• 제목/요약/키워드: Spin-coated film

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P3HT:PCBM 활성층을 갖는 유기 박막태양전지의 후속 열처리 효과 (The Post Annealing Effect of Organic Thin Film Solar Cells with P3HT:PCBM Active Layer)

  • 장성규;공수철;장호정
    • 마이크로전자및패키징학회지
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    • 제17권2호
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    • pp.63-67
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    • 2010
  • 본 연구에서는 P3HT와 PCBM 물질을 전자도너와 억셉터 광활성층 물질로 사용하여 벌크이종접합 구조를 갖는 Glass/ITO/PEDOT:PSS/P3HT-PCBM/Al 구조의 유기박막태양전지를 제작하였다. P3HT와 PCBM은 각각 0.5 wt%의 농도로 톨루엔 용액에 용해하였다. 광활성층 농도를 최적화하기 위하여 P3HT:PCBM= 3:4, 4:4, 4:3 wt%의 농도비로 소자를 제작하고, 농도비에 따른 전기적 특성을 조사하였다. 또한 활성층의 후속열처리 온도가 소자의 전기적 특성에 미치는 영향을 조사하였다. P3HT와 PCBM의 농도비가 4:4 wt%의 비율에서 가장 우수한 전기적 특성을 나타내었으며, 이때 단락전류밀도 ($J_{SC}$), 개방전압 ($V_{OC}$), 및 충실인자 (FF)는 4.7 $mA/cm^2$, 0.48 V 및 43.1%를 각각 나타내었다. 또한 전력변환효율(PCE)은 0.97%의 값을 얻었다. 최적화된 농도비를 갖는 태양전지 소자에 대해 $150^{\circ}C$에서 5분, 10분, 15분, 20분간 후속 열처리를 실시한 결과 P3HT 전자도너의 흡광계수가 증가하는 경향을 보였다. 후속 열처리 조건이 $150^{\circ}C$에서 15분인 경우 전기적 특성이 열처리 하지 않은 소자에 비해 특성이 개선되었다. 즉, 이때의 전기적 특성은 $J_{SC},\;V_{OC}$, FF, PCE의 값이 각각 7.8 $mA/cm^2$, 0.55 V, 47%, 2.0%를 나타내었다.

Chemistry of mist deposition of organic polymer PEDOT:PSS on crystalline Si

  • Shirai, Hajime;Ohki, Tatsuya;Liu, Qiming;Ichikawa, Koki
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.388-388
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    • 2016
  • Chemical mist deposition (CMD) of poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) was investigated with cavitation frequency f, solvent, flow rate of nitrogen, substrate temperature $T_s$, and substrate dc bias $V_s$ as variables for efficient PEDOT:PSS/crystalline (c-)Si heterojunction solar cells (Fig. 1). The high-speed camera and differential mobility analysis characterizations revealed that average size and flux of PEDOT:PSS mist depend on f, solvent, and $V_s$. The size distribution of mist particles including EG/DI water cosolvent is also shown at three different $V_s$ of 0, 1.5, and 5 kV for a f of 3 MHz (Fig. 2). The size distribution of EG/DI water mist without PEDOT:PSS is also shown at the bottom. A peak maximum shifted from 300-350 to 20-30 nm with a narrow band width of ~150 nm for PEDOT:PSS solution, whose maximum number density increased significantly up to 8000/cc with increasing $V_s$. On the other hand, for EG/water cosolvent mist alone, the peak maximum was observed at a 72.3 nm with a number density of ~700/cc and a band width of ~160 nm and it decreased markedly with increasing $V_s$. These findings were not observed for PEDOT:PSS/EG/DI water mist. In addition, the Mie scattering image of PEDOT:PSS mist under white bias light was not observed at $V_s$ above 5 kV, because the average size of mist became smaller. These results imply that most of solvent is solvated in PEDOT:PSS molecule and/or solvent is vaporized. Thus, higher f and $V_s$ generate preferentially fine mist particle with a narrower band width. Film deposition occurred when $V_s$ was impressed on positive to a c-Si substrate at a Ts of $30-40^{\circ}C$, whereas no deposition of films occurred on negative, implying that negatively charged mist mainly provide the film deposition. The uniform deposition of PEDOT:PSS films occurred on textured c-Si(100) substrate by adjusting $T_s$ and $V_s$. The adhesion of CMD PEDOT:PSS to c-Si enhanced by $V_s$ conspicuously compared to that of spin-coated film. The CMD PEDOT:PSS/c-Si solar cell devices on textured c-Si(100) exhibited a ${\eta}$ of 11.0% with the better uniformity of the solar cell parameters. Furthermore, ${\eta}$ increased to 12.5% with a $J_{sc}$ of $35.6mA/cm^2$, a $V_{oc}$ of 0.53 V, and a FF of 0.67 with an antireflection (AR) coating layer of 20-nm-thick CMD molybdenum oxide $MoO_x$ (n= 2.1) using negatively charged mist of 0.1 wt% 12 Molybdo (VI) phosphoric acid n-Hydrate) $H_3(PMo_{12}O_40){\cdot}nH_2O$ in methanol. CMD. These findings suggest that the CMD with negatively charged mist has a great potential for the uniform deposition of organic and inorganic on textured c-Si substrate by adjusting $T_s$ and $V_s$.

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