• Title/Summary/Keyword: Quantum confinement effect

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Characterization of Core/Shell PMMA/CdS Nanoparticles Synthesized by Surfactant-free Emulsion Polymerization (무유화 유화중합에 의해 합성된 Core/shell 형태 PMMA/CdS 나노입자의 특성분석)

  • Yoon, Hyojung;Rhym, Young-Mok;Shim, Sang Eun
    • Journal of Adhesion and Interface
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    • v.13 no.4
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    • pp.188-192
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    • 2012
  • Herein, CdS-coated PMMA nanoparticles were prepared by in-situ surfactant-free emulsion copolymerization and subsequent CdS coating process. As-prepared CdS/PMMA hybrid particles had 201.7 nm in diameter. The amount of CdS nanocrystals in the hybrid particles was 10.37 wt% determined by TGA and elemental analysis. The size of CdS crystals was 3.55 nm preferentially grown in (111) plane. UV-vis spectrum of PMMA/CdS nanoparticles showed the significant blue-shift in optical illumination. The reason was found because the synthesized CdS nanocrystals on PMMA particles had a different band gap energy of 2.70 eV which was significantly higher than that of known-value of bulk CdS (2.41 eV) due to a quantum confinement effect.

Optical Properties of Silicon Oxide (SiOx, x<2) Thin Films Deposited by PECVD Technique (PECVD 방법으로 증착한 SiOx(x<2) 박막의 광학적 특성 규명)

  • Kim, Youngill;Park, Byoung Youl;Kim, Eunkyeom;Han, Munsup;Sok, Junghyun;Park, Kyoungwan
    • Korean Journal of Metals and Materials
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    • v.49 no.9
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    • pp.732-738
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    • 2011
  • Silicon oxide thin films were deposited by using a plasma-enhanced chemical-vapor deposition technique to investigate the light emission properties. The photoluminescence characteristics were divided into two categories along the relative ratio of the flow rates of $SiH_4$ and $N_2O$ source gases, which show light emission in the broad/visible range and a light emission peak at 380 nm. We attribute the broad/visible light emission and the light emission peak to the quantum confinement effect of nanocrystalline silicon and the Si=O defects, respectively. Changes in the photoluminescence spectra were observed after the post-annealing processes. The photoluminescence spectra of the broad light emission in the visible range shifted to the long wavelength and were saturated above an annealing temperature of $900^{\circ}C$ or after 1 hour annealing at $970^{\circ}C$. However, the position of the light emission peak at 380 nm did not change at all after the post-annealing processes. The light emission intensities at 380 nm initially increased, and decreased at annealing temperatures above $700^{\circ}C$ or after 1 hour annealing at $700^{\circ}C$. The photoluminescence behaviors after the annealing processes can be explained bythe size change of the nanocrystalline silicon and the density change of Si=O defect in the films, respectively. These results support the possibility of using a silicon-based light source for Si-optoelectronic integrated circuits and/or display devices.

Preparation and characterization of CdS nanoparticle on the surface of silica nanoparticles (실리카 나노입자 표면에 CdS 나노입자의 제조 및 평가)

  • Kang, Yun-Ok;Choi, Seong-Ho;Gopalan, A.;Lee, Kwang-Pill
    • Analytical Science and Technology
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    • v.20 no.5
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    • pp.413-418
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    • 2007
  • Poly(vinylpyrrolidone) stabilized cadmium sulfide (CdS) nanoparticles were loaded onto the surface of silica ($SiO_2$) nanoparticles by using ${\gamma}$-irradiation. TEM micrograph reveals the presence of ~20nm sized CdS nanoparticles on the surface of $SiO_2$ nanoparticles. XRD patterns confirm the crystalline. PL spectra of the simple PVP-stabilized CdS nanoparticle and $SiO_2$@CdS composite confirm the differences in the emission characteristics between them. Two prominent emission peaks were noted around 550 nm and 600 nm for PVP-stabilized CdS nanoparticles). The emission peaks noted for the PVP-stabilized CdS nanoparticles were found to be blue shifted for $SiO_2$@CdS composites. Besides, an additional emission peak around 450 nm was noticed for the $SiO_2$@CdS composite. The presence of CdS nanoparticles influence the emission characteristics and induce quantum confinement effect.

Vertical Growth of Amorphous SiOx Nano-Pillars by Pt Catalyst Films (Pt 촉매 박막을 이용한 비정질 SiOx 나노기둥의 수직성장)

  • Lee, Jee-Eon;Kim, Ki-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.1
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    • pp.699-704
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    • 2018
  • One-dimensional nanostructures have attracted increasing attention because of their unique electronic, optical, optoelectrical, and electrochemical properties on account of their large surface-to-volume ratio and quantum confinement effect. Vertically grown nanowires have a large surface-to-volume ratio. The vapor-liquid-solid (VLS) process has attracted considerable attention for its self-alignment capability during the growth of nanostructures. In this study, vertically aligned silicon oxide nano-pillars were grown on Si\$SiO_2$(300 nm)\Pt substrates using two-zone thermal chemical vapor deposition system via the VLS process. The morphology and crystallographic properties of the grown silicon oxide nano-pillars were investigated by field emission scanning electron microscopy and transmission electron microscopy. The diameter and length of the grown silicon oxide nano-pillars were found to be dependent on the catalyst films. The body of the silicon oxide nano-pillars exhibited an amorphous phase, which is consisted with Si and O. The head of the silicon oxide nano-pillars was a crystalline phase, which is consisted with Si, O, Pt, and Ti. The vertical alignment of the silicon oxide nano-pillars was attributed to the preferred crystalline orientation of the catalyst Pt/Ti alloy. The vertically aligned silicon oxide nano-pillars are expected to be applied as a functional nano-material.

m-면 사파이어 기판을 이용한 반극성 (101) 산화아연 막대의 성장에 대한 연구

  • Son, Hyo-Su;Choe, Nak-Jeong;Park, Ji-Yeon;Lee, Seong-Nam
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.309.2-309.2
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    • 2014
  • 산화아연은 넓은 밴드갭과 큰 엑시톤 에너지를 갖고 있어 광전자반도체 물질로 산화인듐주석의 대체물질로 유망하다. 그러나, 산화아연 박막 및 나노막대는 대부분 c-축 방향으로의 성장이 보고되고 있다. 하지만, c-축으로 성장하는 극성 산화아연은 자발분극과 압전분극을 갖으며 이는 quantum confinement Stark effect (QCSE)를 발생시킨다. 그러므로, 반극성과 무극성 산화아연의 연구가 활발히 진행 되고 있다. 더욱이, 산화아연 나노구조체는 넓은 표면적, 높은 용해도, 광범위한 적용분야 등의 이점으로 많은 연구가 이뤄지고 있다. 본 연구에서는 m-면 사파이어 기판 위에 원자층 증착법을 이용하여 비극성 산화아연의 박막을 형성 후 전기화학증착법을 이용하여 반극성 산화아연 막대를 성장하고 이에 대한 성장 메커니즘을 분석하였다. 반극성 (10-11) 산화아연 나노구조체를 성장하기 위하여 두 단계 공정을 이용하였다. 먼저 원자층 증착법을 이용하여 m-면 사파이어 기판 위에 60 nm의 산화아연 씨앗층을 $195^{\circ}C$에서 성장 하였다. X-선 회절분석을 통하여 m-면 사파이어 위에 성장한 산화아연 씨앗층이 무극성 (10-10)으로 성장한 것을 확인하였다. 무극성 산화아연 씨앗층 위에 나노구조체를 형성하기 위하여 전기화학 증착법을 이용하여 주 공정이 진행되었다. 전구체로는 질산아연헥사수화물 ($Zn(NO3)2{\cdot}6H2O$)과 헥사메틸렌테트라민을 ((CH2)6N4)을 사용하였다. 무극성 산화아연 기판을 질산아연헥사수화물과 헥사메틸렌테트라민을 용해한 전해질에 담근 뒤 $70^{\circ}C$에서 두시간 동안 -1.0V의 정전압을 인가하였다. SEM을 이용한 표면 분석에서 원자층 증착법을 이용해 성장한 무극성 산화아연 씨앗층 위에 산화아연 나노구조체를 성장 시, 한 방향으로 기울어진 반극성 산화아연 나노구조체가 성장하는 것이 관찰되었다. 산화아연 막대의 성장 시간에 따라 XRD를 측정한 결과, 성장 초기에는 매우 약한 $31.5^{\circ}$ (100), $34.1^{\circ}$ (002), $36^{\circ}$ (101) 부근의 피크가 관찰되는 반면, 성장 시간이 증가함에 따라 강한 $36^{\circ}$ 부근의 피크가 관찰되는 X-선 회절 분석 결과를 얻을 수 있었다. 이는, 성장 초기에는 여러 방향의 나노구조체가 성장하였지만 성장시간이 점차 증가함에 따라 (101) 방향으로 우선 성장되는 것을 확인하였다.

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