• Title/Summary/Keyword: P3HT:PCBM

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Thin Film Morphology Control of P3HT:PCBM Organic Solar Cells Using Electrospray Deposition Process

  • Hwang, Won-Tae;Choe, Su-Jeong;Chae, Hui-Yeop
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.432-433
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    • 2012
  • Polymer solar cells are fabricated using electrospray (e-spray) deposition process. It shows comparable performance with reference devices, and has different characteristics according to the thickness of the active layer: In the case of the devices with higher fill factor, it shows relatively lower current density, and vice versa. These films are characterized by atomic force microscopy measurement. The results indicate that the comparable power conversion efficiency made by e-spray results from the 'solvent annealing effect' by process conditions and the different thin film property is caused by the degree of self-organization of the polymer.

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Structural and Electrical Properties of Aluminum Doped ZnO Electrodes Prepared by Atomic Layer Deposition for Application in Organic Solar Cells (유기태양전지 응용을 위한 원자층 증착 방식 제작의 알루미늄이 도핑 된 ZnO의 전기적, 구조적 특징)

  • Seo, Injun;Ryu, Sang Ouk
    • Journal of the Semiconductor & Display Technology
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    • v.13 no.2
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    • pp.1-5
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    • 2014
  • Transparent and conducting aluminum-doped ZnO electrodes were fabricated by atomic layer deposition methods. The electrode showed the lowest resistivity of $5.73{\times}10^{-4}{\Omega}cm$ at a 2.5% cyclic layer deposition ratio of Trimethyl-aluminum and Diethyl-zinc chemicals. The electrodes showed minimum resistivity when deposited at a temperature of $225^{\circ}C$. The electrode also showed optical transmittance of about 92% at 300 nm. An organic solar cell made with a 300-nm-thick aluminum-doped ZnO electrode exhibited 2.0% power conversion efficiency.

Thickness Dependence of Electrical and Optical Properties of ITZO (In-Sn-Zn-O) Thin Films (ITZO (In-Sn-Zn-O) 박막의 전기적 및 광학적 특성의 두께 의존성)

  • Kang, Seong-Jun;Joung, Yang-Hee
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.7
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    • pp.1285-1290
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    • 2017
  • We prepared ITZO thin films with various thicknesses on glass substrates using RF magnetron sputtering and investigated electrical, optical and structural properties of the thin film. Sheet resistance of ITZO thin film showed a decreasing trend on the increase of film thickness, but its resistivity exhibited a substantially constant value of $5.06{\pm}1.23{\times}10^{-4}{\Omega}-cm$. Transmittance of ITZO thin film moved to the long-wavelength with the increase of film thickness. Figure of merit in a visible light and an absorption area of P3HT:PCBM organic active layer of the 360nm-thick IZTO thin film was $8.21{\times}10^{-3}{\Omega}^{-1}$ and $9.29{\times}10^{-3}{\Omega}^{-1}$, respectively. Through XRD and AFM measurements, it was confirmed that all the ITZO thin films have amorphous structure and the surface roughness of films are very smooth in the range of 0.561 to 0.263 nm. In this study, it was found that amorphous ITZO thin film is a very promising material for organic solar cell.

Replacement of ITO for efficient organic polymer solar cells (ITO를 대체한 고효율 유기박막 태양전지)

  • Kim, Jae Ryoung;Park, Jin Uk;Lee, Bohyun;Lee, Pyo;Lee, Jong-Cheol;Moon, Sang-Jin
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.69.1-69.1
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    • 2010
  • We have fabricated organic photovoltaic cells (OPVs) with highly conductive poly 3,4-ethylenedioxythiophene : poly styrenesulfonate (PEDOT:PSS) layer as an anode without using transparent conducting oxide (TCO), which has been modified by adding some organic solvents like sorbitol (So), dimethyl sulfoxide (DMSO), N-methyl-pyrrolidone (NMP), dimethylformamide (DMF), and ethylene glycol (EG). The conductivity of PEDOT:PSS film modified with each additive was enhanced by three orders of magnitude. According to atomic force microscopy (AFM) study, conductivity enhancement might be related to better connections between the conducting PEDOT chains. TCO-free solar cells with modified PEDOT:PSS layer and the active layer composed of poly(3-hexylthiophene) (P3HT) and phenyl [6,6] C61 butyric acid methyl ester (PCBM) exhibited a comparable device performance to indium tin oxide (ITO) based organic solar cells. The power conversion efficiency (PCE) of the organic solar cells incorporating DMSO, So + DMSO and EG modified PEDOT:PSS layer reached 3.51, 3.64 and 3.77%, respectively, under illumination of AM 1.5 (100mW/$cm^2$).

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RF 혼용 DC 스퍼터링 공정으로 증착된 ITO 박막 특성 및 유기태양전지 응용 연구

  • Im, Gyeong-A;Jeong, Seong-Hun;Gang, Jae-Uk;Kim, Jong-Guk;Kim, Do-Geun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.389-389
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    • 2011
  • Transparent conductive oxide (TCO) 박막은 디스플레이 및 태양전지 등 광범위한 분야에서 적용되고 있으며, 특히 indium tin oxide (ITO)는 낮은 전기적 저항과 우수한 광투과도를 가지고 있어서 이미 많은 분야에 적용되고 있다. 본 연구는 RF와 DC를 혼용한 마그네트론 스퍼터링 공정을 활용하여 ITO 박막 특성 및 이를 활용한 유기태양전지 적용에 관한 것이다. UV-O3 처리된 glass 기판위에 thermal evaporation 방식으로 밀착력을 높이기 위하여 Cr을 5 nm 두께로 증착한 후 Al을 95 nm 증착하였다. 그 위에 스퍼터링 공정으로 ITO 박막을 In2O3:SnO2 target (10wt% SnO2)을 사용하여 1.0 mTorr의 공정압력(Ar:O2=30:1), 50W의 RF power 및 0.11kW의 DC power에서 50~250 nm의 두께로 증착하였다. ITO 박막의 결정구조 및 표면 형상은 x-ray diffraction (XRD) 및 scanning electron microscope (SEM)을 사용하여 분석하였으며, 전기적 특성은 four-point probe법으로 비저항값을 측정하였다. 또한 높은 광변환효율을 가지는 태양전지 제작을 위하여, 다양한 두께의 ITO 박막을 사용하여 ITO/ZnO/P3HT:PCBM/PEDOT/Ag 구조의 유기태양전지를 제작하여 소자 특성을 최적화 하였다.

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Investigation of the Effects of ZnO Thin Film Deposition Methods on Inverted Polymer Solar Cells (다양한 박막 형성법을 사용한 ZnO 전자 추출층이 역구조 고분자 태양전지에 미치는 영향 연구)

  • Lee, Donggu;Noh, Seunguk;Sung, Myungmo;Lee, Changhee
    • Current Photovoltaic Research
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    • v.1 no.1
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    • pp.59-62
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    • 2013
  • We investigated the effects of ZnO thin film deposition methods on the performance of inverted polymer solar cells with a structure of ITO/ZnO/P3HT:PCBM/MoO3/Al. The ZnO thin films were deposited by various methods (spin coating of nanoparticles, sol-gel process, atomic layer deposition) and their morphology was analyzed by atomic force microscopy (AFM). The device with ZnO nanoparticle thin films showed the highest power conversion efficiency of 3 % with low series resistance and high shunt resistance. The superior performance of the device with the ZnO nanoparticle layer is attributed to better electron extraction capability.

Organic Solar Cells with CuO Nanoparticles Mixed PEDOT:PSS Buffer Layer (산화구리 나노입자를 혼합한 PEDOT:PSS 박막을 이용한 유기 태양전지)

  • Oh, Sang Hoon;Heo, Seung Jin;Kim, Hyun Jae
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.27 no.2
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    • pp.121-125
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    • 2014
  • In this research, nanocomposite layers consisting of poly (3,4,-ethylene dioxythiophene):polystyrene sulfonic acid (PEDOT:PSS) and CuO nanoparticles were investigated as hole transport layers in organic solar cells based on poly (3-hexylthiophene) (P3HT) as the electron donor and (6.6) phenyl-C61-butyric acid methyl ester (PCBM) as the electron acceptor. The addition of CuO nanoparticles to PEDOT:PSS layer improved the solar cell performance with 0.5% CuO nanoparticle concentration. At optimized concentration, CuO mixed PEDOT:PSS films had good electrical ($4.131{\Omega}{\cdot}cm$) and optical (transmittance > 90%) properties for using hole transporting layer. We investigated that improved solar cell performance with CuO nanoparticles mixed PEDOT:PSS films.

임피던스 분석을 통한 유기태양전지의 bending에 따른 성능변화

  • Yu, Se-Gi
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.258.1-258.1
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    • 2015
  • ITO가 코팅된 PET 기판 위에 P3HT:PCBM으로 이루어진 bulk heterojunction 유기 태양전지 소자를 만들었다. 이렇게 만들어진 유기 태양전지의 flexibility 특성을 측정하기 위해서, 태양전지 소자를 반지름이 다른 원통에 감아서 휘어지게 한 후 AM 1.5의 조명 하에서 전류-전압 특성을 관측하고 소자의 임피던스 분석도 측정하였다. 이때 flexibility 특성 측정의 일관성을 위하여, 단 하나의 유기 태양전지 소자를 만들고, 이 소자를 반지름이 큰 원통에서 부터 휘게 하고난 후 소자의 특성을 측정하고, 점차 작은 원통으로 바꾸어 가면서 측정을 진행하였다. 임피던스 분석 실험 자료로부터 shifted two semicircles이라는 equivalent circuit model를 분석하고 난 후, 이 회로를 구성하는 구성 성분-R(s), R(low f), R(hi f), C(low f), C(hi f)-값의 변화를 원통의 반지름의 변화에 따라 분석하였다. 반지름이 0.75cm일 때, power conversion efficiency (PCE) 값은 초기값에 비해 약 1/3로 줄었고, 반지름이 0.5cm일 때는 약 10%로 줄어 들었다. 나머지 1~2 cm일 때는 거의 변화가 나타나지 않았다. 휘어짐에 따른 이러한 태양전지의 특성의 변화를 임피던스 분석의 Cole-Cole plot의 저 주파수 영역의 반원의 반지름에 가장 큰 영향을 받음을 확인하였고, 저항과 capacitance 값의 변화에 따른 특성에 대해 이번 발표에서 더 자세히 설명할 예정이다.

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Fabrication of ITO-Free organic photovoltaic cells by ink-jet printing (잉크젯 기법을 이용한 ITO-Free 유기태양전지 제작)

  • Lee, Ue-Jin;Yoon, Jong-Jin;Kim, Seung-Taek;Cho, Young-June;Lee, Sang-Ho
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1714-1715
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    • 2011
  • In this work, highly conductive organic solvent-based polyaniline(PANI) was used as an anode in organic photovoltaic cells (OPV) based on poly - (3-hexylthiophene) and [6,6] - phenyl - C60 - butyricacid methyl ester (P3HT : PCBM). The transmittance of the used PANI film were 87.67% and 86.57% at 550nm, and its sheet resistance were 454 ${\Omega}/{\Box}$ and 298 ${\Omega}/{\Box}$. We fabricated ITO-free OPV cells using PANI as an anode, which exhibited an external power conversion efficiency of 2.28% with a result of Jsc of 6.922mA/cm2, Voc of 0.6093V, and FF of 54.10% under an illumination of air mass(AM) 1.5G (100mW/$cm^2$). We used ink-jet printing to deposit buffer layer and active layer on a glass substrate.

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Characterization of Plasma with Heating Treatment of ITO on the Efficiency of Polymer Solar Cells

  • Kim, Jung-Woo;Kim, Nam-Hun;Kim, Hyoung-Sub;Jung, Dong-Geun;Chae, Hee-Yeop
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.301-301
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    • 2010
  • In order to enhance the efficiency of the organic solar cells, the effects of plasma surface treatment with using $CF_4$ and $O_2$ gas on the anode ITO were studied. The polymer solar cell devices were fabricated on ITO glasses an active layer of P3HT (poly-3-hexylthiophene) and PCBM ([6,6]-phenyl C61-butyric acid methyl ester) mixture, without anode buffer layer, such as PEDOT:PSS layer. The metallic electrode was formed by thermally evaporated Al. Before the coating of organic layers, ITO surface was exposed to plasma made of $CF_4$ and $O_2$ gas, with/without heat treatment. In order to identify the effect the surface treatment, the current density and voltage characteristics were measured by solar simulator and the chemical composition of plasma treated ITO surface was analyzed by using X-ray photoelectron spectroscopy(XPS). In addition, the work function of the plasma treated ITO surface was measured by using ultraviolet photoelectron spectroscopy(UPS). The effects of plasma surface treatment can be attributed to the removal organic contaminants of the ITO surface, to the improvement of contact between ITO and buffer layer, and to the increase of work function of the ITO.

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