• 제목/요약/키워드: Nanostructured

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하이브리드 플라즈마 입자가속 충격퇴적(Hybrid Plasma - Particle Accelerating Impact Deposition, HP-PAID) 프로세스에 의한 Si 나노구조 코팅층의 제조 및 특성평가 (Synthesis of Nanostructured Si Coatings by Hybrid Plasma-Particle Accelerating Impact Deposition (HP-PAID) and their Characterization)

  • 이형직;권혁병;정해경;장성식;윤상옥;이형복;이홍림
    • 한국세라믹학회지
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    • 제40권12호
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    • pp.1202-1207
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    • 2003
  • 최근 개발된 하이브리드플라즈마 가속입자충격 프로세스를 이용하여 기상의 TEOS(tetraethoxysilane, (C$_2$ $H_{5}$O)$_4$Si)를 Ar-hybrid plasma 환경 하에 분사하는 방법으로 나노구조(nanostructured) Si 코팅 합성에 대해서 연구하였다. 반응가스와 함께 플라즈마제트는 노즐을 통해서 챔버속으로 700 torr정도에서 10 torr정도로 압력 강하를 동반하며 확장되었다. 노즐의 초중단부에서 핵생성 및 입성장한 초미세입자는 노즐의 하단의 자유 제트에서 가속되어 온도조절 기판위에 관성 충격에 의해 퇴적되어 10nm 이하의 비정질 실리콘 코팅층이 형성되었다. 퇴적된 비정질 코팅은 Ar분위기의 tube로에서 열처리 되었는데 90$0^{\circ}C$에서 30분간 열처리하여 결정화가 시작되었고, 이때 시편의 입자크기는 TEM을 통하여 10nm 이하로 유지됨을 알 수 있었다. 또한 라만분광기로 분석한 결과 이동치는 2.39$cm^{-1}$ /이며 반감폭은 5.92$cm^{-1}$ /으로 피크 이동치로 도출한 평균입자크기 7nm값과 일치하였으며, 특히 PL 피크는 398nm에서 강한 피크를 나타내어 3∼4 nm의 극미세 나노입자도 포함하고 있음을 알 수 있었다.

Raman spectroscopy study of graphene on Ni(111) and Ni(100)

  • Jung, Dae-Sung;Jeon, Cheol-Ho;Song, Woo-Seok;Jung, Woo-Sung;Choi, Won-Chel;Park, Chong-Yun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.59-59
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    • 2010
  • Graphene is a 2-D sheet of $sp^2$-bonded carbon arranged in a honeycomb lattice. This material has attracted major interest, and there are many ongoing efforts in developing graphene devices because of its high charge mobility and crystal quality. Therefore clear understanding of the substrate effect and mechanism of synthesis of graphene is important for potential applications and device fabrication of graphene. In a published paper in J. Phys. Chem. C (2008), the effect of substrate on the atomic/electronic structures of graphene is negligible for graphene made by mechanical cleavage. However, nobody shows the interaction between Ni substrate and graphene. Therefore, we have studied this interaction. In order to studying these effect between graphene and Ni substrate, We have observed graphene synthesized on Ni substrate and graphene transferred on $SiO_2$/Si substrate through Raman spectroscopy. Because Raman spectroscopy has historically been used to probe structural and electronic characteristics of graphite materials, providing useful information on the defects (D-band), in-plane vibration of sp2 carbon atoms (G-band), as well as the stacking orders (2D-band), we selected this as analysis tool. In our study, we could not observe the doping effect between graphene and Ni substrate or between graphene and $SiO_2$/Si substrate because the shift of G band in Raman spectrum was not occurred by charge transfer. We could noticed that the bonding force between graphene and Ni substrate is more strong than Van de Waals force which is the interaction between graphene and $SiO_2$/Si. Furthermore, the synthesized graphene on Ni substrate was in compressive strain. This phenomenon was observed by 2D band blue-shift in Raman spectrum. And, we consider that the graphene is incommensurate growth with Ni polycrystalline substrate.

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A Novel Flowerlike Nanostructured CeO2 for Sustainable Energies

  • Li, Hong;Chen, Liquan
    • 한국세라믹학회지
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    • 제47권1호
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    • pp.66-70
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    • 2010
  • This article presents a brief review of our recent studies on flowerlike nanostructured $CeO_2$ materials. These materials are monodispersed microspheres with peony appearance, open mesoporous structure, large specific surface area and nano-crystalline feature. The applications of this type of novel material to SOFC, ethanol steam reforming and CO oxidation are introduced.

원자층 증착법에 의한 Al2O3 박막 형성에 따른 모스아이 구조 반사방지 필름의 기계적 물성에 미치는 영향 (Effect of Atomic Layer Deposited Al2O3 Thin Films on the Mechanical Properties of Anti-reflective Moth Eye Nanostructured Films)

  • 윤은영;이우재;장경수;최현진;최우창;권세훈
    • 한국표면공학회지
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    • 제48권2호
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    • pp.50-55
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    • 2015
  • $Al_2O_3$ thin films were deposited on the moth eye anti-reflective nanostructured polycarbonate films by atomic layer deposition (ALD) techniques. Without ALD-$Al_2O_3$ thin films, moth eye anti-reflective nanostructured films had a high optical transmittance of 95.47% at a wavelength of 550 nm and a very poor hardness of 0.1381 GPa. With increasing the thickness of $Al_2O_3$ thin films from 5 to 25 nm, the transmittance of moth eye anti-reflective nanostructured films was gradually decreased from 94.94 to 93.12%. On the other hand, the hardness of the films was greatly increased from 0.3498 to 0.7806 GPa with increasing the thickness of $Al_2O_3$ thin films. This result shows that ALD thin films can be applied to improve mechanical properties with an adequate optical transmittance of the conventional moth eye anti-reflection nanostructure films.

Evaluating the Degree of Macrodispersion of Carbon Nanotubes using UV-VIS-NIR Absorption Spectroscopy

  • Kim, Ki-Kang;Kim, Soo-Min;Cui, Yan;Jeong, Mun-Seok;Han, Jong-Hun;Choi, Young-Chul;An, Kay-Hyeok;Oh, Kyung-Hui;Lee, Young-Hee
    • Carbon letters
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    • 제10권1호
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    • pp.14-18
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    • 2009
  • We measured the degree of macrodispersion of the various single-walled carbon nanotubes (SWCNTs) and multi-walled carbon nanotubes (MWCNTs) using UV-VIS-NIR absorption spectroscopy. CNTs were dispersed with SDS of 2 wt % in deionized water using the homogenizer and then were further centrifugated at 6000 g for 10 min. The degree of macrodispersion, expressed by $D_m({\lambda})=A_a({\lambda})/A_b({\lambda})^*100$ (%), where ${\lambda}$ is the wavelength and $A_a({\lambda})$ and $A_b({\lambda})$ are the absorbance of the sample after and before centrifugation, respectively. In the case of MWCNTs, we evaluated the degree of macrodispersion by the average degree of macrodispersion ($D_m({\lambda})$) between 1000 and 1200 nm. The degree of macrodispersion of SWCNTs was evaluated at the wavelength in which van Hove singularity-related transition regions were excluded, i.e., the range was chosen between ${E_{11}}^S$ and ${E_{22}}^S$ peaks. We have estimated six samples with the same method. The standard deviation of each sample was lower than 5. Therefore, we presented a reliable evaluation method for the macrodispersion of CNTs for standardization.

나노구조물질을 이용한 고체수소저장 기술 동향 (Advances in the Technology of Solid State Hydrogen Storage Methods Using Novel Nanostructured Materials)

  • ;김근영;남기석
    • Korean Chemical Engineering Research
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    • 제43권4호
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    • pp.439-451
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    • 2005
  • 수소저장기술은 수소경제를 달성하기 위해 개발해야할 핵심요소기술이다. 이 논문에서는 고체수소저장기술의 최신 개발 동향을 고찰하였다. 나노구조 탄소계 물질(nanostructured carbon materials), 유기금속구조물(metal organic framework, MOFs), 금속수소화물(metal hydrides), 클래스레이트수화물(clathrate hydrates), 금속착수소화물(complex chemical hydrides)과 같은 고체수소저장매체를 중점적으로 고찰하였다. 그 결과 지금까지 개발된 고체수소저장재료의 수소저장용량은 고체의 표면적에 비례하여 증가함을 알 수 있었다. 또한 수송용 탑재형 수소저장 응용을 목적으로 안전하면서도 가역적 고밀도 수소저장이 가능한 기능성 신 나노재료의 개발 방향을 제시하였다.

나노구조 교환결합 삼층박막의 열적 안정성 예측 (Thermal Stability of a Nanostructured Exchange-coupled Trilayer)

  • 이종민;임상호
    • 한국자기학회지
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    • 제20권2호
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    • pp.75-82
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    • 2010
  • 나노구조 교환결합 삼층박막의 열적안정성을 예측하기 위한 최근의 연구진전에 대하여 리뷰한다. 새로운 해석적/수치적 방법을 이용하여 나노구조 교환결합 삼층박막의 에너지 배리어, 나아가서 열적안정성을 예측한다. 이 방법의 특징은 수치적인 방법을 이용하여 얻은 magnetostatic 자기장을 포함하는 해석적인 전체 에너지 방정식을 이용함에 있다. 단자구라는 가정하에, 모든 magnetostatic 자기장은 자성층 전체 부피에 대해 그 값을 평균함으로써 유효 값을 취할 수 있다. 그러나, 평형상태에서는 자구의 구조가 복잡하며, 또한 불안정한 saddle point에서의 자구 구조를 알 수 있는 직접적인 방법이 없기 때문에, saddle point에서의 magnetostatic 자기장 역시 얻을 수 없다. 이러한 어려움은 micromagnetic simulation을 통해 얻을 수 있는 critical 자기장과 saddle point에서의 magnetostatic 자기장을 연결하는 방정식을 사용함으로써 극복되었다. 이 방법은 신뢰성이 확보된 micromagnetic simulation에 기반을 두고 있기 때문에 열적안정성을 정확하게 예측하는 것이 가능하다.

Characteristics of plasma polymerized para-xylene films as a passivation layer of organic light emitting diodes

  • Kho Sam il;Kim Min Su;Sohn Sun Young;Jung Dong Geun;Boo Jin Hyo;Jeong Seong Hoon;Park SangHee Ko
    • 한국진공학회지
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    • 제14권4호
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    • pp.195-200
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    • 2005
  • For the longevity of OLEDs, passivation of OLEDs is an important process step since organic materials used in OLEDs are very vulnerable to moisture. In this work, the passivation effect of the plasma polymerized para-xylene (PP$\rho$X) layers was studied. The PPpX layers deposited by PECVD were formed on top of the cathode with various plasma powers of 50 - 90 W. Passivation effect of PP$\rho$X was significantly dependent upon the deposition plasma power of the PP$\rho$X film. The lifetime of OLEDs with the 70 W deposited PP$\rho$X passivation layer was about 5 times longer than that of the control device.

고주파 유도 가열에 의한 급속 나노구조 MgTiO3 화합물 합성 및 소결 (Rapid Synthesis and Sintering of Nanostructured MgTiO3 Compound by High-Frequency Induction Heating)

  • 강현수;도정만;윤진국;박방주;손인진
    • 대한금속재료학회지
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    • 제50권12호
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    • pp.891-896
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    • 2012
  • Nanopowders of MgO and $TiO_2$ were made by high energy ball milling. The rapid synthesis and sintering of the nanostructured $MgTiO_3$ compound was investigated by the high-frequency induction heated sintering process. The advantage of this process is that it allows very quick densification to near theoretical density and inhibition grain growth. Nanocrystalline materials have received much attention as advanced engineering materials with improved physical and mechanical properties. As nanomaterials possess high strength, high hardness, excellent ductility and toughness, undoubtedly, more attention has been paid for the application of nanomaterials. A highly dense nanostructured $MgTiO_3$ compound was produced with simultaneous application of 80 MPa pressure and induced current within 2 min. The sintering behavior, gain size and mechanical properties of $MgTiO_3$ compound were investigated.

Supercapacitive properties of nickel sulfide coated titanium dioxide nanoparticles

  • 강진현;류일환;홍다정;김그린;임상규
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.156.1-156.1
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    • 2016
  • Nickel sulfide (NiS) is one of the most promising candidates as an electrode material for supercapacitors due to its good capacitive properties, high electrical conductivity and low cost. In addition to the development of the new electrode materials, nanostructuring the electrode surface is one of the main issues in enhancing the capacitive performance of the supercapacitors because the increased surface area can improve the charge transfer and energy storage processes occurring at the electrode surface. However, most nanofabrication techniques require complicated and delicate nanoprocesses, and hence are not suitable for practical use. In this work, we developed a simple method to fabricate nanostructured NiS electrodes by depositing NiS onto $TiO_2$ nanoparticles. First, $TiO_2$ nanoparticles were spin-coated on a fluorine-doped tin oxide (FTO) substrate, and then NiS layers were deposited onto the $TiO_2$ nanoparticles by consecutive dip-coatings in the solutions containing nickel and sulfur precursors. This nanostructured NiS electrode showed significantly improved capacitive properties compared to the electrode of NiS films deposited without $TiO_2$ nanoparticles. The asymmetric full-cell supercapacitor with this nanostructured NiS electrode and activated carbon electrode was also fabricated and investigated.

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