• 제목/요약/키워드: low dimensional materials

검색결과 428건 처리시간 0.029초

구형 및 평면 원자현미경 탐침에 대한 2차원 소재의 마찰 특성 (Frictional Properties of Two-dimensional Materials against Spherical and Flat AFM Tips)

  • ;정구현
    • Tribology and Lubricants
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    • 제35권4호
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    • pp.199-205
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    • 2019
  • Two-dimensional materials such as graphene, h-BN, and $MoS_2$ have attracted increased interest as solid lubricant and protective coating layer for nanoscale devices owing to their superior mechanical properties and low friction characteristics. In this work, the frictional properties of single-layer graphene, h-BN, and $MoS_2$ are experimentally investigated under various normal forces using atomic force microscope (AFM) tips with a spherical and flat end, with the aim to gain a better understanding of frictional behaviors. The nonlinear relationship between friction and normal force friction was clearly observed for single-layer graphene, h-BN, $MoS_2$ specimens slid against the spherical and flat AFM tips. The results also indicate that single-layer graphene, h-BN, $MoS_2$ exhibit low frictional properties (e.g., friction coefficient below 0.1 under 70~100 nN normal force). In particular, graphene is found to be superior to h-BN and $MoS_2$ in terms of frictional properties. However, the friction of single-layer graphene, h-BN, $MoS_2$ against the flat tip is larger than that against the spherical tip, which may be attributed to the relatively large adhesion. Furthermore, it is shown that the fluctuation of friction is more significant for the flat tip than the spherical tip. The resutls of this study may be helpful to elucidate the feasibility of using two-dimensional materials as solid lubricant and protective coating layer for nanoscale devices.

Josephson effect of the superconducting van der Waals junction

  • Park, Sungyu;Kwon, Chang Il;Kim, Jun Sung
    • 한국초전도ㆍ저온공학회논문지
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    • 제23권2호
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    • pp.6-9
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    • 2021
  • 단결정의 덩어리 시료로부터 박리된 NbSe2와 FeSe 박막을 이용한 동종 초전도 vdW 접합을 만들고 저온전도측정을 통해 JJ 효과를 확인하였다. 각 물질의 초전도 틈을 측정하였으며 기존 결과와 잘 일치하는 것을 확인하였다. FeSe 접합의 경우 NbSe2 접합과 다르게 JJ가 구현되지 않는 경우가 다수 발생하는데 이는 NbSe2와 구분되는 FeSe의 특성때문으로 보이며 일관성있는 JJ 구현을 위해서 저온 접합이나 접합 각도 의존성을 통한 향후 연구가 필요하다. 그럼에도 불구하고, 본 연구 결과는 FeSe 2차원 결정을 이용해 JJ가 잘 구현될 수 있음을 실험적으로 보인 첫 사례로서 그 의의를 갖는다.

전기화학 커패시터 응용을 위한 용액기반의 2차원 소재 제조 (Solution-based Synthesis of Two-dimensional Materials for Electrochemical Capacitors)

  • 최봉길
    • 공업화학
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    • 제28권3호
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    • pp.272-278
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    • 2017
  • 2차원 소재인 그래핀과 이황화몰리브덴($MoS_2$)은 슈퍼커패시터 응용을 위한 많은 관심과 무한한 가능성을 보여주었다. 2차원 소재의 슈퍼커패시터 응용성을 높이기 위해서는 2차원 소재 제조를 위한 효율적이면서 친환경적인 저비용 합성법이 개발되어야 한다. 본 논문에서 우리는 최근 개발된 슈퍼커패시터용 용액기반 2차원 소재 제조 기술을 논하고자 한다. 화학적 박리-환원, 화학적 삽입, 액상 박리 기술법들을 소개하고자 한다. 또한 그래핀과 이황화몰리브덴의 전기화학적 특성들을 정리하였다. 용액기반 공정들과 함께 개선되어야 할 나노시트들의 조성, 크기 및 두께 조절 기술개발을 다룬다.

2차원 ZnO 나노벽 구조 제조 (Fabrication of 2-Dimensional ZnO Nanowall Structure)

  • 김영정;;김영철;안승준;민준원
    • 한국세라믹학회지
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    • 제42권7호
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    • pp.521-524
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    • 2005
  • ZnO 2-D nanowall structure with around 100 nm thickness, which is composed of tens of nm scale ZnO single crystals, was fabricated through the low temperature chemical solution growth method. Electro Chemical Deposition (ECD) technique was applied to attach the ZnO seed crystals on ITO coated glass substrate. The ZnO nanowall structure was grown in the 0.015 mol$\%$ of aqueous solution of zinc nitrate and hexamethenamine at 60$^{\circ}C$ for 20 - 40 h. The nanowall structure depends on the ECD condition or the applied voltage and duration time. The nanowall shows a photoluminescence around 550 - 700 nm spectrum range.

Complex Chalcogenides as Thermoelectric Materials: A Solid State Chemistry Approach

  • 정덕영;Lykourgos Iordanidis;최경신;Mercouri G. Kanatzidis
    • Bulletin of the Korean Chemical Society
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    • 제19권12호
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    • pp.1283-1293
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    • 1998
  • A solid state chemical approach to discover new mateials with enhanced thermoelectric properties is described. The aim is to construct three-dimensional bismuth chalcogenide framework structures which contain tonically interacting alkali or alkaline earth atoms. The alkali atoms tend to have soft "rattling" type phonon modes which result in very low thermal conductivity in these materials. Another desirable feature in this class of compounds is the low crystal symmetry and narrow band-gaps. Several promising materials such as BaBiTe3, KBi6.33S10, K2Bi8S13, β-K2Bi8Se13, K2.5Bi8.5Se14, Ba4Bi6Se13, Eu2Pb2Bi6Se13, Al1+xPb4-2xSb7+xSe15 (A=K, Rb), and CsBi4Te6 are described.

Lasing Characteristics of Dye-Doped Cholesteric Liquid Crystal

  • Porov, Preeti;Chandel, Vishal Singh;Manohar, Rajiv
    • Transactions on Electrical and Electronic Materials
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    • 제16권3호
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    • pp.117-123
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    • 2015
  • Cholesteric liquid crystals are one dimensional photonic band-gap materials due to their birefringence and periodic structure. Dye doped cholesteric liquid crystals are self-assembling, mirror-less, low threshold laser structures that exhibit distributed feedback. In this review paper, we have presented the development in the field of lasing characteristics of dye doped cholesteric liquid crystals.

Research Trends in Electromagnetic Shielding using MXene-based Composite Materials

  • Siyeon Kim;Jongmin Byun
    • 한국분말재료학회지
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    • 제31권1호
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    • pp.57-76
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    • 2024
  • Recent advancements in electronic devices and wireless communication technologies, particularly the rise of 5G, have raised concerns about the escalating electromagnetic pollution and its potential adverse impacts on human health and electronics. As a result, the demand for effective electromagnetic interference (EMI) shielding materials has grown significantly. Traditional materials face limitations in providing optimal solutions owing to inadequacy and low performance due to small thickness. MXene-based composite materials have emerged as promising candidates in this context owing to their exceptional electrical properties, high conductivity, and superior EMI shielding efficiency across a broad frequency range. This review examines the recent developments and advantages of MXene-based composite materials in EMI shielding applications, emphasizing their potential to address the challenges posed by electromagnetic pollution and to foster advancements in modern electronics systems and vital technologies.

열전도성 점착제 응용을 위한 고분자 기반 탄소나노소재 복합체 제조 및 특성 평가 (Fabrication and characterization of polymer-based carbon nanomaterial composites for thermal conductive adhesive application)

  • 이병주;조성일;윤은혜;이애리;이우영;허성규;황재성;정구환
    • 한국표면공학회지
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    • 제53권4호
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    • pp.160-168
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    • 2020
  • A polymer-based carbon nanomaterial composite was fabricated and characterized for the application of a thermal conductive adhesive. Low-dimensional carbon nanomaterials with excellent thermal conductivity such as carbon nanotube (CNT) and graphene were selected as a filler in the composite. Thermal, electrical and adhesive properties of the composite were investigated with respect to the morphology and content of the low-dimensional carbon nanomaterials. As a result, the composite-based adhesive fabricated by the loading of surface-treated MWCNTs of 0.4 wt% showed uniform dispersion, moderate adhesion and effective heat dissipation properties. Finally, it was confirmed through the thermal image analysis of LED module that the temperature reduction of 10℃ was achieved using the fabricated composite adhesive with MWCNT-6A. Expecially, heat dissipation performance of the optimized composite adhesive was evident at the hot spot in the module compared to other samples mixed with graphene or different MWCNT loading ratios.

Evaluation of Carbon Fiber distribution in Unidirectional CF/Al Composites by Two-Dimensional Spatial Distribution Method

  • Lee, Moonhee;Kim, Sungwon;Lee, Jongho;Hwang, SeungKuk;Lee, Sangpill;Sugio, Kenjiro;Sasaki, Gen
    • 한국산업융합학회 논문집
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    • 제21권1호
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    • pp.29-36
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    • 2018
  • Low pressure casting process for unidirectional carbon fiber reinforced aluminum (UD-CF/Al) composites which is an infiltration route of molten Al into porous UD-CF preform has been a cost-effective way to obtain metal matrix composites (MMCs) but, easy to cause non-uniform fiber distribution as CF clustering. Such clustered CFs have been a problem to decrease the density and thermal conductivity (TC) of composites, due to the existence of pores in the clustered area. To obtain high thermal performance composites for heat-sink application, the relationship between fiber distribution and porosity has to be clearly investigated. In this study, the CF distribution was evaluated with quantification approach by using two-dimensional spatial distribution method as local number 2-dimension (LN2D) analysis. Note that the CFs distribution in composites sensitively changed by sizes of Cu bridging particles between the CFs added in the UD-CF preform fabrication stage, and influenced on only $LN2D_{var}$ values.