• 제목/요약/키워드: Bandgap

검색결과 635건 처리시간 0.029초

Insulated Metal Substrate를 사용한 고출력 전력 반도체 방열설계 (Thermal Design of High Power Semiconductor Using Insulated Metal Substrate)

  • 정봉민;오애선;김선애;이가원;배현철
    • 마이크로전자및패키징학회지
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    • 제30권1호
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    • pp.63-70
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    • 2023
  • 오늘날 심각한 환경 오염과 에너지의 중요성으로 전력 반도체의 중요도가 지속적으로 높아지고 있다. 특히 wide band gap(WBG)소자 중 하나인 SiC-MOSFET은 우수한 고전압 특성을 가지고 있어 그 중요도가 매우 높다. 하지만 SiC-MOSFET의 전기적 특성이 열에 민감하기 때문에 패키지를 통한 열 관리가 필요하다. 본 논문에서는 기존 전력 반도체에서 사용하는 direct bonded copper(DBC) 기판 방식이 아닌 insulated metal substrate(IMS) 방식을 제안한다. IMS는 DBC에 비해 공정이 쉬우며 coefficient of thermal expansion (CTE)가 높아서 비용과 신뢰성 측면에서 우수하다. IMS의 절연층인 dielectric film의 열전도도가 낮은 문제가 있지만 매우 얇은 두께로 공정이 가능하기 때문에 낮은 열 전도도를 충분히 극복할 수 있다. 이를 확인하기 위해서 이번 연구에서는 electric-thermal co-simulation을 수행하였으며 검증을 위해 DBC 기판과 IMS를 제작하여 실험하였다.

Electronic properties of graphene nanoribbons with Stone-Wales defects using the tight-binding method

  • M.W. Chuan;S.Z. Lok;A. Hamzah;N.E. Alias;S. Mohamed Sultan;C.S. Lim;M.L.P Tan
    • Advances in nano research
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    • 제14권1호
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    • pp.1-15
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    • 2023
  • Driven by the scaling down of transistor node technology, graphene became of interest to many researchers following the success of its fabrication as graphene nanoribbons (GNRs). However, during the fabrication of GNRs, it is not uncommon to have defects within the GNR structures. Scaling down node technology also changes the modelling approach from the classical Boltzmann transport equation to the quantum transport theory because the quantum confinement effects become significant at sub-10 nanometer dimensions. The aim of this study is to examine the effect of Stone-Wales defects on the electronic properties of GNRs using a tight-binding model, based on Non-Equilibrium Green's Function (NEGF) via numeric computation methods using MATLAB. Armchair and zigzag edge defects are also implemented in the GNR structures to mimic the practical fabrication process. Electronic properties of pristine and defected GNRs of various lengths and widths were computed, including their band structure and density of states (DOS). The results show that Stone-Wales defects cause fluctuation in the band structure and increase the bandgap values for both armchair GNRs (AGNRs) and zigzag GNRs (ZGNRs) at every simulated width. In addition, Stone-Wales defects reduce the numerical computation DOS for both AGNRs and ZGNRs. However, when the lengths of the structures increase with fixed widths, the effect of the Stone-Wales defects become less significant.

깊은 준위 결함에 의한 SiC SBD 전기적 특성에 대한 영향 분석 (The effect of deep level defects in SiC on the electrical characteristics of Schottky barrier diode structures)

  • 이건희;변동욱;신명철;구상모
    • 전기전자학회논문지
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    • 제26권1호
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    • pp.50-55
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    • 2022
  • SiC는 차세대 전력반도체의 핵심 재료로 넓은 밴드갭과 높은 절연파괴강도, 열전도율을 가지고 있지만 deep level defect와 같은 다양한 문제를 야기하는 결함이 존재한다. SiC에서 나타나는 defect는 물성에서 나타나는 defect와 계면에서 나타나는 interface trap 2가지로 나뉜다. 본 논문은 상온 (300 K)에서 보고되는 Z1/2 trap concentration 0 ~ 9×1014 cm-3을 SiC substrate와 epi layer에 적용하여 turn-on 특성을 알아보고자 한다. 전류밀도와 SRH(Shockley-Read-Hall), Auger recombination을 통해 구조 내 재 결합률을 확인하였다. trap concentration이 증가할수록 turn-on시 전류밀도와 재 결합률은 감소하며 Ron은 0.004에서 0.022 mΩ으로 약 550% 증가하였다.

Surface Engineering of GaN Photoelectrode by NH3 Treatment for Solar Water Oxidation

  • Soon Hyung Kang;Jun-Seok Ha
    • Journal of Electrochemical Science and Technology
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    • 제14권4호
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    • pp.388-396
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    • 2023
  • Photoelectrochemical (PEC) water splitting is a vital source of clean and sustainable hydrogen energy. Moreover, the large-scale H2 production is currently necessary, while long-term stability and high PEC activity still remain important issues. In this study, a GaN-based photoelectrode was modified by an additional NH3 treatment (900℃ for 10 min) and its PEC behavior was monitored. The bare GaN exhibited a highly crystalline wurtzite structure with the (002) plane and the optical bandgap was approximately 3.2 eV. In comparison, the NH3-treated GaN film exhibited slightly reduced crystallinity and a small improvement in light absorption, resulting from the lattice stress or cracks induced by the excessive N supply. The minor surface nanotexturing created more surface area, providing electroactive reacting sites. From the surface XPS analysis, the formation of an N-Ga-O phase on the surface region of the GaN film was confirmed, which suppressed the charge recombination process and the positive shift of EFB. Therefore, these effects boosted the PEC activity of the NH3-treated GaN film, with J values of approximately 0.35 and 0.78 mA·cm-2 at 0.0 and 1.23 VRHE, respectively, and an onset potential (Von) of -0.24 VRHE. In addition, there was an approximate 50% improvement in the J value within the highly applied potential region with a positive shift of Von. This result could be explained by the increased nanotexturing on the surface structure, the newly formed defect/trap states correlated to the positive Von shift, and the formation of a GaOxN1-x phase, which partially blocked the charge recombination reaction.

라디오파 마그네트론 스퍼터링으로 성장한 녹색 발광 CaNb2O6:Tb3+ 박막의 특성 (Properties of Green-Emitting CaNb2O6:Tb3+ Thin Films Grown by Radio-Frequency Magnetron Sputtering)

  • 김선경;조신호
    • 한국재료학회지
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    • 제33권10호
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    • pp.400-405
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    • 2023
  • Tb3+-doped CaNb2O6 (CaNb2O6:Tb3+) thin films were deposited on quartz substrates at a growth temperature of 300 ℃ using radio-frequency magnetron sputtering. The deposited thin films were annealed at several annealing temperatures for 20 min and characterized for their structural, morphological, and luminescent properties. The experimental results showed that the annealing temperature had a significant effect on the properties of the CaNb2O6:Tb3+ thin films. The crystalline structure of the as-grown CaNb2O6:Tb3+ thin films transformed from amorphous to crystalline after annealing at temperatures greater than or equal to 700 ℃. The emission spectra of the thin films under excitation at 251 nm exhibited a dominant emission band at 546 nm arising from the 5D47F5 magnetic dipole transition of Tb3+ and three weak emission bands at 489, 586, and 620 nm, respectively. The intensity of the 5D47F5 (546 nm) magnetic dipole transition was greater than that of the 5D47F6 (489 nm) electrical dipole transition, indicating that the Tb3+ ions in the host crystal were located at sites with inversion symmetry. The average transmittance at wavelengths of 370~1,100 nm decreased from 86.8 % at 700 ℃ to 80.5 % at an annealing temperature of 1,000 ℃, and a red shift was observed in the bandgap energy with increasing annealing temperature. These results suggest that the annealing temperature plays a crucial role in developing green light-emitting CaNb2O6:Tb3+ thin films for application in electroluminescent displays.

Electrochemical Detection of Hydroxychloroquine Sulphate Drug using CuO/GO Nanocomposite Modified Carbon Paste Electrode and its Photocatalytic Degradation

  • G. S. Shaila;Dinesh Patil;Naeemakhtar Momin;J. Manjanna
    • 전기화학회지
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    • 제27권1호
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    • pp.15-31
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    • 2024
  • The antimalarial drug hydroxychloroquine sulphate (HCQ) has taken much attention during the first COVID-19 pandemic phase for the treatment of severe acute respiratory infection (SARI) patients. Hence it is interest to study the electrochemical properties and photocatalytic degradation of the HCQ drug. Copper oxide (CuO) nanoparticles, graphene oxide (GO) and CuO/GO NC (nanocomposite) modified carbon paste electrodes (MCPE) are used for the detection of HCQ in an aqueous medium. Electrochemical behaviour of HCQ (20 μM) was observed using CuO/MCPE, GO/MCPE and CuO/GO NC/MCPE in 0.1 M phosphate buffer at pH 7 with a scan rate of 20 to 120 mV s-1 by cyclic voltammetry (CV). Differential pulse voltammetry (DPV) of HCQ was performed for 0.6 to 16 μM HCQ. The CuO/GO NC/MCPE showed a reasonably good sensitivity of 0.33 to 0.44 μA μM cm-2 with LOD of 69 to 92 nM for HCQ. Furthermore, the CuO/GO NC was used as a catalyst for the photodegradation of HCQ by monitoring its UV-Vis absorption spectra. About 98% was degraded in about 34 min under visible light and after 4 cycles it was 87%. The improved photocatalytic activity may be attributed to decrease in bandgap energy and enhanced ability for the electrons to migrate. Thus, CuO/GO NC showed good results for both sensing and degradation applications as well as reproducibility.

4H-SiC PiN 다이오드의 깊은 준위 결함에 따른 전기적 특성 분석 (Analysis of Electrical Characteristics due to Deep Level Defects in 4H-SiC PiN Diodes)

  • 이태희;박세림;김예진;박승현;김일룡;김민규;임병철;구상모
    • 한국재료학회지
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    • 제34권2호
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    • pp.111-115
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    • 2024
  • Silicon carbide (SiC) has emerged as a promising material for next-generation power semiconductor materials, due to its high thermal conductivity and high critical electric field (~3 MV/cm) with a wide bandgap of 3.3 eV. This permits SiC devices to operate at lower on-resistance and higher breakdown voltage. However, to improve device performance, advanced research is still needed to reduce point defects in the SiC epitaxial layer. This work investigated the electrical characteristics and defect properties using DLTS analysis. Four deep level defects generated by the implantation process and during epitaxial layer growth were detected. Trap parameters such as energy level, capture-cross section, trap density were obtained from an Arrhenius plot. To investigate the impact of defects on the device, a 2D TCAD simulation was conducted using the same device structure, and the extracted defect parameters were added to confirm electrical characteristics. The degradation of device performance such as an increase in on-resistance by adding trap parameters was confirmed.

전력반도체 응용을 위한 용액 공정 인듐-갈륨 산화물 반도체 박막 트랜지스터의 성능과 안정성 향상 연구 (Solution-Processed Indium-Gallium Oxide Thin-Film Transistors for Power Electronic Applications)

  • 김세현;이정민;;김민규;정유진;백강준
    • 한국전기전자재료학회논문지
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    • 제37권4호
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    • pp.400-406
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    • 2024
  • Next-generation wide-bandgap semiconductors such as SiC, GaN, and Ga2O3 are being considered as potential replacements for current silicon-based power devices due to their high mobility, larger size, and production of high-quality wafers at a moderate cost. In this study, we investigate the gradual modulation of chemical composition in multi-stacked metal oxide semiconductor thin films to enhance the performance and bias stability of thin-film transistors (TFTs). It demonstrates that adjusting the Ga ratio in the indium gallium oxide (IGO) semiconductor allows for precise control over the threshold voltage and enhances device stability. Moreover, employing multiple deposition techniques addresses the inherent limitations of solution-processed amorphous oxide semiconductor TFTs by mitigating porosity induced by solvent evaporation. It is anticipated that solution-processed indium gallium oxide (IGO) semiconductors, with a Ga ratio exceeding 50%, can be utilized in the production of oxide semiconductors with wide band gaps. These materials hold promise for power electronic applications necessitating high voltage and current capabilities.

Hydride vapor phase epitaxy에 의한 후막 AlN 단결정의 성장 거동에 관한 연구 (A study on the growth behavior of AlN single crystal growth by hydride vapor phase epitaxy)

  • 강승민
    • 한국결정성장학회지
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    • 제34권4호
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    • pp.139-142
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    • 2024
  • SiC와 GaN 등의 광에너지갭 소재들의 전력반도체에 대한 활용과 소자의 개발 추세와 함께 더 높은 에너지갭을 갖는 AlN 단결정에 대한 연구도 2인치 단결정 웨이퍼의 개발 성공 등 많은 연구 결과가 보고되고 있다. 그러나, 화학기상증착공법을 적용하여 성장된 AlN 단결정은 수 마이크로미터의 두께 이하의 박막은 개발되었으나, 그 이상의 두께를 갖은 결과는 거의 없다. 따라서, 본 연구에서는 화학기상증착공법중 하나인 HVPE(Hydride vapor phase epitaxy) 법을 적용하여 성장하고자 하였다. 성장된 AlN 단결정은 자체 제작된 설비를 이용하여 제작하였으며, 사파이어 기판을 사용하여, AlN 단 결정을 제조하기 위한 조건을 확립하고자 하였고, 그 결과를 광학현미경 관찰을 통하여 성장거동을 고찰하고자 하였다.

컬러센서를 위한 $TiO_{2}$/Se : Te 이종접합의 스펙트럼 응답 (Spectral Response of $TiO_{2}$/Se : Te Heterojunction for Color Sensor)

  • 우정옥;박욱동;김기완;이우일
    • 센서학회지
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    • 제2권1호
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    • pp.101-108
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    • 1993
  • 컬러센서를 위한 $TiO_{2}$/Se : Te 이종접합을 고주파 반응성 스퍼터링법과 진공증착법을 이용하여 제작하였다. 제조된 $TiO_{2}$ 막형성의 최적조건은 $1000{\AA}$$TiO_{2}$ 두께에서 고주파전력 120 W, 기판온도 $100^{\circ}C$, 산소농도 50% 및 분위기압 50 mTorr였다. 이 때 광투과율은 파장 550 nm에서 85%, 저항률은 $2{\times}10^9{\Omega}{\cdot}cm$, 굴절률은 2.3이었다. 제조된 $TiO_{2}$막은 직접천이형 에너지 밴드구조를 가지며 광학적 밴드갭은 3.58 eV였다. 제조된$TiO_{2}$막을 $400^{\circ}C$에서 30분간 열처리함으로써 광투과율이 파장 $300{\sim}580$ nm범위에서 $0{\sim}25%$까지 개선되었다. 또한 화학양론적 조성비를 조사하기 위하여 AES 분석을 한 결과 Ti 및 0의 조성비는 1 : 1.7로 나타났다. 한편 Se : Te 막형성의 최적조건은 $190^{\circ}C$에서 1분간 열처리했을 때였다. 이러한 조건으로 제조된 Se : Te막의 광학적 밴드갭은 1.7 eV였으며 육방정계구조의 (100) 방향 및 (110) 방향으로 Se : Te 막이 결정화됨을 알 수 있었다. 1000 lux의 조도에서 Se : Te막의 광전변환률은 0.75였다. 또한 Se에 Te를 첨가함으로써 장파장영역의 분광감도가 향상되었다. $TiO_{2}$/Se : Te 이종접합의 분광감도는 가시광 전영역에서 비교적 넓은 분광감도를 나타내었으며, 특히 청색영역에서 a-Si박막보다 우수한 분광감도를 나타내었다.

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