• 제목/요약/키워드: Optoelectronic properties

검색결과 223건 처리시간 0.031초

InGaAsP 에피막의 Spinodal분해 조직구조가 Photoluminescence 특성에 미치는 영향 (Influences of Spinodal Decomposition of InGaAsP Layer on Photoluminescence Characteristics)

  • 이종원
    • 한국재료학회지
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    • 제5권8호
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    • pp.936-944
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    • 1995
  • 본 논문에서는 저압 유기금속 기상성장(low pressure metal organic vapor phase epitaxy) 장치에 의해 성장된 InGaAsP/InP 구조의 상(phase) 분리현상(Spinodal 분해)이 photoluminescence (PL)의 강도와 반치폭(full-width at half maximum, FWHM)에 미치는 영향에 대해 연구하였다. 시료의 격자부정합은 double crystal x-ray diffractometer를 사용하여 측정하였고, InGaAsP에피막의 Spinodal분해조직은 투과전자현미경 (transmission electron microscopy, TEM)을 사용하여 관측하였다. 격자부정합에서 도출된 부정합응력과 Spinodal 모듈레이션의 주기(periodicity)와 밀접한 관계가 있음이 밝혀졌다. 또한 이러한 InGaAsP에피막의 미세조직 구조와 시료의 광전 특성이 어떤 관계가 있는지 알기 위해 PL 실험을 수행했으며, PL강도와 FWHM이 조성 모듈레이션의 주기에 강하게 의존한다는 것을 알 수 있었다. 이 현상을 심층적으로 연구하기 위해 부정합응력이 야기할 수 있는 interaction 탄성변형 에너지라는 새로운 함수를 유도하였으며 이에 의하여 실험결과를 설명할 수 있었다.

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Reduced graphene oxide field-effect transistor for biomolecule detection and study of sensing mechanism

  • Kim, D.J.;Sohn, I.Y.;Kim, D.I.;Yoon, O.J.;Yang, C.W.;Lee, N.E.;Park, J.S.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.431-431
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    • 2011
  • Graphene, two dimensional sheet of sp2-hybridized carbon, has attracted an enormous amount of interest due to excellent electrical, chemical and mechanical properties for the application of transparent conducting films, clean energy devices, field-effect transistors, optoelectronic devices and chemical sensors. Especially, graphene is promising candidate to detect the gas molecules and biomolecules due to the large specific surface area and signal-to-noise ratios. Despite of importance to the disease diagnosis, there are a few reports to demonstrate the graphene- and rGO-FET for biological sensors and the sensing mechanism are not fully understood. Here we describe scalable and facile fabrication of rGO-FET with the capability of label-free, ultrasensitive electrical detection of a cancer biomarker, prostate specific antigen/${\alpha}1$-antichymotrypsin (PSA-ACT) complex, in which the ultrathin rGO sensing channel was simply formed by a uniform self-assembly of two-dimensional rGO nanosheets on aminated pattern generated by inkjet printing. Sensing characteristics of rGO-FET immunosensor showed the highly precise, reliable, and linear shift in the Dirac point with the analyte concentration of PSA-ACT complex and extremely low detection limit as low as 1 fg/ml. We further analyzed the charge doping mechanism, which is the change in the charge carrier in the rGO channel varying by the concentration of biomolecules. Amenability of solution-based scalable fabrication and extremely high performance may enable rGO-FET device as a versatile multiplexed diagnostic biosensor for disease biomarkers.

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Work function variation of doped ZnO nanorods by Kelvin probe force microscopy

  • Ben, Chu Van;Hong, Min-Chi;Yang, Woo-Chul
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.446-446
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    • 2011
  • One dimensional (1-D) structures of ZnO nanorods are promising elements for future optoelectronic devices. However there are still many obstacles in fabricating high-quality p-type ZnO up to now. In addition, it is limited to measure the degree of the doping concentration and carrier transport of the doped 1-D ZnO with conventional methods such as Hall measurement. Here we demonstrate the measurement of the electronic properties of p- and n-doped ZnO nanorods by the Kelvin probe force microscopy (KPFM). Vertically aligned ZnO nanorods with intrinsic n-doped, As-doped p-type, and p-n junction were grown by vapor phase epitaxy (VPE). Individual nanowires were then transferred onto Au films deposited on Si substrates. The morphology and surface potentials were measured simultaneously by the KPFM. The work function of the individual nanorods was estimated by comparing with that of gold film as a reference, and the doping concentration of each ZnO nanorods was deduced. Our KPFM results show that the average work function difference between the p-type and n-type regions of p-n junction ZnO nanorod is about ~85meV. This value is in good agreement with the difference in the work function between As-doped p- and n-type ZnO nanorods (96meV) measured with the same conditions. This value is smaller than the expected values estimated from the energy band diagram. However it is explained in terms of surface state and surface band bending.

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이산화규소 증착된 스테인레스 기판위에 형성된 은 금속 박막의 급속 열처리에 대한 효과 (Rapid Thermal Annealing for Ag Layers on SiO2 Coated Metal Foils)

  • 김경보
    • 융합정보논문지
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    • 제10권8호
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    • pp.137-143
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    • 2020
  • SiO2 증착된 금속 호일 기판에 형성된 은 금속 박막의 급속 열처리에 대한 물리적 및 화학적 특성 영향을 조사하였다. 은 박막을 150도에서 550도까지 온도를 변화시키며, 각 온도에서 20분 동안 급속 열처리를 진행하였다. 550도에서 표면 거칠기와 저항이 급격하게 증가하는 현상을 발견하였다. 따라서 550도의 열처리 온도 샘플에 대해 조성 분석 기법을 사용하였고, 은 필름 표면에 산소 (O) 및 실리콘 (Si) 원자가 존재함을 확인하였다. 박막의 광학적 특성인, 전체 반사율은 온도가 증가함에 따라 감소하였으며, 특히 550도에서 공정을 진행한 박막은 박막 및 기판 표면으로부터의 다중 반사에 의한 광학적 간섭으로 인해 정현파 특성을 나타냄을 확인하였다. 이러한 현상은 급속 열처리 동안 SiO2 층으로부터 Si 원자의 외부 확산에 기인한 것이다. 본 연구 결과는 다양한 플렉서블 광전자소자의 기판으로 사용할 수 있는 가능성을 제공한다.

Synthesis and Characterization of Ruthenium Doped TiO2 Nanofibers

  • Park, Jung-Yeon;Lee, Deuk-Yong;Cho, Nam-Ihn;Oh, Young-Jei
    • 센서학회지
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    • 제20권2호
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    • pp.82-89
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    • 2011
  • Ruthenium(Ru)-doped $TiO_2$ nanofibers were prepared using electrospun Ru-$TiO_2$/poly(vinyl acetate) (PVAc) fibers and subsequent annealing for 1 h at temperatures in the range of $500^{\circ}C$ to $1000^{\circ}C$ in air. The properties of the Ru-$TiO_2$ fibers were characterized as a function of the Ru content and calcination temperature using X-ray diffraction, thermal gravimetry with differential scanning calorimetry, Fourier transform infrared spectroscopy, scanning electron microscopy, transmission electron microscopy, and viscometer, pycnometer and dynamic tensiometer measurements. Although the diameter of the fiber decreased slightly with increasing calcination temperature, no dramatic changes were observed with respect to the ruthenium content. The XRD and FT-IR results revealed that anatase phase and ruthenium metal began to be formed after calcination at temperatures above $500^{\circ}C$. Anatase and rutile phases and ruthenium metal coexisted in the fibers calcined above $600^{\circ}C$. No anatase phase was detected in the fibers containing ruthenium when they were calcined at $1000^{\circ}C$. The morphology of the fibers changed from smooth and uniform to porous with increasing temperature. The experimental results suggest that the calcination temperature and Ru content were influential in determining the morphology and structure of the fibers.

Influence of the Fluorine-doping Concentration on Nanocrystalline ZnO Thin Films Deposited by Sol-gel Process

  • Yoon, Hyunsik;Kim, Ikhyun;Kang, Daeho;Kim, Soaram;Kim, Jin Soo;Son, Jeong-Sik;Leem, Jae-Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.204.2-204.2
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    • 2013
  • Wide band gap II-VI semiconductors have attracted the interest of many research groups during the past few years due to the possibility of their applications in light-emitting diodes and laser diodes. Among the II-VI semiconductors, ZnO is an important optoelectronic device material for use in the violet and blue regions because of its wide direct band gap (Eg ~3.37 eV) and large exciton binding energy (60 meV). F-doped ZnO (FZO) and undoped ZnO thin films were grown onto quartz substrate by the sol-gel spin-coating method. The doping level in the solution, designated by F/Zn atomic ratio of was varied from 0 to 5 in 1 steps. To investigate the effects of the structure and optical properties of FZO thin films were investigated using X-ray diffraction (XRD), UV-visible spectroscopy, and photoluminescence (PL). In the XRD, the residual stress, FWHM, bond length, and average grain size were changed with increasing the doping concentration. For the PL spectra, the high INBE/IDLE ratio of the FZO thin films doping concentration at 1 at.% than the other samples.

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Bandgap Engineering in CZTSSe Thin Films via Controlling S/(S+Se) Ratio

  • Vijay C. Karade;Jun Sung Jang;Kuldeep Singh, Gour;Yeonwoo Park;Hyeonwook, Park;Jin Hyeok Kim;Jae Ho Yun
    • Current Photovoltaic Research
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    • 제11권3호
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    • pp.67-74
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    • 2023
  • The earth-abundant element-based Cu2ZnSn(S,Se)4 (CZTSSe) thin film solar cells (TFSCs) have attracted greater attention in the photovoltaic (PV) community due to their rapid development in device power conversion efficiency (PCE) >13%. In the present work, we demonstrated the fine-tuning of the bandgap in the CZTSSe TFSCs by altering the sulfur (S) to the selenium (Se) chalcogenide ratio. To achieve this, the CZTSSe absorber layers are fabricated with different S/(S+Se) ratios from 0.02 to 0.08 of their weight percentage. Further compositional, morphological, and optoelectronic properties are studied using various characterization techniques. It is observed that the change in the S/(S+Se) ratios has minimal impact on the overall Cu/(Zn+Sn) composition ratio. In contrast, the S and Se content within the CZTSSe absorber layer gets altered with a change in the S/(S+Se) ratio. It also influences the overall absorber quality and gets worse at higher S/(S+Se). Furthermore, the device performance evaluated for similar CZTSSe TFSCs showed a linear increase and decrease in the open circuit voltage (Voc) and short circuit current density (Jsc) of the device with an increasing S/(S+Se) ratio. The external quantum efficiency (EQE) measured also exhibited a linear blue shift in absorption edge, increasing the bandgap from 1.056 eV to 1.228 eV, respectively.

에어로졸 기술로 제작된 은 나노 입자를 활용한 페로브스카이트 태양전지 성능 향상 연구 (Performance enhancement of perovskite solar cells using Ag nanoparticles via aerosol technology)

  • 박수아;박인용;박대훈;한방우;이건희;김민철
    • 한국입자에어로졸학회지
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    • 제19권2호
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    • pp.21-30
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    • 2023
  • Solar cells, converting abundant solar energy into electrical energy, are considered crucial for sustainable energy generation. Recent advancements focus on nanoparticle-enhanced solar cells to overcome limitations and improve efficiency. These cells offer two potential efficiency enhancements. Firstly, plasmonic effects through nanoparticles can improve optical performance by enhancing absorption. Secondly, nanoparticles can improve charge transport and reduce recombination losses, enhancing electrical performance. However, factors like nanoparticle size, placement, and solar cell structure influence the overall performance. This study evaluates the performance of silver nanoparticles incorporated in a p-i-n structure of perovskite solar cells, generated via aerosol state by the evaporation and condensation system. The silver nanoparticles deposited between the hole transport layer and transparent electrode form nanoparticle embedded transport layer (NETL). The evaluation of the optoelectronic properties of perovskite devices using NETL demonstrates their potential for improving efficiency. The findings highlight the possibility of nanoparticle incorporation in perovskite solar cells, providing insights for sustainable energy generation.

TIPS-pentacene:ph-BTBT-10 혼합 유기반도체가 유기전계효과트랜지스터 광반응 특성에 미치는 영향 (Effects of Blended TIPS-pentacene:ph-BTBT-10 Organic Semiconductors on the Photoresponse Characteristics of Organic Field-effect Transistors)

  • 박채민;이은광
    • 청정기술
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    • 제30권1호
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    • pp.13-22
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    • 2024
  • 본 연구에서는 6,13-Bis(triisopropylsilylethynyl)pentacene(TP):2-Decyl-7-phenyl[1]benzothieno[3,2-b][1]benzothiophene(BT):Poly styrene (PS) 블랜딩 thin film transistor (TFT)를 제작 광 흡수 센서로의 활용에 대해 탐구한다. BT의 혼합으로 인해 off current 감소와 on/off ratio 향상을 동시에 달성하였다. 특히, TP:BT:PS (1:0.25:1 w/w) 샘플은 우수한 광 흡수 특성을 보여주었고, 이를 통해 높은 성능의 광 흡수 장치 제작이 가능함을 입증했다. 다양한 혼합 비율의 결정 구조와 전기적 특성에 대한 분석을 통해 TP:BT:PS (1:0.25:1 w/w) 샘플이 최적임을 확인하였다. 이 결과는 광 흡수 장치의 발전 뿐만 아니라 혼합 organic semiconductor (OSC)의 광전자 시스템 개발에 긍정적인 기대효과를 미칠 수 있을 것이며, 이를 통해 단일 OSC 사용의 제약을 극복하고, 미세 조정된 광학 응답을 갖춘 고성능 OSC TFT를 제작하여 의료 전자소자, 산업용 전자소자 등에 응용할 수 있을 것으로 기대된다.

The comparative study of pure and pulsed DC plasma sputtering for synthesis of nanocrystalline Carbon thin films

  • Piao, Jin Xiang;Kumar, Manish;Javid, Amjed;Wen, Long;Jin, Su Bong;Han, Jeon Geon
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.320-320
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    • 2016
  • Nanocrystalline Carbon thin films have numerous applications in different areas such as mechanical, biotechnology and optoelectronic devices due to attractive properties like high excellent hardness, low friction coefficient, good chemical inertness, low surface roughness, non-toxic and biocompatibility. In this work, we studied the comparison of pure DC power and pulsed DC power in plasma sputtering process of carbon thin films synthesis. Using a close field unbalanced magnetron sputtering system, films were deposited on glass and Si wafer substrates by varying the power density and pulsed DC frequency variations. The plasma characteristics has been studied using the I-V discharge characteristics and optical emission spectroscopy. The films properties were studied using Raman spectroscopy, Hall effect measurement, contact angle measurement. Through the Raman results, ID/IG ratio was found to be increased by increasing either of DC power density and pulsed DC frequency. Film deposition rate, measured by Alpha step measurement, increased with increasing DC power density and decreased with pulsed DC frequency. The electrical resistivity results show that the resistivity increased with increasing DC power density and pulsed DC frequency. The film surface energy was estimated using the calculated values of contact angle of DI water and di-iodo-methane. Our results exhibit a tailoring of surface energies from 52.69 to $55.42mJ/m^2$ by controlling the plasma parameters.

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