• 제목/요약/키워드: optoelectronic materials

검색결과 281건 처리시간 0.022초

Design and evaluation of an innovative LWR fuel combined dual-cooled annular geometry and SiC cladding materials

  • Deng, Yangbin;Liu, Minghao;Qiu, Bowen;Yin, Yuan;Gong, Xing;Huang, Xi;Pang, Bo;Li, Yongchun
    • Nuclear Engineering and Technology
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    • 제53권1호
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    • pp.178-187
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    • 2021
  • Dual-cooled annular fuel allows a significant increase in power density while maintaining or improving safety margins. However, the dual-cooled design brings much higher Zircaloy charge in reactor core, which could cause a great threaten of hydrogen explosion during severe accidents. Hence, an innovative fuel combined dual-cooled annular geometry and SiC cladding was proposed for the first time in this study. Capabilities of fuel design and behavior simulation were developed for this new fuel by the upgrade of FROBA-ANNULAR code. Considering characteristics of both SiC cladding and dual-cooled annular geometry, the basic fuel design was proposed and preliminary proved to be feasible. After that, a design optimization study was conducted, and the optimal values of as-fabricated plenum pressure and gas gap sizes were obtained. Finally, the performance simulation of the new fuel was carried out with the full consideration of realistic operation conditions. Results indicate that in addition to possessing advantages of both dual-cooled annular fuel and accident tolerant cladding at the same time, this innovative fuel could overcome the brittle failure issue of SiC induced by pellet-cladding interaction.

Two-dimensional heterostructures for All-2D Electronics

  • 이관형
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.100-100
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    • 2016
  • Among various two-dimensional (2D) materials, 2D semiconductors and insulators have attracted a great deal of interest from nanoscience community beyond graphene, due to their attractive and unique properties. Such excellent characteristics have triggered highly active researches on 2D materials, such as hexagonal boron nitride (hBN), molybdenum disulfide (MoS2), and tungsten diselenide (WSe2). New physics observed in 2D semiconductors allow for development of new-concept devices. Especially, these emerging 2D materials are promising candidates for flexible and transparent electronics. Recently, van der Waals heterostructures (vdWH) have been achieved by putting these 2D materials onto another, in the similar way to build Lego blocks. This enables us to investigate intrinsic physical properties of atomically-sharp heterostructure interfaces and fabricate high performance optoelectronic devices for advanced applications. In this talk, fundamental properties of various 2D materials will be introduced, including growth technique and influence of defects on properties of 2D materials. We also fabricate high performance electronic/optoelectronic devices of vdWH, such as transistors, memories, and solar cells. The device platform based on van der Waals heterostructures show huge improvement of devices performance, high stability and transparency/flexibility due to unique properties of 2D materials and ultra-sharp heterointerfaces. Our work paves a new way toward future advanced electronics based on 2D materials.

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유기 광전자 재료의 기술동향 (Technical Trend in Organo-Optoelectronic Materials and Their Applications)

  • 김명룡
    • E2M - 전기 전자와 첨단 소재
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    • 제10권3호
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    • pp.295-301
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    • 1997
  • 다양하고 방대한 양의 정보를 효과적으로 처리, 분배하는 멀티미디어 정보통신 시스템이 광신호에 의한 처리를 통해 구현되어갈 전망이다. 이를 위해 빛을 발생시키는 발광소자, 빛을 검출하는 소광소자, 광신호를 처리하는 광신호 처리소자 그리고 광신호를 전달해주는 광섬유 및 화상정보의 표시를 위한 표시소자 등이 중요한 요소기술이다. 이같은 소자의 제작에 있어 기존 물질로는 요구에 대한 대응이 어려워 보다 우수한 성능의 소재개발이 요구된다. 이에 대한 대체물질로 최근 유기물 또는 고분자가 각광을 받고 있으며, 이를 사용한 소자개발이 활발히 진행되고 있다. 이제까지 무기물로 달성하기 힘들었던 많은 기술들이 유기물로 쉽게 구현이 가능하게 되면 고성능의 소재 및 소자기술은 다가오느 정보화 시대를 더축 풍요롭게 하는데 크게 기여할 것이다.

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유기금속화학기상증착법을 이용한 청색 발광 InGaN/GaN MQWs의 성장에 관한 연구 (Growth of Blue Light Emitting InGaN/GaN MQWs by Metalorganic Chemical Vapor Deposition)

  • 김동준;문용태;송근만;박성주
    • 대한전자공학회논문지SD
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    • 제37권12호
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    • pp.11-17
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    • 2000
  • 저압 유기금속화학기상증착법을 이용하여 효율적인 청색 발광을 하는 InGaN/GaN multiple quantum wells(MQWs)을 성장시키고, InGaN/GaN MQWs의 광학적 및 계면 구조 특성을 고찰하였다. 보다 효율적인 청색 발광을 하는 InGaN/GaN MQWs을 성장시키기 위하여, MQWs의 성장온도 및 InGaN 우물층과 GaN 장벽층의 두께를 변화시켜 최적 조건을 확립하였다. 특히, GaN 장벽층의 두께 변화가 InGaN 우물층과 GaN 장벽층간 계면의 구조적 특성에 지대한 영향을 미침을 확인하였다. X-ray 회절분석결과와 고분해능의 투과전자현미경 사진 분석으로부터 MQW 구조의 InGaN 우물층과 GaN 장벽층간의 계면이 매우 급준함을 발견할 수 있었다. 또한, 상온 PL 스펙트럼에서 72.6meV의 매우 좁은 반치폭을 갖는 단일 피크가 463.5nm에서 확인되었다.

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카드뮴 셀레나이드 양자점과 단일벽 탄소나노튜브로 구성된 이종 나노 소재를 기반으로 한 광전소자의 제작 및 특성평가 (Fabrication and characterization of optoelectronic device using CdSe nanocrystal quantum dots/single-walled carbon nanotubes)

  • 심형철;정소희;한창수;김수현
    • 센서학회지
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    • 제19권2호
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    • pp.160-167
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    • 2010
  • In this paper, we fabricated the optoelectronic device based on Cadmium selenide(CdSe) nanocrystal quantum dots (NQDs)/single-walled carbon nanotubes(SWNTs) heterostructure using dieletrophoretic force. The efficient charge transfer phenomena from CdSe to SWNT make CdSe-Pyridine(py)-SWNT unique heterostructures for novel optoelectronic device. The conductivity of CdSe-py-SWNT was increased when it was exposed at ultra violet(UV) lamp, and varied as a function of wavelength of incident light.

Optoelectronic Characteristics of Hydrogen and Oxygen Annealed Si-O Superlattice Diode

  • Seo, Yong-Jin
    • Transactions on Electrical and Electronic Materials
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    • 제2권2호
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    • pp.16-20
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    • 2001
  • Optoelectronic characteristics of the superlattice diode as a function of deposition temperature and annealing conditions have been studied. The multilayer nanocrystalline silicon/adsorbed oxygen (nc/Si/O) superlattice formed by molecular beam epitaxy (MBE) system. Experimental results showed that deposition temperature of 550$^{\circ}C$, followed by hydrogen annealing leads to best results, in terms of optical photoluminescence (PL) and electrical current-voltage (I-V) characteristics. Consequently, the experimental results of multilayer Si/O superlattic device showed the stable photoluminescence and good insulating behavior with high breakdown voltage. This is very useful promise for Si-based optoelectronic devices, and can be readily integrated with conventional silicon ULSI processing.

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Fabrication of Large Area Photonic Crystals with Periodic Defects by One-Step Holographic Lithography

  • Ma, Jie;Wong, Kam Sing;Li, Shan;Chen, Zhe;Zhou, Jianying;Zhong, Yongchun
    • Journal of the Optical Society of Korea
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    • 제19권1호
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    • pp.63-68
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    • 2015
  • A one-step fabrication of a photonic crystal (PC) with functional defects is demonstrated. Using multi-beam phase-controlled holographic lithography with a diffracting optical element, large area one dimensional (1D) and two dimensional (2D) PCs with periodic defects were fabricated. The uniform area is up to $2mm^2$, and tens of defect channels have been introduced in the 1D and 2D PC structure. This technique gives rise to substantial reduction in the fabrication complexity and significant improvement in the spatial accuracy of introducing functional defects in photonic crystals. This method can also be used to design and fabricate three dimensional (3D) PCs with periodic defects.

Uniform PMMA-CH3NH3PbBr3 Nanoparticle Composite Film for Optoelectronic Application

  • Kirakosyan, Artavazd;Yun, Seokjin;Choi, Jihoon
    • 한국재료학회지
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    • 제27권6호
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    • pp.307-311
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    • 2017
  • Organometal halide perovskite materials, due to the tunability of their electronic and optical properties by control of composition and structure, have taken a position of significant importance in optoelectronic applications such as photovoltaic and lighting devices. Despite numerous studies on the structure - property relationship, however, practical application of these materials in electronic and optical devices is still limited by their processability during fabrication. Achieving nano-sized perovskite particles embedded in a polymer matrix with high loading density and outstanding photoluminescence performance is challenging. Here, we demonstrate that the careful control of nanoparticle formation and growth in the presence of poly(methyl methacrylate) results in perovskite nanoparticle - polymer nanocomposites with very good dispersion and photoluminescence. Furthermore, this approach is found to prevent further growth of perovskite nanoparticles, and thus results in a more uniform film, which enables fabrication using the perovskite nanoparticles.

유무기 페로브스카이트 나노입자의 휘발성 유기화합물 감응특성 (Detection of Volatile Organic Compounds (VOCs) using Organic-Inorganic Hybrid Perovskite Nanoparticles)

  • 최한솔;최지훈
    • 한국재료학회지
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    • 제30권10호
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    • pp.515-521
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    • 2020
  • Organic-inorganic hybrid perovskite nanocrystals have attracted a lot of attention owing to their excellent optical properties such as high absorption coefficient, high diffusion length, and photoluminescence quantum yield in optoelectronic applications. Despite the many advantages of optoelectronic materials, understanding on how these materials interact with their environments is still lacking. In this study, the fluorescence properties of methylammonium lead bromide (CH3NH3PbBr3, MAPbBr3) nanoparticles are investigated for the detection of volatile organic compounds (VOCs) and aliphatic amines (monoethylamine, diethylamine, and trimethylamine). In particular, colloidal MAPbBr3 nanoparticles demonstrate a high selectivity in response to diethylamine, in which a significant photoluminescence (PL) quenching (~ 100 %) is observed at a concentration of 100 ppm. This selectivity to the aliphatic amines may originate from the relative size of the amine molecules that must be accommodated in the perovskite crystals structure with a narrow range of tolerance factor. Sensitive PL response of MAPbBr3 nanocrystals suggests a simple and effective strategy for colorimetric and fluorescence sensing of aliphatic amines in organic solution phase.