• 제목/요약/키워드: nanometer sized

검색결과 119건 처리시간 0.024초

Surface Plasmon Effect in Hot Electron Based Photovoltaic Devices

  • 이영근;정찬호;박종혁;박정영
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.162-162
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    • 2011
  • Nanometer-sized noble metals can trap and guide sunlight for enhanced absorption of light based on surface plasmon that is beneficial for generation of hot electron flows. A pulse of high kinetic energy electrons (1-3 eV), or hot electrons, in metals can be generated after surface exposure to external energy, such as in the absorption of light or in exothermic chemical processes. These energetic electrons are not at thermal equilibrium with the metal atoms. It is highly probable that the correlation between hot electron generation and surface plasmon can offer a new guide for energy conversion systems [1-3]. We show that hot electron flow is generated on the modified gold thin film (<10 nm) of metal-semiconductor (TiO2) Schottky diodes by photon absorption, which is amplified by localized surface plasmon resonance. The short-circuit photocurrent obtained with low energy photons (lower than bandgap of TiO2, ~3.1-3.2 eV) is consistent with Fowler's law, confirming the presence of hot electron flows. The morphology of the metal thin film was modified to a connected gold island structure after heating to 120, 160, 200, and 240$^{\circ}C$. These connected island structures exhibit both a significant increase in hot electron flow and a localized surface plasmon with the peak energy at 550-570 nm, which was separately characterized with UV-Vis [4]. The result indicates a strong correlation between the hot electron flow and localized surface plasmon resonance with possible application in hot electron based solar cells and photodetectors.

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Small Molecular Solar Cells toward Improved Efficiency and Stability

  • 김지환;김효정;정원익;김태민;이영은;김세용;김장주
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.73-73
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    • 2011
  • We will report a few methods to improve the efficiency and stability in small molecule based organic solar cells, including the formation of bulk heterojunctions (BHJs) through alternative thermal deposition (ATD), the use of a micro-cavity structure and interface modifications. By ATD which is a simple modification of conventional thermal evaporation, the thicknesses of alternative donor and acceptor layers were precisely controlled down to 0.1 nm, which is critical to form BHJs. The formation of a BHJ in copper(II) phthalocyanine (CuPc) and fullerene (C60) systems was confirmed by AFM, GISAXS and absorption measurements. From analysis of the data, we found that the CuPc|C60 films fabricated by ATD were composed of the nanometer sized disk shaped CuPc nano grains and aggregated C60, which explains the phase separation of CuPc and C60. On the other hand, the co-deposited CuPc:C60 films did not show the existence of separated CuPc nano grains in the CuPc:C60 matrix. The OPV cells fabricated using the ATD method showed significantly enhanced power conversion efficiency compared to the co-deposited OPV cells under a same composition [1]. We will also present by numerical simulation that adoption of microcavity structure in the planar heterojunction can improve the short circuit current in single and tandem OSCs [2]. Interface modifications also allowed us to achieve high efficiency and high stability OSCs.

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수직전류 인가형 나노 스핀소자의 제조 및 자기저항 특성 (The Fabrication and Magnetoresistance of Nanometer-sized Spin Device Driven by Current Perpendicular to the Plane)

  • 전명길;이현정;정원용;김광윤;김철기
    • 한국자기학회지
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    • 제15권2호
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    • pp.61-66
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    • 2005
  • 서브 마이크론 크기의 셀을 제조하기 위하여 종래의 방식인 전체시료구조를 증착한 후 이온밀링 방식으로 제조하는 대신에 Pt 스텐실 마스크 공정과 e-beam 리소 및 습식 식각 공정을 이용하여 배치형 submicron 셀을 lift-off 방식으로 제조하였다. $500nm{\times}500 nm,\;200nm{\times}300 nm$ 크기에 $CoFe(30 {\AA})/Cu(100{\AA})/CoFe(120{\AA}$) 3층 구조를 셀내에 증착하고 수직전류를 인가하여 자기저항 특성을 조사하였다. 자기저항 특성은 두 자성층의 보자력 차이를 이용하여 스핀의 반평형 구조를 유도하여 슈도 스핀밸브이며 각 셀의 크기에서 1.1, $0.8{\%}$의 자기저항비가 얻어졌다. 또한 전류인가에 따른 저항변화로부터 스핀전달 효과에 따른 스위칭 변화가 일어남을 확인하였으며, 이 구조에서 저항의 변화로부터 측정된 임계전류밀도는 약 $7.65{\times}10^{7}A/cm^2$였다.

음향화학법을 이용한 균일한 나노 자성체의 합성 (Synthesis of Monodisperse Magnetite Nanocrystallites Using Sonochemical Method)

  • 조준희;고상길;안양규;송기창;최은정
    • 한국자기학회지
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    • 제16권3호
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    • pp.163-167
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    • 2006
  • 초음파 조사 및 계면활성제 첨가에 따른 입자의 변화를 연구하기 위하여 침전법, 음향화학적 침전법 그리고 게면활성제를 첨가한 음향화학적 침전법으로 나노 입자를 합성하였고, X-선 회절실험을 통하여 마그네타이트가 합성된 것을 확인하였다. 침전법, 음향화학적 침전법으로 합성한 입자의 크기는 계면활성제를 첨가한 음향화학적 침전법으로 합성한 입자보다 크게 얻어졌고, 초음파 출력이 증가 할수록 크기는 증가하였다. 계면활성제로 올레인 산을 첨가한 음향화학적 기법에서는 게면활성제의 농도에 따라 입자 크기를 선택적으로 조절하여 합성할 수 있었고, 단순 침전법이나 음향화학적 기법에서 보다 생성되는 입자의 크기 분포가 좁게 나타났다. 마그네타이트 나노 입자들의 자기적 특성을 SQUID를 통하여 분석한 결과, 실온에서 모두 초상자성 거동을 보이는 것으로 나타났다.

Dynamic Rapid Synthesis of Bis(2,2'-bipyridine)nitrato Zinc (II) Nitrate Using a Microwave Method and its Application to Dye-Sensitized Solar Cells (DSSC)

  • Kim, Young-Mi;Kim, Su-Jung;Nahm, Kee-Pyung;Kang, Mi-Sook
    • Bulletin of the Korean Chemical Society
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    • 제31권10호
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    • pp.2923-2928
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    • 2010
  • This study examined the synthesis of the crystal structure of bis(2,2'-bipyridine)nitrato zinc (II) nitrate, $[Zn(bipy)_2(NO_3)]^+NO_3^-$ using a microwave treatment at 300 W and 60 Hz for the application to dye-sensitized solar cells. The simulated complex structure of the complex was optimized with the density functional theory calculations for the UV-vis spectrum of the ground state using Gaussian 03 at the B3LYP/LANL2DZ level. The structure of the acquired complex was expected a penta-coordination with four nitrogen atoms of bipyridine and the oxygen bond of the $NO_3^-$ ion. The reflectance UV-vis absorption spectra exhibited two absorptions (L-L transfers) that were assigned to the transfers from the ligand ($\sigma$, $\pi$) of $NO_3$ to the ligand ($\sigma^*$, $\pi^*$) of pyridine at around 200 - 350 nm, and from the non-bonding orbital (n) of O in $NO_3$ to the p-orbital of pyridine at around 450 - 550 nm, respectively. The photoelectric efficiency was approximately 0.397% in the dye-sensitized solar cells with the nanometer-sized $TiO_2$ at an open-circuit voltage (Voc) of 0.39 V, a short-circuit current density (Jsc) of $1.79\;mA/cm^2$, and an incident light intensity of $100\;mW/cm^2$.

티타늄 함유 텅스텐 산화물 광촉매를 이용한 메탄올/물 분해로부터 수소제조 (Hydrogen Production from Photocatalytic Splitting of Methanol/water Solution over Ti Impregnated WO3)

  • 이가영;박유진;박노국;이태진;강미숙
    • 청정기술
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    • 제18권4호
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    • pp.355-359
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    • 2012
  • 본 연구에서는 보다 효율적인 광 전기화학적 수소제조를 위하여 광촉매로써 산화텅스텐에 티타늄을 함침하여 $Ti/WO_3$ 나노입자를 제조하였다. 제조한 $Ti/WO_3$의 물리적 특성은 X-선 회절분석법(XRD), 주사전자현미경(SEM), 발광분광계(PL), 원자간력 현미경(AFM), 정전기 현미경(EFM)을 통해 확인하였다. 메탄올/물 (1/1) 광분해 수소제조 실험 결과, 순수 아나타제 티타니아나 산화텅스텐 광촉매보다 $Ti/WO_3$ 광촉매에서 촉매활성이 향상되었으며, 0.5 g의 0.10 mol % $Ti/WO_3$ 촉매를 사용한 경우 8시간 반응 시 3.02 mL의 수소가 발생되었다.

SiGe Nanostructure Fabrication Using Selective Epitaxial Growth and Self-Assembled Nanotemplates

  • Park, Sang-Joon;Lee, Heung-Soon;Hwang, In-Chan;Son, Jong-Yeog;Kim, Hyung-Jun
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2009년도 춘계학술발표대회
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    • pp.24.2-24.2
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    • 2009
  • Nanostuctures such as nanodot and nanowire have been extensively studied as building blocks for nanoscale devices. However, the direct growth of the nanostuctures at the desired position is one of the most important requirements for realization of the practical devices with high integrity. Self-assembled nanotemplate is one of viable methods to produce highly-ordered nanostructures because it exhibits the highly ordered nanometer-sized pattern without resorting to lithography techniques. And selective epitaxial growth (SEG) can be a proper method for nanostructure fabrication because selective growth on the patterned openings obtained from nanotemplate can be a proper direction to achieve high level of control and reproducibility of nanostructucture fabrication. Especially, SiGe has led to the development of semiconductor devices in which the band structure is varied by the composition and strain distribution, and nanostructures of SiGe has represented new class of devices such nanowire metal-oxide-semiconductor field-effect transistors and photovoltaics. So, in this study, various shaped SiGe nanostructures were selectively grown on Si substrate through ultrahigh vacuum chemical vapor deposition (UHV-CVD) of SiGe on the hexagonally arranged Si openings obtained using nanotemplates. We adopted two types of nanotemplates in this study; anodic aluminum oxide (AAO) and diblock copolymer of PS-b-PMMA. Well ordered and various shaped nanostructure of SiGe, nanodots and nanowire, were fabricated on Si openings by combining SEG of SiGe to self-assembled nanotemplates. Nanostructure fabrication method adopted in this study will open up the easy way to produce the integrated nanoelectronic device arrays using the well ordered nano-building blocks obtained from the combination of SEG and self-assembled nanotemplates.

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Water-stable solvent dependent multicolored perovskites based on lead bromide

  • Sharipov, Mirkomil;Hwang, Soojin;Kim, Won June;Huy, Bui The;Tawfik, Salah M.;Lee, Yong-Ill
    • Advances in nano research
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    • 제13권2호
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    • pp.187-197
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    • 2022
  • The synthesis of organic and hybrid organic-inorganic perovskites directly from solution improves the cost- and energy-efficiency of processing. To date, numerous research efforts have been devoted to investigating the influence of the various solvent parameters for the synthesis of lead halide perovskites, focused on the effects of different single solvents on the efficiency of the resulting perovskites. In this work, we investigated the effect of solvent blends for the first time on the structure and phase of perovskites produced via the Lewis base vapor diffusion method to develop a new synthetic approach for water-stable CsPbBr3 particles with nanometer-sized dimensions. Solvent blends prepared with DMF and water-miscible solvents with different Gutmann's donor numbers (DN) affect the Pb ions differently, resulting in a variety of lead bromide species with various colors. The use of a DMF/isopropanol solvent mixture was found to induce the formation of the Ruddlesden-Popper perovskite based on lead bromide. This perovskite undergoes a blue color shift in the solvated state owing to the separation of nanoplatelets. In contrast, the replacement of isopropanol with DMSO, which has a high DN, induces the formation of spherical CsPbBr3 perovskite nanoparticles that exhibit green emission. Finally, the integration of acetone in the solvent system leads to the formation of lead bromide complexes with a yellow-orange color and the perovskite CsPbBr3.

상온진공 과립분사에 의한 지르코니아 필름의 코팅거동 (Coating behavior of zirconia film fabricated by granule spray in vacuum)

  • ;강영림;박운익;박동수;박찬
    • 한국결정성장학회지
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    • 제32권5호
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    • pp.205-211
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    • 2022
  • GSV (Granule Spray in Vacuum)는 상온의 진공하에서 나노 크기의 치밀한 세라믹 코팅층을 형성하는 방법이다. 일반적으로, 단사정의 지르코니아는 1150℃에서 정방정으로 변태하며, 이때 6.5 %의 체적변화를 일으켜 치밀한 단사정의 지르코니아를 만들기 어렵다. 본 연구에서는 코팅 효율에 대한 두 가지 처리 변수의 효과를 조사하는 데 중점을 두었다. 아울러, 특별한 가열과정 없이 형성된 필름의 미세구조에 관찰하였다. 샘플 기판에 증착된 지르코니아 필름에 대한 X-ray diffractometer (XRD) 분석은 단사정 지르코니아 필름이 성공적으로 증착되었음을 보여주었다.

초고속 미세 액적 충돌을 이용한 나노미터 크기 입자상 오염물질의 세정에 대한 CFD 시뮬레이션 (CFD simulation of cleaning nanometer-sized particulate contaminants using high-speed injection of micron droplets)

  • 박진효;김정건;이승욱;이동근
    • 한국입자에어로졸학회지
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    • 제18권4호
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    • pp.129-136
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    • 2022
  • The line width of circuits in semiconductor devices continues to decrease down to a few nanometers. Since nanoparticles attached to the patterned wafer surface may cause malfunction of the devices, it is crucial to remove the contaminant nanoparticles. Physical cleaning that utilizes momentum of liquid for detaching solid nanoparticles has recently been tested in place of the conventional chemical method. Dropwise impaction has been employed to increase the removal efficiency with expectation of more efficient momentum exchange. To date, most of relevant studies have been focused on drop spreading behavior on a horizontal surface in terms of maximum spreading diameters and average spreading velocity of drop. More important is the local liquid velocity at the position of nanoparticle, very near the surface, rather than the vertical average value. In addition, there are very scarce existing studies dealing with microdroplet impaction that may be desirable for minimizing pattern demage of the wafer. In this study, we investigated the local velocity distribution in spreading liquid film under various impaction conditions through the CFD simulation. Combining the numerical results with the particle removal model, we estimated an effective cleaning diameter (ECD), which is a measure of the particle removal capacity of a single drop, and presented the predicted ECD data as a function of droplet's velocity and diameter particularly when the droplets are microns in diameter.