• Title/Summary/Keyword: anti-reflective

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Performance Parameters of a Bifacial PV Device and Accurate Measurement Method for the Parameters (양면형 태양광발전 소자의 성능변수 및 이에 대한 정확한 측정방법)

  • Ahn, Seungkyu;Ahn, SeJin;Eo, Young Joo;Yoo, Jinsu;Park, Joo Hyung;Kim, Kihwan;Cho, Ara;Cho, Jun-Sik;Yun, Jae-Ho;Shin, Donghyup;Jung, Inyoung;Gwak, Jihye
    • Current Photovoltaic Research
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    • v.5 no.3
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    • pp.89-94
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    • 2017
  • We have examined the issues on the measurement of bifacial photovoltaic(PV) devices that should be considered in order to ensure a measurement accuracy beyond a certain level and the comparability between the bifacial PV devices. Based on the results of various experiments and previous studies, solutions for these measurement issues are suggested. The most significant technical issues in the performance measurement of the bifacial PV devices are 1) elimination of the effect due to the light reflection on the sample holder surface and 2) the measurement of the expected power generation gain in outdoor operation. The effect due to the light reflection on the sample holder surface can be eliminated by using an anti-reflective sample holder. In case of a reflective sample holder, if the bifacial device have a linear characteristic with respect to the irradiance of incident light, it has been confirmed (through some previous studies and additional experiment) that exact measurement results can be obtained by the correction of the measurement data. In addition, it was also confirmed that the expected power generation gain in the outdoor operation can be obtained by three different methods along with the basic concepts of the bifaciality coefficient, the albedo, and the effective front irradiance.

Viscoelastic Finite Element Analysis of Filling Process on the Moth-Eye Pattern (모스아이 패턴의 충전공정에 대한 점탄성 유한요소해석)

  • Kim, Kug Weon;Lee, Ki Yeon;Kim, Nam Woong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.4
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    • pp.1838-1843
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    • 2014
  • Nanoimprint lithography (NIL) fabrication process is regarded as the main alternative to existing expensive photo-lithography in areas such as micro- and nano-electronics including optical components and sensors, as well as the solar cell and display device industries. Functional patterns, including anti-reflective moth-eye pattern, photonic crystal pattern, fabricated by NIL can improve the overall efficiency of such devices. To successfully imprint a nano-sized pattern, the process conditions such as temperature, pressure, and time should be appropriately selected. In this paper, a cavity-filling process of the moth-eye pattern during the thermal-NIL within the temperature range, where the polymer resist shows the viscoelastic behaviors with consideration of stress relaxation effect of the polymer, were investigated with three-dimensional finite element analysis. The effects of initial thickness of polymer resist and imprinting pressure on cavity-filling process has been discussed. From the analysis results it was found that the cavity filling can be completed within 100 s, under the pressure of more than 4 MPa.

Image Tracking Interference Minimize of Electro Optical Tracking System by MgF2 Nano Structure Antireflective Coating Films (MgF2 나노구조 반사방지막을 통한 함정용 전자광학추적장비 영상추적간섭 최소화)

  • Shim, Bo-Hyun;Jo, Hee-Jin
    • Journal of the Institute of Electronics and Information Engineers
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    • v.52 no.5
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    • pp.206-213
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    • 2015
  • An omni-directional, graded-index and textured ZnO nanorods with $MgF_2$ anti-reflective(AR) coating films for the electro optical tracking system(EOTS) by e-beam evaporation method are presented. we achieved that the graded index structure can minimize image tracking interference of EOTS which is comparable to a general AR coating films. Optimized ZnO nanorods with $MgF_2$ AR coating films lead to decreasing Fresnel reflection by gradient refractive index. According to our experiment results, ZnO nanorods with $MgF_2$ AR coating films can be used for various electro optical system to improve the optical performance.

PECVD를 통해 향상된 SiN/SiO2/ITO 다층박막의 무반사 효과에 대한 연구

  • Choe, Min-Jun;Gwon, Se-Ra;Song, Ae-Ran;Jeong, Gwon-Beom;An, Gyeong-Jun;Baek, Ju-Yeol;Kim, Bu-Gyeong;Jang, Hyeok-Gyu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.274-274
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    • 2016
  • 터치스크린패널로 응용하기 위하여 80%이상의 높은 투과도와 낮은 저항이 요구된다. 그 중에서도 무반사 효과 (anti-reflective, AR) 를 크게하여 투과도를 향상시키는 방법으로 나노구조물, 증착시 경사각, 다층박막 방법 등이 연구 개발되고 있다. 단일 박막을 이용하여 무반사 코팅을 하는 경우, 정밀한 굴절률 조절이 어려우며 낮은 반사율 영역의 선폭이 좁은 단점이 있다. 반면, 저/고굴절률 다층박막의 경우 비교적 굴절률 조절이 용이하고 가시광영역 전반적으로 높은 투과도를 가질 수 있다. plasma enhanced chemical vapor deposition (PECVD) 증착법을 이용하여 무반사 효과를 증대시키기 위해 저/고굴절률 다층구조의 박막을 두께조합에 따라 평가하였으며, 가장 널리 사용되고 있는 Sputtering증착법과 비교하여 연구하였다. 제작된 다층박막의 구조는 glass(sub.)/SiN/SiO2/ITO 이며, 무반사 코팅층인 SiN/SiO2층은 각각 PECVD와 Sputtering 증착법을 통해 성장되었고, ITO는 스퍼터링 증착법을 이용하여 동일하게 성장하였다. 그 결과 PECVD 증착법이 Sputtering 증착법에 비하여 가시광영역(400~800nm)에서 더 높은 투과도를 얻게 되었다. 결과의 차이에 대해서 PECVD 증착법과 Sputtering 증착법으로 성장된 SiN, SiO2 박막의 광학적 특성과 물리적 특성의 변화를 spectroscopic ellipsometry (SE), Rutherford backscattering (RBS), atomic force microscopy (AFM) 을 이용하여 비교, 분석하였다.

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The Reflection Color Light with the Structure of an Antireflection Lenses (렌즈 무반사막 구조에 의한 반사색광의 특성 연구)

  • Kim, Yong-Geun
    • Journal of Korean Ophthalmic Optics Society
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    • v.1 no.1
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    • pp.93-102
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    • 1996
  • The optical system of lens must be designed to tramsmit light over wide wavelength range and to have lower reflectivity in order to obtain higher spectral transmittance. However, the reflection color light appears due to the remain-reflection light in any optical system of lens. The wavelength of the reflection color light can be controlled by the structure of the number of layers, thickness of layer, reflective index, wavelength of incidence, and substrate etc. In the optical systems of the single layer and the double layers, the reflection color light appears in the condition of the anti-reflection of ${\lambda}s/{\lambda}$ = 1.0 by the color mixture of the remain-reflection lights in the ranges of the longer wavelength side and the shorter one of the ${\lambda}s/{\lambda}$ = 1.0, and of the double layers and triple layers, the reflection color light positioned at P1 < ${\lambda}s/{\lambda}$ < P2 appears in the condition of the antireflection of ${\lambda}s/{\lambda}$ = $PI{\ll}1$ and $P2{\gg}1$. In the optical system of the multi-layers, many antireflection points are existed at the various s/ values, and the reflection color light by the color mixture of the remain-reflection lights in the ranges except for the antireflection points.

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High-Efficiency a-Si:H Solar Cell Using In-Situ Plasma Treatment

  • Han, Seung Hee;Moon, Sun-Woo;Kim, Kyunghun;Kim, Sung Min;Jang, Jinhyeok;Lee, Seungmin;Kim, Jungsu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.230-230
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    • 2013
  • In amorphous or microcrystalline thin-film silicon solar cells, p-i-n structure is used instead of p/n junction structure as in wafer-based Si solar cells. Hence, these p-i-n structured solar cells inevitably consist of many interfaces and the cell efficiency critically depends on the effective control of these interfaces. In this study, in-situ plasma treatment process of the interfaces was developed to improve the efficiency of a-Si:H solar cell. The p-i-n cell was deposited using a single-chamber VHF-PECVD system, which was driven by a pulsed-RF generator at 80 MHz. In order to solve the cross-contamination problem of p-i layer, high RF power was applied without supplying SiH4 gas after p-layer deposition, which effectively cleaned B contamination inside chamber wall from p-layer deposition. In addition to the p-i interface control, various interface control techniques such as thin layer of TiO2 deposition to prevent H2 plasma reduction of FTO layer, multiple applications of thin i-layer deposition and H2 plasma treatment, H2 plasma treatment of i-layer prior to n-layer deposition, etc. were developed. In order to reduce the reflection at the air-glass interface, anti-reflective SiO2 coating was also adopted. The initial solar cell efficiency over 11% could be achieved for test cell area of 0.2 $cm^2$.

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Conversion Efficiency Enhancement of a-Si:H Thin-Film Solar Cell Using Periodic Patterned Substrate (주기적인 패턴 유리 기판을 사용한 비정질 실리콘 박막 태양전지의 효율 향상에 관한 연구)

  • Son, C.H.;Kim, K.M.;Kim, J.H.;Hong, J.;Kwon, G.C.
    • Journal of the Korean Vacuum Society
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    • v.21 no.1
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    • pp.55-61
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    • 2012
  • We fabricated a-Si:H thin-film solar cell using the two-dimensional (2D) periodic patterned glass substrate. The use of a 3D periodic texture rather than a randomly texture at surface of TCO can result in higher short circuit current densities ($J_{sc}$). In order to analyze the optical effect of patterning glasses, ray-tracing simulations were performed. Also, p-i-n cells were deposited on patterned glasses as substrate by PECVD. UV-Vis spectroscopy, light I-V measurement were carried out for the optoelectronic characterization. The anti-reflective and light-trapping performance of patterning glass substrate was investigated by a comparison of experimental results with numerical simulations.

Beam Profile Analysis of DFB Laser for High Speed Communications (고속 통신용 DFB 레이저의 빔 분포 해석)

  • Kwon, Keeyoung
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.3
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    • pp.419-425
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    • 2020
  • In this paper, when a refractive index grating and a gain grating are simultaneously present in a DFB (Distributed Feedback) laser for a 1.55 um wavelength with two mirror surfaces without an anti-reflective coating, an analysis program was developed to determine the beam distribution of the oscillation mode in the longitudinal direction. As the phases of the index and gain gratings on the mirror faces are varied, the lasing gain and the beam profiles |R(z)| and |S(z)| of the lasing mode with the emitted power ratio Pl/Pr are analyzed and examined in case of δL<0. In order to reduce the threshold current of a oscillation mode and enhance the frequency stability, κL should be greater than 8, regardless of the grating phase values at the mirror surface.

표면변형에 따른 실리콘 태양전지의 전력변환효율 변화

  • Lee, Se-Won;O, Si-Deok;Sin, Hyeon-Uk;Jeong, Je-Myeong;Kim, Tae-Hwan;Sin, Jae-Cheol;Kim, Hyo-Jin
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.387-387
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    • 2012
  • 결정 Si 및 비정질 Si 태양전지는 환경친화적이며 안정적인 물질로 전력변환 및 에너지 저장 장치에 중요하기 때문에 연구가 활발하게 진행되고 있다. 고효율 Si 태양전지를 제작하여 상용화하기에는 여러 가지 문제점이 있다. 공기와 비교하여 높은 굴절률을 갖고 있기 때문에 발생하는 반사를 줄이기 위해서 필요한 무반사 코팅층(Anti-reflective coating; ARC)은 주로 SiO2 와 SiNx 와 같은 유전체를 이용하여 사용하지만 이들 ARC 증착은 PECVD와 같은 진공장비를 사용하므로 제작 비용이 높아지는 단점이 있다. 나노선 또는 나노 팁과 같은 sub-wavelength 구조를 표면에 만들어 반사율을 줄이는 작업을 통해 ARC 공정비용을 감소하고 효율을 증진하는 연구가 활발히 진행되고 있다. CdS 양자점을 태양전지 표면에 형성함으로 ARC로 해결할 수 없는 단파장영역에 해당하는 부분을 줄이는 연구가 진행되었으며, 비정질의 경우 원기둥 형태의 태양전지 형태와 더불어 지름 방향으로의 PN 접합 나노로드 배열을 만들어 흡수면을 증가하여 효율을 증가한 연구도 진행되었다. 태양전지 표면의 형태를 V-groove 형태로 형성하여 입사하는 태양전지의 광밀도를 증가하는 이론적 결과도 발표되었다. 본 연구에서는 Si 태양전지의 표면변형에 따른 태양전지의 전력변환효율의 변화를 관찰하기 위하여 태양전지 표면의 texture 지름을 $3{\sim}15{\mu}m$, 간격을 $5{\sim}20{\mu}m$로 변화하고, 태양전지 표면의 나노 패턴을 2~10 nm 로 변화하여 반사율과 전력변환효율을 비교하였다. 나노와 마이크로 패턴은 각각 polystyrene nanosphere 와 photo mask를 이용하여 제작하였으며 PN junction Si 태양전지는 spin on dopant 방식으로 제작하여 성능을 조사하였다.

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Interfacial Layer Control in DSSC

  • Lee, Wan-In
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.75-75
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    • 2011
  • Recently, dye-sensitized solar cell (DSSC) attracts great attention as a promising alternative to conventional silicon solar cells. One of the key components for the DSSC would be the nanocrystalline TiO2 electrode, and the control of interface between TiO2 and TCO is a highly important issue in improving the photovoltaic conversion efficiency. In this work, we applied various interfacial layers, and analyzed their effect in enhancing photovoltaic properties. In overall, introduction of interfacial layers increased both the Voc and Jsc, since the back-reaction of electrons from TCO to electrolyte could be blocked. First, several metal oxides with different band gaps and positions were employed as interfacial layer. SnO2, TiO2, and ZrO2 nanoparticles in the size of 3-5 nm have been synthesized. Among them, the interfacial layer of SnO2, which has lower flat-band potential than that of TiO2, exhibited the best performance in increasing the photovoltaic efficiency of DSSC. Second, long-range ordered cubic mesoporous TiO2 films, prepared by using triblock copolymer-templated sol-gel method via evaporation-induced self-assembly (EISA) process, were utilized as an interfacial layer. Mesoporous TiO2 films seem to be one of the best interfacial layers, due to their additional effect, improving the adhesion to TCO and showing an anti-reflective effect. Third, we handled the issues related to the optimum thickness of interfacial layers. It was also found that in fabricating DSSC at low temperature, the role of interfacial layer turned out to be a lot more important. The self-assembled interfacial layer fabricated at room temperature leads to the efficient transport of photo-injected electrons from TiO2 to TCO, as well as blocking the back-reaction from TCO to I3-. As a result, fill factor (FF) was remarkably increased, as well as increase in Voc and Jsc.

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