호
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    • pp.185-190
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    • 2018
  • Dopant-free silicon heterojunction solar cells using Transition Metal Oxide(TMO) such as Molybdenum Oxide($MoO_X$) and Vanadium Oxide($V_2O_X$) have been focused on to increase the work function of TMO in order to maximize the work function difference between TMO and n-Si for a high-efficiency solar cell. One another way to increase the work function difference is to control the silicon wafer resistivity. In this paper, dopant-free silicon heterojunction solar cells were fabricated using the wafer with the various resistivity and analyzed to understand the effect of n-Si work function. As a result, it is shown that the high passivation and junction quality when $V_2O_X$ deposited on the wafer with low work function compared to the high work function wafer, inducing the increase of higher collection probability, especially at long wavelength region. the solar cell efficiency of 15.28% was measured in low work function wafer, which is 34% higher value than the high work function solar cells.

광활성층 사용물질에 따라 변화하는 유기태양전지의 효율 (Trend Efficiency of Organic Solar Cells with Respect to the Types of Photoactive Layer)

  • 김유은;김기환
    • 한국전기전자재료학회논문지
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    • 제35권6호
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    • pp.581-593
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    • 2022
  • As energy depletion and environmental pollution problems are intensified, research has been conducted actively on alternative energy sources, an eco-friendly and continuous available energy conversion system. So has been organic solar cells whose efficiency is improved to 18.32%. The photoactive layer inside the solar cell is composed of a donor and a acceptor, and the combination of materials capable of effectively exchanging electrons greatly affects the efficiency of the organic solar cell. Accordingly, various researches have been conducted to improve the efficiency, and the maximum efficiency could be achieved by a solar cell with high carrier generation and low charge recombination characteristics through the introduction of a non-fullerene acceptor and material reconstruction. Organic solar cells are still difficult to commercialize due to their efficiency limitations and light stability, but if a photoactive layer consisting of a donor capable of efficiently absorbing long-wavelength light and an acceptor capable of forming an appropriate energy level is designed, the efficiency of the organic solar cell will reach 20%.

Interlayers of polymer tandem solar cells

  • 김태희;김경곤
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.318-318
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    • 2010
  • We present the effect of interlayers of polymer tandem solar cells on their photovoltaic performance. P-type and n-type interlayers are essential for the series-connection of the subcells and enable to form the tandem cell architecture by the solution processing. In this study, we use PEDOT:PSS, nanocrystalline $TiO_2$, and blends of semiconducting polymers and fullerene derivatives as a hole transporting layer, electron transporting layer, and photoactive layers, respectively. We show that photovoltaic performances of polymer tandem solar cells depending on various PEDOT:PSS layers with the different electric conductivity and the various $TiO_2$ layer thickness.

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Cu2ZnSn(S,Se)4 Thin Film Solar Cells Fabricated by Sulfurization of Stacked Precursors Prepared Using Sputtering Process

  • Gang, Myeng Gil;Shin, Seung Wook;Lee, Jeong Yong;Kim, Jin Hyeok
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.97-97
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    • 2013
  • Recently, Cu2ZnSn(S,Se)4 (CZTSS), which is one of the In- and Ga- free absorber materials, has been attracted considerable attention as a new candidate for use as an absorber material in thin film solar cells. The CZTSS-based absorber material has outstanding characteristics such as band gap energy of 1.0 eV to 1.5 eV, high absorption coefficient on the order of 104 cm-1, and high theoretical conversion efficiency of 32.2% in thin film solar cells. Despite these promising characteristics, research into CZTSS based thin film solar cells is still incomprehensive and related reports are quite few compared to those for CIGS thin film solar cells, which show high efficiency of over 20%. I will briefly overview the recent technological development of CZTSS thin film solar cells and then introduce our research results mainly related to sputter based process. CZTSS thin film solar cells are prepared by sulfurization of stacked both metallic and sulfide precursors. Sulfurization process was performed in both furnace annealing system and rapid thermal processing system using S powder as well as 5% diluted H2S gas source at various annealing temperatures ranging from $520^{\circ}C$ to $580^{\circ}C$. Structural, optical, microstructural, and electrical properties of absorber layers were characterized using XRD, SEM, TEM, UV-Vis spectroscopy, Hall-measurement, TRPL, etc. The effects of processing parameters, such as composition ratio, sulfurization pressure, and sulfurization temperature on the properties of CZTSS absorber layers will be discussed in detail. CZTSS thin film solar cell fabricated using metallic precursors shows maximum cell efficiency of 6.9% with Jsc of 25.2 mA/cm2, Voc of 469 mV, and fill factor of 59.1% and CZTS thin film solar cell using sulfide precursors shows that of 4.5% with Jsc of 19.8 mA/cm2, Voc of 492 mV, and fill factor of 46.2%. In addition, other research activities in our lab related to the formation of CZTS absorber layers using solution based processes such as electro-deposition, chemical solution deposition, nano-particle formation will be introduced briefly.

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Dye-sensitized solar cells using size dependent SBM binder

  • 박경희;김은미;조홍관;왕교;홍창국;구할본
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.116-116
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    • 2009
  • $TiO_2$ pastes was synthesized to obtained of high efficiency dye-sensitized solar cells using size dependent co-polymer. SBM co-polymer binder is consist of styrene, n-butyl acrylate, and methacrylic acid (SBM) monodisperse co-polymer binder materials and this $TiO_2$ pastes were applied of dye-sensitized solar cells (DSSCs). The photoanodes were characterized by ATR-Fourier Transform spectrometer, X-ray diffraction (XRD) and morphology was investigated by field emission scanning electron microscopy (FE-SEM). The photoelectrochemical properties of the thin films and the performance of DSSCs were measured by photovoltaic-current density, AC impedance and monochromatic incident photon-to-current conversion efficiency (IPCE). DSSC based on the 100nm size co-polymer binder was obtained conversion efficiency of 8.1% under irradiation of AM 1.5(100 $mWcm^2$).

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