• 제목/요약/키워드: sub-bandgap

검색결과 120건 처리시간 0.029초

Al2O3 산화막 방전관을 통한 개선된 오존발생장치에 관한 연구

  • 이성호;민정환;공성욱
    • 한국진공학회:학술대회논문집
    • /
    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
    • /
    • pp.457-457
    • /
    • 2014
  • 오존발생방법은 다양한 방식으로 구현이 가능하나 대용량 장치를 만들기 위해서는 DBD (Dielectric barrier discharge) 구조의 형태의 가지고 있다. 이러한, DBD는 반도체의 MOS (Metal On Semiconductor)의 반대 구조를 가진 SOM (Semiconductor On Metal)의 형태를 가지고 있으며 대부분이 Oxidation 산화물을 가지고 구현한다. 오존발생기는 반도체 공정, 환경 및 정화 등 다양한 분야에 사용이 되고 있는 상황으로 성능개선을 위한 연구가 필요한 상황이다. 대표적으로 사용되는 물질인 $SiO_2$를 가지고 있는 상황이며 Silicon은 에너지 Bandgap이 1.1 eV로 금속위에 증착되어 통상적으로 사용되는 문턱전압은 0.7 V에 해당이 된다. 현재 점차적으로 연구가 진행되고 있는 $Al_2O_3$는 8.8 eV의 bandgap을 가지고 있으며 유전 상수가 9로 $SiO_2$인 3.9보다 높은 유전률 특징을 가지고 있다. 따라서, 본 연구는 오존 발생장치에 사용되는 방전관을 기존의 $SiO_2$에서 $Al_2O_3$ 방식으로 대체하므로써 실제적인 유전율의 값의 차이와 오존 발생시 오존변화율 증대에 관하여 연구하였다. $SiO_2$ 방전관은 Fe 메탈위에 약 3 mm정도의 두께를 binding시켜 N4L사의 PSM1700 모델 LCR meter를 사용하여 1.3 kHz시 7.2 pF의 유전율 확인 할 수 있으며 동일한 조건의 금속 메탈위에 $Al_2O_3$를 binding 시켜 측정한 결과 1.07 kHz시 10.7 pF의 유전율을 가지게 되어 40% 이상 높은 유전율을 가지게 되는 것을 확인 할 수 있다. 오존발생을 위하여 가변 주파수형 트랜스 드라이버를 통한 공진 주파수를 생성하여 방전 증폭을 위한 Amplifier를 통하여 변환률을 높이는 방식을 적용하여 MIDAC사의 I1801모델 적외선 분광기(FT-IR)를 통한 오존발생량을 측정하여 기존의 $SiO_2$의 방전관은 시간당 54 g의 오존 발생률 가지게 된다. $Al_2O_3$는 시간당 70 g 정도의 오존 발생률 가지므로 기존의 $SiO_2$ 보다 발생률 높은 것을 확인 할 수 있다.

  • PDF

MoO3 기반 실리콘 이종접합 IR 영역 광검출기 개발 (MoO3/p-Si Heterojunction for Infrared Photodetector)

  • 박왕희;김준동;최인혁
    • 한국전기전자재료학회논문지
    • /
    • 제30권8호
    • /
    • pp.525-529
    • /
    • 2017
  • Molybdenum oxide ($MoO_3$) offers pivotal advantages for high optical transparency and low light reflection. Considering device fabrication, n-type $MoO_3$ semiconductor can spontaneously establish a junction with p-type Si. Since the energy bandgap of Si is 1.12 eV, a maximum photon wavelength of around 1,100 nm is required to initiate effective photoelectric reaction. However, the utilization of infrared photons is very limited for Si photonics. Hence, to enhance the Si photoelectric devices, we applied the wide energy bandgap $MoO_3$ (3.7 eV) top-layer onto Si. Using a large-scale production method, a wafer-scale $MoO_3$ device was fabricated with a highly crystalline structure. The $MoO_3/p-Si$ heterojunction device provides distinct photoresponses for long wavelength photons at 900 nm and 1,100 nm with extremely fast response times: rise time of 65.69 ms and fall time of 71.82 ms. We demonstrate the high-performing $MoO_3/p-Si$ infrared photodetector and provide a design scheme for the extension of Si for the utilization of long-wavelength light.

염 보조 초음파 분무 열분해 공정으로 합성된 TiO2 나노입자의 특성에 열분해 온도가 미치는 영향 (Effect of Pyrolysis temperature on TiO2 Nanoparticles Synthesized by a Salt-assisted Ultrasonic Spray Pyrolysis Process)

  • 유재현;지명준;박우영;이영인
    • 한국분말재료학회지
    • /
    • 제26권3호
    • /
    • pp.237-242
    • /
    • 2019
  • In this study, ultrasonic spray pyrolysis combined with salt-assisted decomposition, a process that adds sodium nitrate ($NaNO_3$) into a titanium precursor solution, is used to synthesize nanosized titanium dioxide ($TiO_2$) particles. The added $NaNO_3$ prevents the agglomeration of the primary nanoparticles in the pyrolysis process. The nanoparticles are obtained after a washing process, removing $NaNO_3$ and NaF from the secondary particles, which consist of the salts and $TiO_2$ nanoparticles. The effects of pyrolysis temperature on the size, crystallographic characteristics, and bandgap energy of the synthesized nanoparticles are systematically investigated. The synthesized $TiO_2$ nanoparticles have a size of approximately 2-10 nm a bandgap energy of 3.1-3.25 eV, depending on the synthetic temperature. These differences in properties affect the photocatalytic activities of the synthesized $TiO_2$ nanoparticles.

Structural, morphological, optical, and photosensing properties of Cs2TeI6 thin film synthesized by two-step dry process

  • Hoat, Phung Dinh;Van Khoe, Vo;Bae, Sung-Hoon;Lim, Hyo-Jun;Hung, Pham Tien;Heo, Young-Woo
    • 센서학회지
    • /
    • 제30권5호
    • /
    • pp.279-285
    • /
    • 2021
  • Recently, cesium tellurium iodine (Cs2TeI6) has emerged as an inorganic halide perovskite material with potential application in optoelectronic devices due to its high absorption coefficient, suitable bandgap and because it consists of nontoxic and earth-abundant elements. However, studies on its fabrication process as well as photoresponse characteristics are limited. In this study, a simple and effective method is introduced for the synthesis of Cs2TeI6 thin films by a two-step dry process. A Cs2TeI6-based lateral photosensor was fabricated, and its photoresponse characteristics were explored under laser illuminations of four different wavelengths in the visible range: 405, 450, 520, and 655 nm. The initial photosensing results suggest potential application and can lead to more promising studies of Cs2TeI6 film in optoelectronics.

미세액적 유동반응기 공정에서 연속제조된 나노구조 SiO2:Zn 원환형 입자의 특성 (Characteristics of Nano-structured SiO2:Zn Hollow Powders Prepared in the Micro Drop Fluidized Reactor (MDFR) Process)

  • 양시우;강용;강호
    • Korean Chemical Engineering Research
    • /
    • 제56권4호
    • /
    • pp.585-591
    • /
    • 2018
  • 미세액적 유동반응기 공정에서 제조된 나노구조 $SiO_2:Zn$ 원환형 입자의 특성을 밴드갭 에너지와 표면 반응성의 관점에서 고찰하였다. $SiO_2:Zn$ 원환형 입자를 단일 공정에서 연속적이며 합리적인 생산 효율로 첨가제인 THAM (tris(hydroxymethyl)-aminomethane)과 도핑되는 $Zn^{2+}$ 이온의 농도 변화에 따라 성공적으로 제조할 수 있었다. 그리고 $Zn^{2+}$ 이온의 도핑은 $Si^{4+}$ 이온의 conduction band 보다 에너지 레벨이 낮은 $Zn^{2+}$ 이온의 acceptor level을 형성함으로써 $SiO_2:Zn$ 원환형 입자의 밴드갭 에너지를 줄일 수 있었다. 또한, 입자의 원환형 구조는 $SiO_2:Zn$ 입자의 밴드갭 에너지를 감소시키는데 기여하였다. 따라서 $Zn^{2+}$ 이온이 도핑된 $SiO_2:Zn$ 원환형 입자는 표면에 SiO-H의 형성과 산소 결함의 생성으로 표면 반응성을 증대시킬 것으로 사료되었다.

1D-Na2Ti6O13 합성 변수에 따른 미세구조 및 밴드 갭 에너지 변화 (Effect of Processing Parameters on the Microstructure and Band Gap Energy of 1D-Na2Ti6O13)

  • 윤강섭;구혜경;강우승;김선재
    • 한국전기전자재료학회논문지
    • /
    • 제25권8호
    • /
    • pp.664-669
    • /
    • 2012
  • Nano-structured one-dimensional $Na_2Ti_6O_{13}$ particles were synthesized by a molten salt process. Effects of processing parameters on the microstructure and band gap energy of the $Na_2Ti_6O_{13}$ powder were studied in this paper. For the synthesis of the $Na_2Ti_6O_{13}$ particles, two different raw materials of tubular shaped Na-titanate (Na-TiNT) and spherical shaped $TiO_2$ were utilized. Synthesizing with the raw material of Na-TiNT, around 70nm thick 1D-$Na_2Ti_6O_{13}$ with the bandgap energy of 3.5 eV was obtained at $810^{\circ}C$. Below $810^{\circ}C$ or without the presence of NaCl, 1D-$Na_2Ti_6O_{13}$ was in a relatively short in length and agglomerated state. With the processing temperature increased, the thickness of the 1D-$Na_2Ti_6O_{13}$ was also observed to be increased. On the other hand, when $TiO_2$ was employed as a raw material, the mixed amount of $Na_2CO_3$ played an important role in transforming the morphology and phase of the raw material, affecting the bandgap energy of the synthesized product. Specific surface area of the synthesized 1D-$Na_2Ti_6O_{13}$ was significantly affected by the raw and mixed materials as well as processing temperature. When Na-TiNT was processed at $810^{\circ}C$ with NaCl, the specific surface area of the 1D-$Na_2Ti_6O_{13}$ showed the best value of 30.63 $m^2/g$.

널은 띠간격 묽은 자성반도체 CuAl1-xMnxO2 세라믹스의 구조 및 전자기 특성 (Structural, Electrical and Magnetic Properties of Wide Bandgap Diluted Magnetic Semiconductor CuAl1-xMnxO2 Ceramics)

  • 지성화;김효진
    • 한국재료학회지
    • /
    • 제14권8호
    • /
    • pp.595-599
    • /
    • 2004
  • We investigated the structural, electrical and magnetic properties of Mn-doped $CuAlO_2$ delafossite ceramics ($CuAl_{1-x}Mn_{x}O_2,\;0\le\;x\;\le0.05$), synthesized by solid-state reaction method in an air atmosphere at a sintering temperature of $1150^{\circ}C$. The solubility limit of Mn ions in delafossite $CuAlO_2$ was found to be as low as about 3 $mol\%$. Positive Hall coefficient and the temperature dependence of conductivity established that non-doped $CuAlO_2$ ceramic is a variable-range hopping p-type semiconductor. It was found that the Mn-doping in $CuAlO_2$ rapidly reduced the hole concentration and conductivity, indicating compensation of free holes. The analysis of the magnetization data provided an evidence that antiferromagnetic superexchange interaction is the dominant mechanism of the exchange coupling between Mn ions in $CuAl_{1-x}Mn_{x}O$ alloy, leading to an almost paramagnetic behavior in this alloy.

유무기 페로브스카이트 나노결정의 박리화에 의한 양자구속효과 (Quantum Confinement of Exfoliated Organic-Inorganic Hybrid Perovskite Nanocrystals)

  • 최현정;최지훈
    • 한국재료학회지
    • /
    • 제31권9호
    • /
    • pp.496-501
    • /
    • 2021
  • Metal halide perovskite nanocrystals, due to their high absorption coefficient, high diffusion length, and photoluminescence quantum yield, have received significant attention in the fields of optoelectronic applications such as highly efficient photovoltaic cells and narrow-line-width light emitting diodes. Their energy band structure can be controlled via chemical exchange of the halide anion or monovalent cations in the perovskite nanocrystals. Recently, it has been demonstrated that chemical exfoliation of the halide perovskite crystal structure can be achieved by addition of organic ligands such as n-octylamine during the synthetic process. In this study, we systematically investigated the quantum confinement effect of methylammonium lead bromide (CH3NH3PbBr3, MAPbBr3) nanocrystals by precise control of the crystal thickness via chemical exfoliation using n-octylammonium bromide (OABr). We found that the crystalline thickness consistently decreases with increasing amounts of OABr, which has a larger ionic radius than that of CH3NH3+ ions. In particular, a significant quantum confinement effect is observed when the amounts of OABr are higher than 60 %, which exhibited a blue-shifted PL emission (~ 100 nm) as well as an increase of energy bandgap (~ 1.53 eV).

이온층 에피택시법을 이용한 ZnO/Zn(OH)2 나노시트의 합성 (Synthesis of ZnO/Zn(OH)2 Nanosheets Using Ionic Layer Epitaxy)

  • 정규현;남동현;류경희
    • 한국재료학회지
    • /
    • 제32권3호
    • /
    • pp.153-160
    • /
    • 2022
  • ZnO nanosheets have been used for many devices and antibacterial materials with wide bandgap and high crystallinity. Among the many methods for synthesizing ZnO nanostructures, we report the synthesis of ZnO/Zn(OH)2 nanosheets using the ionic layer epitaxy method, which is a newly-developed bottom-up technique that allows the shape and thickness of ZnO/Zn(OH)2 nanosheets to be controlled by temperature and time of synthesis. Results were analyzed by scanning electron microscopy and atomic force microscopy. The physical and chemical information and structural characteristics of ZnO/Zn(OH)2 nanosheets were compared by X-ray photoelectron spectroscopy and X-ray diffraction patterns after various post-treatment processes. The crystallinity of the ZnO/Zn(OH)2 nanosheets was confirmed using scanning transmission electron microscopy. This study presents details of the control of the size and thickness of synthesized ZnO/Zn(OH)2 nanosheets with atomic layers.

Loading Effect of Ag Nanoparticles on Photocatalytic Activity of TiO2 Nanorod Arrays Prepared by Hydrothermal Method

  • Kwangmin Lee;Daeheung Yoo;Ahmad Zakiyuddin
    • Archives of Metallurgy and Materials
    • /
    • 제66권3호
    • /
    • pp.751-754
    • /
    • 2021
  • Rutile-TiO2 nanorod thin films were formed on Ti disks via alkali treatment in NaOH solutions followed by heat treatment at 700℃. Ag nanoparticles were loaded on nanorods using a photo-reduction method to improve the photocatalytic properties of the prepared specimen. The surface characterization and the photo-electrochemical properties of the Ag-loaded TiO2 nanorods were investigated using a field-emission scanning electron microscope (FE-SEM), X-ray photoelectron spectroscopy (XPS), UV-Vis spectroscopy and electrochemical impedance spectroscopy (EIS). The TiO2 nanorods obtained after the heat treatment were 80 to 180 nm thick and 1 ㎛ long. The thickness of the nanorods increased with the NaOH concentration. The UV-Vis spectra exhibit a shift in the absorption edge of the Ag-loaded TiO2 to the visible light range and further narrowing of the bandgap. The decrease in the size of the capacitive loops in the EIS spectra showed that the Ag loading effectively improved the photocatalytic activity of the TiO2 nanorods.