• Title/Summary/Keyword: 나노소재필름

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A Study on Processing-Structure-Property Relationships of Extruded Carbon Nanomaterial-Polypropylene Composite Films (탄소나노튜브 및 그래핀 나노플레이트 폴리프로필렌 복합재 필름 압출 및 물성 평가)

  • Kim, Byeong-Joo;Deka, Biplab K.;Kang, Gu-Hyuk;Hwang, Sang-Ha;Park, Young-Bin;Jeong, In-Chan;Choi, Dong-Hyuk;Son, Dong-Il
    • Composites Research
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    • v.26 no.4
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    • pp.254-258
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    • 2013
  • Polypropylene films reinforced with multi-walled carbon nanotubes and exfoliated graphite nanoplatelets were fabricated by extrusion, and the effects of filler type and take-up speed on the mechanical properties and microstructure of composite films were investigated. Differential scanning calorimetry revealed that the addition of carbon nanomaterials resulted in increased degree of crystallinity. However, increasing the take-up speed reduced the degree of crystallinity, which indicates that tension-induced orientations of polymer chains and carbon nanomaterials and the loss of degree of crystallinity due to rapid cooling at high take-up speeds act as competing mechanisms. These observations were in good agreement with tensile properties, which are governed by the degree of crystallinity, where the C-grade exfoliated graphite nanoplatelet with a surface area of $750m^2/g$ showed the greatest reinforcing effect among all types of carbon nanomaterials used. Scanning electron microscopy was employed to observe the carbon nanomaterial dispersion and orientation, respectively.

나노카본를 이용한 기능성 필름 연구

  • Han, Jong-Hun;Sin, Gwon-U
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.110-110
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    • 2012
  • 탄소나노튜브와 그래핀 소재는 나노 스케일의 탄소를 대표하는 소재로서 전기적, 기계적인 특성이 뛰어나며, 화학적으로 안정하고, 환경 친화성을 가지고 있다. 탄소나노튜브의 경우 전기적으로 도체 및 반도체성을 가지고 있을 뿐만이 아니라 직경이 최소 1 nm 수준으로 종횡비 및 비표면적이 매우 큰 특성을 가지고 있어서 차세대 정보 전자소재, 고효율 에너지 소재, 고기능성 복합소재, 친환경 소재 등의 분야에서 많은 응용연구가 활발히 진행되고 있다. 그래핀의 경우 실리콘의 100배에 이르는 전하 이동도, 구리의 100배에 이르는 전류밀도를 가지며, 열전도도 및 내화학성이 뛰어나고 다양한 화학적 기능화가 가능할 뿐 아니라 뛰어난 유연성과 신축성을 보이면서 그래핀 자체의 물리화적 특성구명과 더불어 투명전극, 반도체, 에너지 전극, 구조체, 가스 베리어 등의 응용연구가 최근 활발히 진행되고 있다. 본 발표에서는 최근의 나노카본 기반의 투명전극 및 기체 차단 필름의 연구 개발동향 등에 대해 발표하고자 한다.

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Fabrication of nano texturing on the polymer surface for transmittance property (폴리머 기판상 나노 구조 형성을 통한 광특성 제어 연구)

  • Byeon, Eun-Yeon;Lee, Seung-Hun;Kim, Do-Geun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.87.2-87.2
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    • 2017
  • 폴리머 필름에 표면처리 및 코팅, 필름의 다층화, 원료 소재의 하이브리드화 등을 통해서 기능성을 부여한 기능성 고분자 필름은 디스플레이, 반도체, 자동차, 에너지, 포장재 등 다양한 분야에 응용되고 있다. 기능성 고분자 필름의 산업화를 위해 대면적 연속 공정기술 개발이 필요하며, 본 연구에서는 roll to roll 시스템을 이용하여 폴리머 기판상 나노 구조 형성을 위한 공정연구를 수행하였다. 재료연구소 자체 개발 선형이온소스는 0.25 keV에서 1 keV까지 에너지 조절이 용이하며, 이온빔 조사를 통해서 PET, PMMA, PDMS 등 다양한 폴리머 기판의 표면에 나노 구조화 공정을 개발하였다. 표면 나노 구조 형성을 통해서 폴리머 필름의 투과도와 Haze 제어가 가능하며, 공정 기술을 통해 저반사 및 고굴절 특성의 기능성 필름을 제작하였다. 이러한 나노 구조화 필름은 플렉서블 디스플레이의 광추출효율 향상을 위한 광추출층, 저반사 디스플레이 패널 필름 등에 적용 가능한 기술이다.

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Antimicrobial Chitosan-silver Nanocomposite Film Prepared by Green Synthesis for Food Packaging (녹색합성법에 기인한 식품포장용 키토산-은나노 항균 복합필름의 개발)

  • Kyung, Gyusun;Ko, Seonghyuk
    • Korean Journal of Food Science and Technology
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    • v.46 no.3
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    • pp.347-351
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    • 2014
  • We studied the green synthesis and antibacterial activity of chitosan-silver (Ag) nanocomposite films for application in food packaging. Green synthesis of Ag nanoparticles (AgNPs) was achieved by a chemical reaction involving a mixture of chitosan-silver nitrate ($AgNO_3$) in an autoclave at 0.1 MPa, $121^{\circ}C$, for 15-120 s. The formation of AgNPs in chitosan was confirmed by both UV-Visible spectrophotometry and transmission electron microscopy (TEM) and the effects of chitosan-$AgNO_3$ concentration and reaction time on the synthesis of AgNPs in chitosan were examined. The resulting chitosan-Ag composite films were characterized by various analytical techniques and their antibacterial activity was evaluated based on the formation of halo zones around films, indicating inhibition of the growth of Escherichia coli. A fourier-transform infrared (FTIR) spectroscopy analysis showed that free amino groups in chitosan acted as effective reductants and AgNP stabilizers. The composite films exhibited enhanced antibacterial activity with increasing Ag content on the surface of as-prepared composite films.

High Thermal Conductivity h-BN/PVA Composite Films for High Power Electronic Packaging Substrate (고출력 전자 패키지 기판용 고열전도 h-BN/PVA 복합필름)

  • Lee, Seong Tae;Kim, Chi Heon;Kim, Hyo Tae
    • Journal of the Microelectronics and Packaging Society
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    • v.25 no.4
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    • pp.95-99
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    • 2018
  • High thermal conductivity films with electrically insulating properties have a great potential for the effective heat transfer as substrate and thermal interface materials in high density and high power electronic packages. There have been lots of studies to achieve high thermal conductivity composites using high thermal conductivity fillers such alumina, aluminum nitride, boron nitride, CNT and graphene, recently. Among them, hexagonal-boron nitride (h-BN) nano-sheet is a promising candidate for high thermal conductivity with electrically insulating filler material. This work presents an enhanced heat transfer properties of ceramic/polymer composite films using h-BN nano-sheets and PVA polymer resins. The h-BN nano-sheets were prepared by a mechanical exfoliation of h-BN flakes using organic media and subsequent ultrasonic treatment. High thermal conductivities over $2.8W/m{\cdot}K$ for transverse and $10W/m{\cdot}K$ for in-plane direction of the cast films were achieved for casted h-BN/PVA composite films. Further improvement of thermal conductivity up to $13.5W/m{\cdot}K$ at in-plane mode was achieved by applying uniaxial compression at the temperature above glass transition of PVA to enhance the alignment of the h-BN nano-sheets.

Graphene Oxide/Polyimide Nanocomposites for Gas Barrier Applications (산화그래핀이 함유된 폴리이미드 나노복합막의 기체차단성 평가 및 활용)

  • Yoo, Byung Min;Lee, Min Yong;Park, Ho Bum
    • Membrane Journal
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    • v.27 no.2
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    • pp.154-166
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    • 2017
  • Polymeric films for gas barrier applications such as food packaging and electronic devices have attracted great interest due to their cheap, light and easy processability among gas barrier materials. Especially in electronic devices, extremely low gas permeance is necessary for maintaining the device performance. However, current polymeric barrier films still suffer from relatively high gas permeance than other materials. Therefore, there have been strong needs to enhance the gas barrier performance of polymeric barrier films while keep their own advantages. Recently, graphene is highlighted as a 2D-layered material for gas barrier applications. However, owing to the poor workability and difficulty to produce in engineering scale, graphene oxide (GO) is on the rise. GO consists of oxygen-containing functional groups on surface with intrinsic 2D-layered structure and high aspect ratio, and it can be well-dispersed in aqueous polar solvents like water, resulting in scalable mass production. Here, we prepared GO incorporated polyimide (PI) nanocomposites. PI is widely used barrier polymer with high mechanical strength and thermal and chemical stability. We demonstrated that PI/GO nanocomposites could perform as a gas barrier. Furthermore, surfactants (Triton X-100 (TX) and Sodium deoxycholate (SDC)) are introduced to enhance the gas barrier performance by improving the degree of dispersion of GO in PI matrix. As a result, TX enhanced the gas barrier performance of PI/GO nanocomposites which is similar to predicted value. This finding will provide new insight to polymer nanocomposites for gas barrier applications.

Stretchable nanowire/nanotube logic devices

  • Sin, Geon-Cheol;Park, Jae-Hyeon;Ha, Jeong-Suk
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.263-263
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    • 2010
  • 실제 옷처럼 입는 컴퓨터를 구현하거나 복잡하고 움직임이 많은 사람의 장기 등 생체에 이식 가능한 정보 전자 소자를 개발하려는 시도가 많이 이루어지고 있다. 현재는 기존의 반도체 공정과 실리콘 소재를 기반으로 연구 결과가 보고되고 있는데, 이는 소자 제작에 있어서 높은 공정 온도 등으로 인해 응용성이 제한되는 상황이다. 우리는 metal oxide 나노선과 단일벽 탄소나노튜브 (SWCNT)를 성장하여 각각 슬라이딩 전이법과 thermal tape 전이법을 이용하여 원하는 기판에 전이하고 소자를 제작하였다. metal oxide 나노선은 슬라이딩 전이를 통해 정렬된 상태로 패턴을 제작하였으며, SWCNT는 density 제어와 채널 크기 조정을 통해 반도체성 채널을 유도하여 소자 특성을 확보하였다. 또한 각 나노선의 전계효과소자와 SWCNT로 구성된 PMOS inverter를 유연한 고분자 필름기판위에 구현하고, 이를 스트레칭이 가능한 스테이지를 이용해 strain 대비 전기특성 변화를 분석하였다. 유연성이 좋은 나노선/나노튜브로 제작된 해당 소자는 전체 소자가 스트레칭이 가능할 수 있게 연결구조를 디자인하여 수십% 의 stain에도 각각의 전기특성이 유지되었다. 이처럼 스트레칭이 가능한 1차원 나노소재 소자는 그 유연성을 바탕으로 입는 옷처럼 구겨지거나 늘여지게 되는 다양한 스트레칭 상황에도 특성이 보장되어 미래 정보전자소자로 많은 응용이 가능할 것으로 예상된다.

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Implementation of IoT-based carbon-neutral modular smart greenhouse (IoT 기반 탄소중립 모듈형 스마트 온실 구현)

  • Seok-Keun Park;Kil-Su Han;Min-Soon Lee;Changsun Shin
    • Smart Media Journal
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    • v.12 no.5
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    • pp.36-45
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    • 2023
  • Recently, in digital agriculture, the types and utilization of greenhouses based on IoT are spreading, and greenhouses are being modernized, enlarged, and even factoryized using smart technology. However, a specific standardization plan has not been proposed according to the equipment for data collection in the smart greenhouse and the size or shape of the greenhouse. In other words, there is a lack of standard data for facility equipment, such as the type and number of sensors and equipment according to the size of the greenhouse, the type of greenhouse construction film and materials suitable for crops and carbon neutrality. Therefore, in this study, the suitability of the implementation, installation and quantity of IoT equipment for data collection was tested, and some standard technologies were presented through the implementation of data collection and communication methods. In addition, impact strength, tensile, tear, elongation, light transmittance, and lifespan issues for PE, PVC, and EVA, which account for about 90% of existing greenhouses, were presented, and the shape, size, and environmental problems of greenhouses made of films were presented. presented in the text. In this research paper, a standardized carbon-neutral modular smart greenhouse using nano-material film was implemented as a solution to environmental problems such as greenhouse size, farm crop type, greenhouse lifespan, and film, and its performance with existing greenhouses was analyzed and presented. Through this, we propose a modularized greenhouse that can be expanded or reduced freely without distinction in the size of the greenhouse or the shape of farmhouse crops, and the lifespan is extended and standardized. Finally, the average characteristics of greenhouses using existing PE, PVC, and EVA films and the characteristics of greenhouses using new carbon-neutral nanomaterials are compared and reviewed, and a plan to implement an expandable IoT greenhouse that supports carbon neutrality is proposed.

Hydrophobic Organic/Inorganic Composite Films with 3D Hierarchical Nanostructured Surfaces (3D 계층적 나노구조화된 표면을 갖는 소수성 유/무기 복합 필름)

  • Seo, Huijin;Ahn, Jinseong;Park, Junyong
    • Composites Research
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    • v.34 no.4
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    • pp.264-268
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    • 2021
  • In this study, we propose a method for fabricating hydrophobic coatings/films with three-dimensional (3D) hierarchical nanostructured organic/inorganic composite surfaces. An epoxy-based, large-area 3D ordered nanoporous template is first prepared through an advanced photolithography technique called Proximity-field nanoPatterning (PnP). Then, a hierarchically structured surface is generated by densely impregnating the template with silica nanoparticles with an average diameter of 22 nm through dip coating. Due to the coexisting micro- and nano-scale roughness on the surface, the fabricated composite film exhibits a higher contact angle (>137 degrees) for water droplets compared to the reference samples. Therefore, it is expected that the materials and processes developed through this study can be used in various ways in the traditional coating/film field.