• 제목/요약/키워드: Charge Collection Efficiency

검색결과 57건 처리시간 0.027초

Effect of Overlayer Thickness of Hole Transport Material on Photovoltaic Performance in Solid-Sate Dye-Sensitized Solar Cell

  • Kim, Hui-Seon;Lee, Chang-Ryul;Jang, In-Hyuk;Kang, Wee-Kyung;Park, Nam-Gyu
    • Bulletin of the Korean Chemical Society
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    • 제33권2호
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    • pp.670-674
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    • 2012
  • The photovoltaic performance of solid-state dye-sensitized solar cells employing hole transport material (HTM), 2,2',7,7'-tetrakis-(N,N-di-p-methoxyphenyl-amine)-9,9'-spirobifluorene (spiro-MeOTAD), has been investigated in terms of HTM overlayer thickness. Two important parameters, soak time and spin-coating rate, are varied to control the HTM thickness. Decrease in the period of loading the spiro-MeOTAD solution on $TiO_2$ layer (soak time) leads to decrease in the HTM overlayer thickness, whereas decrease in spin-coating rate increases the HTM overlayer thickness. Photocurrent density and fill factor increase with decreasing the overlayer thickness, whereas open-circuit voltage remains almost unchanged. The improved photocurrent density is mainly ascribed to the enhanced charge transport rate, associated with the improved charge collection efficiency. Among the studied HTM overlayer thicknesses, ca. 230 nm-thick HTM overlayer demonstrates best efficiency of 4.5% at AM 1.5G one sun light intensity.

Carbon nanotube/silicon hybrid heterojunctions for photovoltaic devices

  • Castrucci, Paola
    • Advances in nano research
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    • 제2권1호
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    • pp.23-56
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    • 2014
  • The significant growth of the Si photovoltaic industry has been so far limited due to the high cost of the Si photovoltaic system. In this regard, the most expensive factors are the intrinsic cost of silicon material and the Si solar cell fabrication processes. Conventional Si solar cells have p-n junctions inside for an efficient extraction of light-generated charge carriers. However, the p-n junction is normally formed through very expensive processes requiring very high temperature (${\sim}1000^{\circ}C$). Therefore, several systems are currently under study to form heterojunctions at low temperatures. Among them, carbon nanotube (CNT)/Si hybrid solar cells are very promising, with power conversion efficiency up to 15%. In these cells, the p-type Si layer is replaced by a semitransparent CNT film deposited at room temperature on the n-doped Si wafer, thus giving rise to an overall reduction of the total Si thickness and to the fabrication of a device with cheaper methods at low temperatures. In particular, the CNT film coating the Si wafer acts as a conductive electrode for charge carrier collection and establishes a built-in voltage for separating photocarriers. Moreover, due to the CNT film optical semitransparency, most of the incoming light is absorbed in Si; thus the efficiency of the CNT/Si device is in principle comparable to that of a conventional Si one. In this paper an overview of several factors at the basis of this device operation and of the suggested improvements to its architecture is given. In addition, still open physical/technological issues are also addressed.

Co-60 빔에서 액체 전리함의 이온 수집 효율 결정 연구 (Determining Ion Collection Efficiency in a Liquid Ionization Chamber in Co-60 Beam)

  • 최상현;김찬형
    • 한국의학물리학회지:의학물리
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    • 제25권1호
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    • pp.46-52
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    • 2014
  • 액체 전리함은 공동 전리함과 달리 감응매질이 물 등가물질로 이루어져 있어서, 감도가 매우 높아서 충분히 작게 만들 수 있기 때문에 기준 조사면 뿐만 아니라 소조사면의 선량 평가에 유용하다는 장점이 있지만, 이온 재결합 손실 계산에 있어 초기 재결합과 일반 재결합을 모두 고려해야 하므로, 사용상에 어려움이 따른다. 본 연구에서는 연속 빔인 코발트 60 빔에서 PTW사의 microLion 액체 전리함을 이용하여 Greening 이론식과 이선량률법 및 다른 실험을 이용하여 수집효율을 구하고, 비교하는 연구를 수행하였다. 이는 코발트 장비인 Theratron 780과 물팬톰을 이용하여 수행하였으며, 선량률에 따른 microLion 전리함의 전하량을 측정하기 위해 0.6 cc 공동 전리함을 같은 조건에서 동시에 측정하였다. 이때 선량률의 범위는 0.125~0.746 Gy/min이였으며, 각 선량률에서 +400, +600 및 +800 전압에 대하여 액체 전리함을 이용하여 전하량을 측정하였다. 측정된 데이터를 이용하여 세 가지 방법에 따라 계산된 수집효율은 대체로 1% 이내로 일치하였다. 특히 본 연구에서 실험을 통해 구한 수집효율은 가장 낮은 두 선량률을 제외하고는 0.3% 이내로 잘 일치함을 보였다. 이선량률법의 경우 Greening 이론식과 비교하여 대체로 1% 이내의 차이를 보였지만, 두 선량률의 차이가 적을 때 대략 4% 가까운 차이를 보임을 확인하였다. TRS-398 물흡수선량 프로토콜에서 권고하는 표면과 선원간의 거리가 80 cm이고, 깊이 5 cm에서 Greening 이론법과 이선량률법, 본 연구에서 실험을 통해 얻은 방법에 의한 이온 재결합 보정계수는 각각 1.0233, 1.0239, 1.0316으로, 이 조건에서 대략 3%의 이온 재결합에 의한 손실이 발생함을 확인하였다. 본 연구에서 실험을 통해 이온 재결합 손실을 계산하는 방법은 다른 두 선량률에서 액체 전리함의 보정된 전하량을 이용하여 손쉽게 결정할 수 있기 때문에 연속 빔에서 선량 평가 시에 매우 유용하게 사용될 수 있으리라 판단된다.

모멘트 방법을 이용한 전기집진기의 집진 효율 (Collection Efficiency of Electrostatic Precipitator using Moment Method)

  • 정창훈;이규원
    • 한국대기환경학회지
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    • 제18권5호
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    • pp.345-353
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    • 2002
  • A study of polydispersed aerosol dynamics by Electrostatic Precipitator (ESP) was carried out. The log-normal particle size distribution was assumed and moment method was considered. In order to apply moment method in Deutsch-Anderson equation, Cunningham slip correction factor and Cochet's charge equation were simplified for certain range of particle size. The three parameters, which explain the particle size distribution, such as total number concentration, geometric mean diameter, and geometric standard deviation were considered to derive the analytic solution. The obtained solution was compared with available numerical results (Bai et al., 1995). The comparison of the numerical and analytic results showed a good agreement.

광계수형 기반의 X선 영상센서 적용을 위한 광도전체 물성 연구 (A Study on the Physical Characteristics of Photoconductors for Photon Counting based X-ray Sensor Application)

  • 박지군;노시철;최일홍;정봉재;강상식
    • 한국방사선학회논문지
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    • 제8권7호
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    • pp.423-428
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    • 2014
  • 현재까지 TFT 기반의 평판형 어레이를 이용한 디지털 X선 영상장치가 이용되어 왔다. 그러나, 최근 광계수형 센서 기술에 대한 많은 연구가 수행되고 있다. 본 연구에서는 광계수형 X선 영상 센서의 정량적 성능 평가를 위한 기시법 제시를 통해 광도전체 물질의 물성을 평가하였다. 먼저 광계수형 X선 영상 센서의 검출물질인 광도전체의 누설전류 및 X선 민감도 측정을 수행하였으며, 신호 정형 시간 결정을 위한 상승시간 특성을 평가하였다. 또한 광도전체에 입사하는 단위면적당 포톤수를 정의하기 위해 IEC 62220-1-2 권고안을 바탕으로 셋업 연구를 수행하였으며, 이를 바탕으로 전하수집효율를 평가하였다. 그 결과 광도전체 층의 누설전류는 $200pA/mm^2$, X선 민감도는 $7{\mu}C/cm^2R$이며, 상승 시간은 $0.765{\mu}s$으로 평가되었다.

다결정 CdTe 기반의 광계수형 X선 센서 제작 및 특성평가 (The Fabrication and Property Evaluation of Poly-crystalline CdTe based Photon Counting X-ray Sensor)

  • 강상식;박지군
    • 한국방사선학회논문지
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    • 제9권7호
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    • pp.439-443
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    • 2015
  • 종래의 방사선 의료영상 센서는 방사선에 의해 생성된 전하신호를 화소내에서 적분하는 방식이다. 본 연구에서는 저선량에서 우수한 해상력이 가능한 광계수형 영상센서를 개발하기 위해 진공 열증착법을 이용하여 다결정 CdTe(p-CdTe) 필름을 제작하였다. 또한, 광계수형 센서의 성능평가를 위하여 물리적 특성(SEM, XRD) 및 전기적 특성(leakage current, x-ray sensitivity, SNR) 평가를 하였다. 측정 결과, $1V/{\mu}m$ 이하의 인가전압에서 $5nA/cm^2$ 이하의 누설 전류밀도를 보였으며, X선 발생신호량은 $7{\mu}C/cm^2{\cdot}R$으로 광계수형 센서로의 적용에 적합한 것으로 평가되었다. 또한, 신호대잡음비는 동작영역에서 5000 이상의 값을 보였다.

중준위 조사선량율 측정용 전리함의 설계 및 특성 (A Fabrication and Properties of Ionization Chamber Using Madium Exposure Rate)

  • 우홍;김성환;강희동
    • 한국의학물리학회지:의학물리
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    • 제7권2호
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    • pp.29-40
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    • 1996
  • 조사선량율 5mR/h 이상에서 동작하는 원통형 전리함을 설계ㆍ제작하고 상용의 전류계를 이용하여 전하수집 특성을 조사하였다. 전리함은 전체 길이 15.5cm, 직경 5.22cm인 원통형이고 활성체적은 190.4㎤이다. 전리함의 전극은 벽면, 중심축 및 보호전극으로 구성하고, 이들을 동심축상에 배치하여 바탕전류가 8.39$\times$$10^{-14}$ $\pm$1.5$\times$$10^{-15}$ A이 되게 하였다. 전리함에 인가된 전입이 400V일 때 Cs$^{137}$에 대하여 99.7%의 수집효율을 보였으며, 상용의 선량계와 비교한 결과 교정정수 4.531$\times$19$^{7}$ R/C를 구하였다. 에너지 응답특성은 Cs$^{137}$ 을 1로 하였을 때 Am$^{241}$과 Co$^{60}$ 는 각각 1.30, 1.05로 나타났다. 방사선이 전리함의 측면으로 입사할 경우 입사방향에 따른 응답특성의 차이는 무시할 수 있었다.

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Real-time monitoring of ultra-high dose rate electron beams using bremsstrahlung photons

  • Hyun Kim;Dong Hyeok Jeong;Sang Koo Kang;Manwoo Lee;Heuijin Lim;Sang Jin Lee;Kyoung Won Jang
    • Nuclear Engineering and Technology
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    • 제55권9호
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    • pp.3417-3422
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    • 2023
  • Recently, as the clinically positive biological effects of ultra-high dose rate (UHDR) radiation beams have been revealed, interest in flash radiation therapy has increased. Generally, FLASH preclinical experiments are performed using UHDR electron beams generated by linear accelerators. Real-time monitoring of UHDR beams is required to deliver the correct dose to a sample. However, it is difficult to use typical transmission-type ionization chambers for primary beam monitoring because there is no suitable electrometer capable of reading high pulsed currents, and collection efficiency is drastically reduced in pulsed radiation beams with ultra-high doses. In this study, a monitoring method using bremsstrahlung photons generated by irradiation devices and a water phantom was proposed. Charges collected in an ionization chamber located at the back of a water phantom were analyzed using the bremsstrahlung tail on electron depth dose curves obtained using radiochromic films. The dose conversion factor for converting a monitored charge into a delivered dose was determined analytically for the Advanced Markus® chamber and compared with experimentally determined values. It is anticipated that the method proposed in this study can be useful for monitoring sample doses in UHDR electron beam irradiation.

Nanotube-based Dye-sensitized Solar Cells

  • Kim, Jae-Yup;Park, Sun-Ha;Choi, Jung-Woo;Shin, Jun-Young;Sung, Yung-Eun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.71-71
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    • 2011
  • Dye-sensitized solar cells (DSCs) have drawn great academic attention due to their potential as low-cost renewable energy sources. DSCs contain a nanostructured TiO2 photoanode, which is a key-component for high conversion efficiency. Particularly, one-dimensional (1-D) nanostructured photoanodes can enhance the electron transport for the efficient collection to the conducting substrate in competition with the recombination processes. This is because photoelectron colletion is determined by trapping/detrapping events along the site of the electron traps (defects, surface states, grain boundaries, and self-trapping). Therefore, 1-D nanostructured photoanodes are advantageous for the fast electron transport due to their desirable features of greatly reduced intercrystalline contacts with specified directionality. In particular, anodic TiO2 nanotube (NT) electrodes recently have been intensively explored owing to their ideal structure for application in DSCs. Besides the enhanced electron transport properties resulted from the 1-D structure, highly ordered and vertically oriented nanostructure of anodic TiO2 NT can contribute additional merits, such as enhanced electrolyte diffusion, better interfacial contact with viscous electrolytes. First, to confirm the advantages of 1-D nanostructured material for the photoelectron collection, we compared the electron transport and charge recombination characteristics between nanoparticle (NP)- and nanorod (NR)-based photoanodes in DSCs by the stepped light-induced transient measurements of photocurrent and voltage (SLIM-PCV). We confirmed that the electron lifetime of the NR-based photoanode was much longer than that of the NP-based photoanode. In addition, highly ordered and vertically oriented TiO2 NT photoanodes were prepared by electrochemical anodization method. We compared the photovoltaic properties of DSCs utilizing TiO2 NT photoanodes prepared by one-step anodization and two-step anodization. And, to reduce the charge recombination rate, energy barrier layer (ZnO, Al2O3)-coated TiO2 NTs also applied in DSC. Furthermore, we applied the TiO2 NT photoanode in DSCs using a viscous electrolyte, i.e., cobalt bipyridyl redox electrolyte, and confirmed that the pore structure of NT array can enhance the performances of this viscous electrolyte.

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Mo 패턴을 이용한 3-D 구조의 Cu2ZnSn (SxSe1-x)4 (CZTSSe) 박막형 태양전지 제작 (3-D Structured Cu2ZnSn (SxSe1-x)4 (CZTSSe) Thin Film Solar Cells by Mo Pattern using Photolithography)

  • 조은진;강명길;신형호;윤재호;문종하;김진혁
    • Current Photovoltaic Research
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    • 제5권1호
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    • pp.20-24
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    • 2017
  • Recently, three-dimensional (3D) light harvesting structures are highly attracted because of their high light harvesting capacity and charge collection efficiencies. In this study, we have fabricated $Cu_2ZnSn(S_xSe_{1-x})_4$ based 3D thin film solar cells on PR patterned Molybdenum (Mo) substrates using photolithography technique. Specifically, Mo patterns were deposited on PR patterned Mo substrates by sputtering and the thin Cu-Zn-Sn stacked layer was deposited over this Mo patterns by sputtering technique. The stacked Zn-Sn-Cu precursor thin films were sulfo-selenized to form CZTSSe pattern. Finally, CZTSSe absorbers were coated with thin CdS layer using chemical bath deposition and ZnO window layer was deposited over CZTSSe/CdS using DC sputtering technique. Fabricated 3-D solar cells were characterized by X-ray diffraction (XRD), X-ray fluorescence (XRF) analysis, Field-emission scanning electron microscopy (FE-SEM) to study their structural, compositional and morphological properties, respectively. The 3% efficiency is achieved for this kind of solar cell. Further efforts will be carried out to improve the performance of solar cell through various optimizations.