• Title/Summary/Keyword: 나노시트

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열 화학기상증착법을 이용한 BCN 나노시트의 합성과 전기적 특성 분석

  • Jeon, Seung-Han;Cha, Myeong-Jun;Song, U-Seok;Kim, Seong-Hwan;Jeon, Cheol-Ho;Park, Jong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.399-399
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    • 2012
  • 최근 그래핀 연구와 더불어 2차원 구조의 나노소재에 대한 관심이 급증하면서 육각형의 질화붕소(hexagonal boron nitride; h-BN) 나노시트(nanosheet)[1]나 붕소 탄화질화물(boron caronitride;BCN) 나노시트[2, 3]와 같은 2차원 구조체에 대한 연구가 활발히 진행되고 있다. 그 중 BCN은 반금속(semimetal)인 흑연(graphite)과 절연체인 h-BN이 결합된 나노시트로 원소의 구성 비율에 따라 전기적 특성을 제어할 수 있다는 장점이 있다. 따라서 다양한 나노소자로의 응용을 위한 연구가 활발히 진행되고 있다. 본 연구에서는 열 화학기상증착법(thermal chemical vapor deposition)을 이용하여 폴리스틸렌(polystyrene)과 보레인 암모니아(borane ammonia)를 사용하여 BCN 나노시트를 합성하였다. 합성된 BCN 나노시트의 구조적 특징과 화학적 조성 및 결합 상태를 주사전자현미경(scanning electron microscopy), 투과전자현미경(transmission electron microscopy), X-선 광전자 분광법(X-ray photoelectron spectroscopy), 라만 분광법(Raman spectroscopy)을 통해 조사하였고, 이온성 용액법 (ionic liquid)[4]을 이용하여 전계효과 특성을 측정하였다.

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Synthesis and Oxidative Catalytic Property of Ruthenium-doped Titanate Nanosheets (루테늄이 도입된 티타네이트 나노시트의 합성 및 산화 촉매 활성 연구)

  • Lee, Yoonhee;Kwon, Ki-Young
    • Applied Chemistry for Engineering
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    • v.28 no.5
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    • pp.593-596
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    • 2017
  • Sodium titanate nanosheets were prepared by a hydrothermal synthesis method under basic conditions. Ruthenium was introduced on the surface of sodium titanate nanosheets through an UV irradiation in the aqueous $RuCl_3$ solution. The crystal phase and morphology of synthesized samples were analyzed by X-ray diffraction, transmission electron microscopy and energy dispersive spectroscopy. In addition, the content of Ru was evaluated by inductively coupled plasma. It was proposed that a monomeric form of ruthenium was incorporated on the surface of sodium titanate. Ruthenium incorporated sodium titanates were applied to alcohol oxidation using molecular oxygen as an oxidant. The sample with 7% ruthenium showed a catalytic activity with a turnover frequency value of $2.1h^{-1}$ in oxidizing benzyl alcohol to benzaldehyde without any other byproducts at $105^{\circ}C$ and 1 atmosphere.

The synthesis of ultrathin Nb-doped TiOx nanosheets (초박막 두께의 Nb-TiOx 나노시트 합성)

  • Lee, Sang Eun;Seo, Jun;Park, Hee Jung
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.30 no.5
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    • pp.194-199
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    • 2020
  • By controlling the composition of the metal-oxide nanosheet having a two-dimensional layered crystal structure, material properties and application can be extended. In this study, the composition of the nanosheet could be expanded from pure composition to doping composition by successfully synthesizing the TiO2 nanosheet doped with Nb. Specifically, the doping composition was designed when synthesizing the layered metal oxide as a starting material (K0.8Ti1.73-xNbxLi0.27O4, x = 0, 0.03, 0.07) and chemical exfoliation was performed. By doing this, it was possible to obtain the Nb-doped TiOy ultrathin nanosheet. The size of the nano sheet was 2 ㎛ or less based on the long length in the x-y direction, and the thickness was about 1 nm. Nb-doping was confirmed by XRD and SEM-EDS analysis.

Synthesis of carbon nanosheets using RF thermal plasma (유도 열플라즈마를 이용한 카본나노시트 합성)

  • Lee, Seung-Yong;Ko, Sang-Min;Koo, Sang-Man;Hwang, Kwang-Taek;Han, Kyu-Sung;Kim, Jin-Ho
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.24 no.5
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    • pp.207-212
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    • 2014
  • An ultrathin sheet-like carbon nanostructure provides an important model of a two-dimensional graphite structure with strong anisotropy in physical properties. As an easy and cheap route for mass production, RF thermal plasma synthesis of freestanding carbon nanosheet from $CH_4$ (Methane) and $C_3H_8$ (Propane) is presented. Using vapor synthesis process with RF inductively thermal plasma, carbon nanosheets were obtained without catalysts and substrates. The synthesized carbon nanosheets were characterized using transmission electron microscopy (TEM), Raman spectroscopy, X-ray diffraction (XRD) and Brunauer-Emmett-Teller (BET) analysis. The carbon nanosheets synthesized using methane and propane generally showed 5~6 and 15~16 layers with a wrinkled morphology and size of approximately 100 nm.

Sintering prevention of Ag by the addition of 2-dimensional nanosheet (2차원 구조 나노시트의 첨가를 통한 Ag의 치밀화 방지)

  • Lee, Sang Eun;Park, Hee Jung
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.32 no.2
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    • pp.51-54
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    • 2022
  • The physical properties of the noble metal current-collector used for fuel cells are greatly influenced by the material porosity. Therefore, increasing the porosity of the material studies has attracted much attention. One of the most representative strategies is to use porosity additives in sintering materials. The conventional porosity additive had a threedimensional structure of a spherical powder. In this study, porosity additive with 2-dimensional (2D) nanosheet was used to decrease the sintering density of Ag current-collector and its effect was confirmed. As a 2D layered structure material, 1 nm-thick RuO2 nanosheets were used as porosity additives.

Growth of Tin Dioxide Nanostructures on Chemically Synthesized Graphene Nanosheets (화학적으로 합성된 그래핀 나노시트 위에서의 이산화주석 나노구조물의 성장)

  • Kim, Jong-IL;Kim, Ki-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.5
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    • pp.81-86
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    • 2019
  • Metal oxide/graphene composites have been known as promising functional materials for advanced applications such as high sensitivity gas sensor, and high capacitive secondary battery. In this study, tin dioxide ($SnO_2$) nanostructures were grown on chemically synthesized graphene nanosheets using a two-zone horizontal furnace system. The large area graphene nanosheets were synthesized on Cu foil by thermal chemical vapor deposition system with the methane and hydrogen gas. Chemically synthesized graphene nanosheets were transferred on cleaned $SiO_2$(300 nm)/Si substrate using the PMMA. The $SnO_2$ nanostuctures were grown on graphene nanosheets at $424^{\circ}C$ under 3.1 Torr for 3 hours. Raman spectroscopy was used to estimate the quality of as-synthesized graphene nanosheets and to confirm the phase of as-grown $SnO_2$ nanostructures. The surface morphology of as-grown $SnO_2$ nanostructures on graphene nanosheets was characterized by field-emission scanning electron microscopy (FE-SEM). As the results, the synthesized graphene nanosheets are bi-layers graphene nanosheets, and as-grown tin oxide nanostructures exhibit tin dioxide phase. The morphology of $SnO_2$ nanostructures on graphene nanosheets exhibits complex nanostructures, whereas the surface morphology of $SnO_2$ nanostructures on $SiO_2$(300 nm)/Si substrate exhibits simply nano-dots. The complex nanostructures of $SnO_2$ on graphene nanosheets are attributed to functional groups on graphene surface.

Effect of The Addition of Various Cellulose Nanofibers on The Properties of Sheet of Paper Mulberry Bast Fiber (각종 셀룰로오스 나노섬유의 첨가가 닥나무 인피섬유 시트의 특성에 미치는 영향)

  • Han, Song-Yi;Park, Chan-Woo;Kim, Bo-Yeon;Lee, Seung-Hwan
    • Journal of the Korean Wood Science and Technology
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    • v.43 no.6
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    • pp.730-739
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    • 2015
  • Various cellulose nanofibers (CNF) with different morphology and chemical properties were prepared for the reinforcement of sheet of paper mulberry bast fiber. Lignocellulose nanofiber (LCNF), Holocellulose nanofiber (HCNF), alkali-treated HCNF (AT-HCNF), TEMPO-oxidated nanofiber (TEMPO-NF) and cellulose nanocrystal (CNF) were prepared and their addition effect on the properties of sheet of paper mulberry bast fiber were investigated. Air permeability, surface smoothness, and tensile properties were improved by increasing CNF addition. Its improvement may be due to the CNF deposited between and on paper mulberry bast fibers, which was confirmed by SEM observation.

Synthesis of Heteroatom-Carbon Nanosheets by Solution Plasma Process (솔루션 플라즈마를 이용한 이종 원소 카본 나노시트의 합성)

  • Hyeon, Gwang-Ryong;Jeong, Gwang-Hu;Park, Il-Cho;Lee, Jeong-Hyeong;Han, Min-Su;Kim, Seong-Jong;Saito, Nagahiro
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2018.06a
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    • pp.114-114
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    • 2018
  • 탄소 재료는 뛰어난 물성에서 다양한 재료로의 응용이 기대되고 있다. 특히, 이종 원소 함유 카본 재료는 전기적 특성과 촉매성의 발현 등 새로운 기능을 카본 재료에 부여할 수 있어서 연료 전지, 에너지 저장, 태양 전지 등에의 응용이 기대되고 있다. 최근, 용액 중의 저온 플라즈마인 솔루션 플라즈마(solution plasma process)를 이용하여 벤젠 용액 등에서 탄소 재료 합성에 성공하였다. 그러나 기존의 연구에서는 솔루션 플라즈마 프로세스를 이용하여 합성한 이종원소 카본은 전도성이 낮아 이종원소의 함유량을 낮추는 고온의 열처리가 필요했다. 따라서 본 연구에서는 우수한 물리적 전기적 특성을 갖는 그래핀(graphene)과 같은 이종 원소 카본 나노시트(heteroatom carbon nanosheets)의 합성 및 메커니즘(mechanism)에 대해 검토하였다. 다양한 이종원소를 포함한 유기용매 안에 바이폴라 펄스 전원에 의한 전압을 두 텅스텐 전극 간에 인가하고, 솔루션 플라즈마를 생성하여 이종원소 카본 재료를 합성했다. 플라즈마 생성은 텅스텐 봉을 전극으로 사용하고 전압을 2.0 kV, 펄스 주파수를 200 kHz, 펄스 폭을 $1.0{\mu}s$, 전극 간 거리를 1.5 mm에서 일정하게 유지하며 200 mL 유기용매 중에서 방전시키는 것으로 재료를 합성했다. 플라즈마 방전 후, 필터을 이용하여 흡인 여과한 뒤 $200^{\circ}C$에서 1 시간 동안 건조 시켰다. 건조 후의 이종원소 카본의 물리적 특성을 원소 분석, X선 회절 법(XRD), 저항률 측정, 투과형 전자 현미경(TEM) 및 라만 분광법, 전자 현미경(SEM), X-선광전자분광기(XPS)등을 이용하여 카본의 형상 및 특성을 분석하였다. 그 결과 다양한 이종원소를 포함한 유기용매 중 2-pyrrolidone을 사용했을 때, 이종 원소 카본 나노시트를 합성하는데 성공하였다. 또한, 이 연구방법을 통해서 솔루션 플라즈마 프로세스를 통한 카본 나노시트 합성의 메커니즘을 규명하였다.

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Electrochemical Characteristics of High Capacity Anode Composites Using Silicon and CNT for Lithium Ion Batteries (실리콘과 CNT를 사용한 리튬 이온 전지용 고용량 음극복합소재의 전기화학적 특성)

  • Lee, Tae Heon;Lee, Jong Dae
    • Korean Chemical Engineering Research
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    • v.60 no.3
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    • pp.446-451
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    • 2022
  • In this study, to improve capacity and cycle stability, the pitch coated nano silicon sheets/CNT composites were prepared through electrostatic bonding of nano silicon sheets and CNT. Silica sheets were synthesized by hydrolyzing TEOS on the crystal planes of NaCl, and then nano silicon sheets were prepared by using magnesiothermic reduction method. To fabricate the nano silicon sheets/CNT composites, the negatively charged CNT after the acid treatment was used to assemble the positively charged nano silicon sheets modified with APTES. THF as a solvent was used in the coating process of PFO pitch. The physical properties of the prepared anode composites were analysed by FE-SEM, XRD and EDS. The electrochemical performances of the synthesized anode composites were performed by current charge/discharge, rate performances, differential capacity and EIS tests in the electrolyte LiPF6 dissolve solvent (EC:DMC:EMC = 1:1:1 vol%). It was found that the anode material with high capacity and stability could be synthesized when high composition of silicon and conductivity of CNT were used. The pitch coated nano silicon sheets/CNT anode composites showed initial discharge capacity of 2344.9 mAh/g and the capacity retention ratio of 81% after 50 cycles. The electrochemical property of pitch coated anode material was more improved than that of the nano silicon sheets/CNT composites.

Theoretical Investigation for the Adsorption of Atmospheric Harmful Gases on the Germanene Sheet (게르마닌 시트의 대기오염 기체 흡착에 대한 이론적 연구)

  • Seo, Hyun-Il;Kim, DongHyun;Baek, SooJin;Shin, ChangHo;Kim, SeungJoon
    • Journal of the Korean Chemical Society
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    • v.64 no.6
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    • pp.334-344
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    • 2020
  • The adsorption of various atmospheric harmful gases (COx, NOx, SOx) on graphene-like Germanene 2D sheet was theoretically investigated using density functional theory(DFT) method. The structures were fully optimized at the B3LYP/cc-pvDZ and CAM-B3LYP/cc-pvDZ levels of theory and confirmed to be a local minimum by the calculation of the harmonic vibrational frequencies. The adsorptions of gases on the Germanene sheet were predicted to be a physisorption process for CO, CO2, NO, and SO2 gases but to be a chemisorption process for NO2, SO, and SO2 gases.