• 제목/요약/키워드: vapor-solid mechanism

검색결과 63건 처리시간 0.022초

ZnO가 첨가된 TeO2 나노와이어의 합성 및 저농도(50 ppm) 이산화질소 가스 센싱 특성 (Synthesis and Low-concentration (50 ppm) NO2 Sensing Properties of Bare and ZnO (n) Decorated TeO2 (p) Nanowires)

  • 유동재;신가윤;엄완식;강석우;김은비;김형민;김현우
    • 한국재료학회지
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    • 제32권10호
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    • pp.435-441
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    • 2022
  • We report the synthesis and gas sensing properties of bare and ZnO decorated TeO2 nanowires (NWs). A catalyst assisted-vapor-liquid-solid (VLS) growth method was used to synthesize TeO2 NWs and ZnO decoration was performed using an Au-catalyst assisted-VLS growth method followed by a subsequent heat treatment. Structural and morphological analyses using X-ray diffraction (XRD) and scanning/transmission electron microscopies, respectively, demonstrated the formation of bare and ZnO decorated TeO2 NWs with desired phase and morphology. NO2 gas sensing studies were performed at different temperatures ranging from 50 to 400 ℃ towards 50 ppm NO2 gas. The results obtained showed that both sensors had their best optimal sensing temperature at 350 ℃, while ZnO decorated TeO2 NWs sensor showed much better sensitivity towards NO2 relative to a bare TeO2 NWs gas sensor. The reason for the enhanced sensing performance of the ZnO decorated TeO2 NWs sensor was attributed to the formation of ZnO (n)/ TeO2 (p) heterojunctions and the high intrinsic gas sensing properties of ZnO.

Study on Pressure-dependent Growth Rate of Catalyst-free and Mask-free Heteroepitaxial GaN Nano- and Micro-rods on Si (111) Substrates with the Various V/III Molar Ratios Grown by MOVPE

  • Ko, Suk-Min;Kim, Je-Hyung;Ko, Young-Ho;Chang, Yun-Hee;Kim, Yong-Hyun;Yoon, Jong-Moon;Lee, Jeong-Yong;Cho, Yong-Hoon
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.180-180
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    • 2012
  • Heteroepitaxial GaN nano- and micro-rods (NMRs) are one of the most promising structures for high performance optoelectronic devices such as light emitting diodes, lasers, solar cells integrated with Si-based electric circuits due to their low dislocation density and high surface to volume ratio. However, heteroepitaxial GaN NMRs growth using a metal-organic vapor phase epitaxy (MOVPE) machine is not easy due to their long surface diffusion length at high growth temperature of MOVPE above $1000^{\circ}C$. Recently some research groups reported the fabrication of the heteroepitaxial GaN NMRs by using MOVPE with vapor-liquid-solid (VLS) technique assisted by metal catalyst. However, in the case of the VLS technique, metal catalysts may act as impurities, and the GaN NMRs produced in this mathod have poor directionallity. We have successfully grown the vertically well aligned GaN NMRs on Si (111) substrate by means of self-catalystic growth methods with pulsed-flow injection of precursors. To grow the GaN NMRs with high aspect ratio, we veried the growth conditions such as the growth temperature, reactor pressure, and V/III molar ratio. We confirmed that the surface morphology of GaN was strongly influenced by the surface diffusion of Ga and N adatoms related to the surrounding environment during growth, and we carried out theoretical studies about the relation between the reactor pressure and the growth rate of GaN NMRs. From these results, we successfully explained the growth mechanism of catalyst-free and mask-free heteroepitaxial GaN NMRs on Si (111) substrates. Detailed experimental results will be discussed.

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리튬이온전지용 산화갈륨 (β-Ga2O3) 나노로드 (Nanorods) 음극 활물질의 물리적.전기화학적 특성 (Physical and Electrochemical Properties of Gallium Oxide (β-Ga2O3) Nanorods as an Anode Active Material for Lithium Ion Batteries)

  • 최영진;류호석;조규봉;조권구;류광선;김기원
    • 전기화학회지
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    • 제12권2호
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    • pp.189-195
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    • 2009
  • 고순도의 $\beta-Ga_{2}O_{3}$ 나노로드(nanorods)가 니켈산화물 나노입자를 촉매로 사용하고 갈륨금속분말을 원료물질로 이용하여 화학기상증착법으로 합성되었다. 전계방출형 주사전자현미경을 이용하여 $\beta-Ga_{2}O_{3}$ 나노로드를 관찰한 결과, 평균직경은 약 160 nm 그리고 평균길이는 $4{\mu}m$였으며 vaporsolid(VS) 성장기구를 통하여 성장되었음을 알 수 있었다. X-선 회절시험과 고분해능 투과전자 현미경을 이용한 결정구조 분석 결과, 합성된 나노로드의 내부는 단사정계 결정구조를 가지는 단결정의 $\beta-Ga_{2}O_{3}$로 이루어져 있고 외벽은 비정질 갈륨옥사이드로 이루어진 코어-셀 구조로 구성되어 있는 것을 확인하였다. 합성된 $\beta-Ga_{2}O_{3}$ 나노로드를 음극 활물질로 사용하여 전극을 제조하고 전기화학적 특성을 분석한 결과, 리튬/$\beta-Ga_{2}O_{3}$ 나노로드 전지는 첫 방전 시 867 mAh/g-$\beta-Ga_{2}O_{3}$의 높은 용량을 나타내었으나 초기 비가역 용량으로 인해 62%의 낮은 충 방전 효율을 나타내었다. 그러나 5 사이클 이후 높은 충 방전 효율을 보이며 30 사이클까지 안정된 사이클 특성을 나타내었다.