• 제목/요약/키워드: CdSe films

검색결과 95건 처리시간 0.029초

Enhancement in solar cell efficiency by luminescent down-shifting layers

  • Ahmed, Hind A.;Walshe, James;Kennedy, Manus;Confrey, Thomas;Doran, John;McCormack, Sarah.J.
    • Advances in Energy Research
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    • 제1권2호
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    • pp.117-126
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    • 2013
  • In this paper, core-shell semiconductor quantum dots (QDs) CdSeS/ZnS with emission at 490 nm and 450 nm were investigated for their use in luminescent down-shifting (LDS) layers. Luminescent quantum yield (LQY) of the QDs measurements in solution proposed that they were suitable candidates for inclusion in LDS layers. QDs were encapsulated in poly(methyl,methacrylate) (PMMA) polymer matrix and films were fabricated of $134{\pm}0.05$ microns. Selections of organic dyes from BASF Lumogen F range were also investigated for their use as LDS layers; Violet 570 and Yellow 083. The addition of LDS layers containing Violet 570 dye demonstrated a unity LQY when encapsulated within a PMMA matrix. A PV device of an LDS layer of Lumogen Violet 570 deposited on top of a crystalline silicon cell was fabricated where it was demonstrated to increase the efficiency of the cell by 34.5% relative.

Efficient Electron Transfer in CdSe-py-SWNTs FETs

  • Jeong, So-Hee;Shim, H.C.;Han, Chang-Soo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.63-63
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    • 2010
  • Ability to transport extracted carriers from NQDs is essential for the development of most NQD based applications. Strategies to facilitate carrier transport while preserving NQDs' optical characteristics include: 1) Fabricating neat films of NQDs with modified surfaces either by adapting series of ligands with certain limitations or by applying physical processes such as heat annealing 2) Coupling of NQDs to one-dimensional nanostructures such as single walled carbon nanotubes (SWNTs) or various types of nanowires. NQD-nanowire hybrid nanostructures are expected to facilitate selective wavelength absorption, charge transfer to 1-D nanostructures, and efficient carrier transport. Even with the vast interests in using NQD-SWNT hybrid materials in optoelectric applications, still, no reports so far have clearly elucidated the optoelectric behavior when they were assembled on the FET mainly because the complexity involving in both components in their preparation and characterization. We have monitored the optical properties of both components (NQDs, SWNTs) from the synthesis, to the assembly, and to the device. More importantly, by using pyridine molecules as a linker to non-covalently attach NQDs to SWNTs, we were able to assemble NQDs on SWNTs with precise density control without harming their electronic structures. Furthermore, by measuring electrical signals from the fabricated aligned SWNTs-FET using dielectrophoresis (DEP), we were able to elucidate the charge transfer mechanism.

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분광타원해석법을 이용한 $Ge_2Sb_2Te_5$ 의 복소굴절율 결정 (Determination of the complex refractive index of $Ge_2Sb_2Te_5$ using spectroscopic ellipsometry)

  • 김상준;김상열;서훈;박정우;정태희
    • 한국광학회지
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    • 제8권6호
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    • pp.445-449
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    • 1997
  • 비정질상과 결정상으로 가역변화하는 특성을 이용하여, 기존의 읽기전용 기록매체인 Compact Disk(CD)를 대체할 차세대 광기록매체로 주목받고 있는 Ge$_{2}$Sb$_{2}$Te$_{5}$(GST)의 상태변화에 따른 굴절율과 소광계수, 박막의 두께와 밀도 등 박막상수들을 구하였다. DC 스퍼터링방법으로 제작한 두꺼운 GST의 복소굴절율을 양자역학적 분산식을 이용한 모델링방법으로 구하고, 한편으로는 표면미시거칠기를 AFM(Atomic Force Microscopy)으로 결정한 다음, 타원해석 스펙트럼들을 수치해석적 역방계산하여 구한 복소굴절율과 비교하였다. 결정상과 비정질상일 때의 GST의 복소굴절율을 각각 구하고 이로부터 계산된 반사율을 측정된 반사율과 비교함으로써 수치해석적인 방법이 실제 GST의 복소굴절율과 더 일치하는 값ㅇㄹ 가지게 됨을 확인하였다. 이렇게 구한 GST의 복소굴절율을 기준데이터로 사용하여 실제 설계두께를 가지는 GST박막의 두께 및 표면거칠기층을 정량적으로 구하였다.다.

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직접 검출형 평판 검출기 적용을 위한 변환층 설계 및 제작 (The Design and Fabrication of Conversion Layer for Application of Direct-Detection Type Flat Panel Detector)

  • 노시철;강상식;정봉재;최일홍;조창훈;허예지;윤주선;박지군
    • 한국방사선학회논문지
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    • 제6권1호
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    • pp.73-77
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    • 2012
  • 최근 디지털 방사선 영상획득을 위한 평판형 X선 검출기에 이용되는 광도전체(a-Se, $HgI_2$, PbO, CdTe, $PbI_2$ 등)에 대한 관심이 증대되고 있다. 본 연구에서는 입자침전법 적용이 가능한 광도전 물질을 이용하여 X선 영상 검출기 적용을 위한 필름층을 제작하여 평가하였다. 먼저, X선 영상에서 일반적으로 사용되는 에너지대역인 70 kVp 의 연속 X선에 대한 필름 두께별 양자효율을 몬테카를로 시뮬레이션을 통해 조사하였다. 평가결과, 현재 상용화된 500 ${\mu}m$ 두께의 a-Se 필름에 대한 양자효율인 64 %와 유사한 $HgI_2$의 필름의 두께는 180 ${\mu}m$ 정도였으며, 240 ${\mu}m$ 두께에서 74 %의 높은 양자효율을 보였다. 입자침전법을 이용하여 제작된 239 ${\mu}m$ 필름에 대한 전기적 측정결과, 10 $pA/mm^2$ 이하의 매우 낮은 암전류를 보였으며, X선 민감도는 1 $V/{\mu}m$의 인가전압에서 19.8 mC/mR-sec의 높은 감도를 보였다. 영상의 대조도에 영향을 미치는 신호 대 잡음비 평가결과 0.8 $V/{\mu}m$의 낮은 동작전압에서 3,125의 높은 값을 보였으며, 전기장의 세기가 높아질수록 암전류의 급격한 증가에 의해 SNR 값이 지수적으로 감소하였다. 이러한 결과는 종래의 a-Se을 이용하는 평판형 검출기를 입자 침전법으로 제작 가능한 필름으로 대체하여 저가형 고성능 영상검출기 개발이 가능할 것으로 기대된다.

Solar Photovoltaics Technology: No longer an Outlier

  • Kazmerski, Lawrence L.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.70-70
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    • 2011
  • The prospects of current and coming solar-photovoltaic (PV) technologies are envisioned, arguing this solar-electricity source is beyond a tipping point in the complex worldwide energy outlook. Truly, a revolution in both the technological advancements of solar PV and the deployment of this energy technology is underway; PV is no longer an outlier. The birth of modern photovoltaics (PV) traces only to the mid-1950s, with the Bell Telephone Laboratories' development of an efficient, single-crystal Si solar cell. Since then, Si has dominated the technology and the markets, from space through terrestrial applications. Recently, some significant shift toward technology diversity have taken place. Some focus of this presentation will be directed toward PV R&D and technology advances, with indications of the limitations and relative strengths of crystalline (Si and GaAs) and thin-film (a-Si:H, Si, Cu(In,Ga)(Se,S)2, CdTe). Recent advances, contributions, industry growth, and technological pathways for transformational now and near-term technologies (Si and primarily thin films) and status and forecasts for next-generation PV (nanotechnologies and non-conventional and "new-physics" approaches) are evaluated. The need for R&D accelerating the now and imminent (evolutionary) technologies balanced with work in mid-term (disruptive) approaches is highlighted. Moreover, technology progress and ownership for next generation solar PV mandates a balanced investment in research on longer-term (the revolution needs revolutionary approaches to sustain itself) technologies (quantum dots, multi-multijunctions, intermediate-band concepts, nanotubes, bio-inspired, thermophotonics, ${\ldots}$ and solar hydrogen) having high-risk, but extremely high performance and cost returns for our next generations of energy consumers. This presentation provides insights to the reasons for PV technology emergence, how these technologies have to be developed (an appreciation of the history of solar PV)-and where we can expect to be by this mid-21st century.

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