• 제목/요약/키워드: Electrospun nanofiber

검색결과 134건 처리시간 0.032초

항균성 PMMA 나노섬유 부직포의 제조 (Preparation of Antibacterial Nanofibrous PMMA Nonwoven Fabrics)

  • 김창남;싱즐챠이;백진영;배현수;강인규
    • 폴리머
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    • 제33권5호
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    • pp.429-434
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    • 2009
  • 본 연구에서는 PMMA의 전기 방사 조건을 자세히 조사하였다. 즉, DMF 및 THF를 용매로 하여 최적의 혼합비 및 농도를 조사하였다. 또한, 은을 첨가했을 때 용액의 전도성 및 섬유 직경에 대해 검토하였고, 얻어진 나노섬유 부직포의 항균성을 조사하였다. 그 결과 DMF와 THF가 7:3이며 18 wt%일 때 섬유형성능이 우수하였고, 은을 1000ppm 넣어 전기방사하였을 때 섬유 직경은 100-400 nm 이었다. 투과형 전자현미경으로 관찰한 결과 은 나노입자는 섬유의 테두리에 분포되어 있었으며, 이들은 그램 양성균 및 그램 음성균에 대해 높은 항균성을 나타내었다.

전기방사법을 이용한 고분자 나노섬유의 합성과 다중벽 탄소나노튜브의 혼합을 통한 물리적 강도 향상 (Reinforcing Polymer Nanofibers Through Incorporation of Multi-walled Carbon Nanotubes)

  • 이미현;송우석;김유석;장성원;최원철;박종윤
    • 한국진공학회지
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    • 제21권1호
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    • pp.41-47
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    • 2012
  • 본 연구에서는 전기방사법(electrospinning method)을 이용하여 다중벽 탄소나노튜브(multi-walled carbon nanotubes, MWCNTs)가 첨가된 polyacrylonitrile (PAN)과 poly (methyl methacrylate) (PMMA) 고분자 복합 나노섬유를 합성하였다. 합성 과정에서 고분자 물질의 농도와 인가전압의 변화가 나노섬유의 합성에 미치는 영향을 조사하여 최적화된 고분자 나노섬유 합성 조건을 확립하였다. 또한, MWCNTs의 첨가량의 변화에 따른 복합 나노섬유의 구조적 특징을 주사전자현미경(scanning electron microscopy)과 투과전자현미경(transmission electron microscopy)을 통해 분석하였으며, 기계적 강도를 조사하였다. 5 wt%의 MWCNTs가 첨가된 경우, 인장강도(tensile strength)와 영률(Young's modulus)이 PAN 복합 나노섬유는 500%, 27% 향상되었으며, PMMA 복합 나노섬유는 250%, 1,017% 향상된 것을 확인할 수 있었다.

다중벽 탄소 나노튜브가 분산된 Poly(methyl methacrylate) 고분자 용액의 전기방사연구 (Characteristics of Electrospun Poly(methyl methacrylate) Nanofibers Embedding Multi-Walled Carbon Nanotubes(MWNTs))

  • 김동욱;이대회;윤성식;이선애;남재도
    • 폴리머
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    • 제30권1호
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    • pp.90-94
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    • 2006
  • 다중벽 탄소 나노튜브(multi-walled carbon nanotubes, MWNTs)를 포함하고 있는 poly(methyl methacrylate)(PMMA) 나노섬유를 전기 방사법에 의해 제작하였다. 주사 전자 현미경을 통하여 용매의 종류(dimethyl formamide, chloroform and toluene)와 탄소 나노튜브의 함량(0.5 and $3.0\;wt\%$)에 의해 나노섬유 표면의 형상과 탄소 나노튜브와 나노섬유의 구조가 영향을 받았다. 집적판의 전극 모양을 조절함으로써 나노섬유의 정렬이 가능하였다. 고분자 사슬의 회전 반경과 탄소 나노튜브의 크기의 비교를 통하여 PMMA 나노섬유와 탄소 나노튜브의 관계를 정리하였다. 탄소 나노튜브 투입량이 증가함에 따라 고분자 비드가 증가하였다.

천연 향균물질 함유 나노섬유의 제조 및 특성분석 (Preparation and Characterization of Electrospun Nanofibers Containing Natural Antimicrobials)

  • 김영진;김상남;권오경;박미란;강인규;이세근
    • 폴리머
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    • 제33권4호
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    • pp.307-312
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    • 2009
  • 전기방사법으로 식물성 폴리페놀을 함유하는 PHBV 나노섬유를 제조하였으며, 얻어진 나노섬유의 평균직경은 340-450 nm였다. 폴리페놀의 첨가에 의해 나노섬유의 직경이 증가하였으며 폴리페놀의 첨가량도 나노섬유의 직경 변화에 영향을 미쳤다. 이는 PHBV와 폴리페놀 사이의 수소결합에 기인하는 것으로 확인되었다. 제조된 나노섬유를 이용한 ATR-FTIR 분석 결과 PHBV와 폴리페놀 사이에 수소결합이 존재하는 것을 확인할 수 있었고, XRD 분석 결과 폴리페놀의 첨가에 의해 PHBV 나노섬유의 결정성이 높아졌다. 이들 폴리페놀을 함유하는 나노섬유는 우수한 항균특성을 보였다.

코발트 페라이트 나노입자/탄소 나노섬유 복합전극 제조 및 슈퍼커패시터 특성평가 (Preparation of CoFe2O4 Nanoparticle Decorated on Electrospun Carbon Nanofiber Composite Electrodes for Supercapacitors)

  • 황혜원;육서연;정민식;이동주
    • 한국분말재료학회지
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    • 제28권6호
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    • pp.470-477
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    • 2021
  • Energy storage systems should address issues such as power fluctuations and rapid charge-discharge; to meet this requirement, CoFe2O4 (CFO) spinel nanoparticles with a suitable electrical conductivity and various redox states are synthesized and used as electrode materials for supercapacitors. In particular, CFO electrodes combined with carbon nanofibers (CNFs) can provide long-term cycling stability by fabricating binder-free three-dimensional electrodes. In this study, CFO-decorated CNFs are prepared by electrospinning and a low-cost hydrothermal method. The effects of heat treatment, such as the activation of CNFs (ACNFs) and calcination of CFO-decorated CNFs (C-CFO/ACNFs), are investigated. The C-CFO/ACNF electrode exhibits a high specific capacitance of 142.9 F/g at a scan rate of 5 mV/s and superior rate capability of 77.6% capacitance retention at a high scan rate of 500 mV/s. This electrode also achieves the lowest charge transfer resistance of 0.0063 Ω and excellent cycling stability (93.5% retention after 5,000 cycles) because of the improved ion conductivity by pathway formation and structural stability. The results of our work are expected to open a new route for manufacturing hybrid capacitor electrodes containing the C-CFO/ACNF electrode that can be easily prepared with a low-cost and simple process with enhanced electrochemical performance.

Characteristics of Photoresist-derived Carbon Nanofibers for Li-ion Full Cell Electrode

  • Kim, Hwan-Jun;Joo, Young-Hee;Lee, Sang-Min;Kim, Chang-Il
    • Transactions on Electrical and Electronic Materials
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    • 제15권5호
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    • pp.265-269
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    • 2014
  • Carbon nanofiber electrode has been fabricated for energy storage systems by the electrospinning of SU-8 precursor and subsequent pyrolysis. Various parameters including the applied voltage, the distance between syringe tip and target collector and the flow rate of the polymer affect the diameter of SU-8 electrospun nanofibers. Shrinkage during pyrolysis decreases the fiber diameter. As the pyrolysis temperature increases, the resistivity decreases dramatically. Low resistivity is one of the important characteristics of the electrodes of an energy storage device. Given the advantages of carbon nanofibers having high external surface area, electrical conductivity, and lithium intercalation ability, SU-8 derived carbon nanofibers were applied to the anode of a full lithium ion cell. In this paper, we studied the physical properties of carbon fiber electrode by scanning transmission microscopy, thermal gravimetric analysis, and four-point probe. The electrochemical characteristics of the electrode were investigated by cyclic voltammogram and electrochemical impedance spectroscopy plots.

Electrospun Magnetic Nanofiber as Multifunctional Flexible EMI-Shielding Layer and its Optimization on the Effectiveness

  • Yu, Jiwoo;Nam, Dae-Hyun;Lee, Young-Joo;Joo, Young-Chang
    • 마이크로전자및패키징학회지
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    • 제23권2호
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    • pp.57-63
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    • 2016
  • We developed a flexible and micro-thick electromagnetic interference (EMI) shielding nanofabric layer that also functions as a water resisting and heat sinking material. Electrospinning followed by a simple heat treatment process was carried on to produce the EMI-shielding Ni/C hybrid nanofibers. The ambient oxygen partial pressure ($pO_2$ = 0.1, 0.7, 1.3 Torr) applied during the heat treatment was varied in order to optimize the effectiveness of EMI-shielding by modifying the size and crystallinity of the magnetic Ni nanoparticles distributed throughout the C nanofibers. Permittivity and permeability of the nanofibers under the electromagnetic (EM) wave frequency range of 300 MHz~1 GHz were measured, which implied the EMI-shielding effectiveness (SE) optimization at $pO_2$ = 0.7 Torr during the heat treatment. The materials' heat diffusivity for both in-plane direction and vertical direction was measured to confirm the anisotropic thermal diffusivity that can effectively deliver and sink the local heat produced during device operations. Also, the nanofibers were aged at room temperature in oxygen ambient for water resisting function.

리그닌/PVA 나노섬유 웹의 수분 특성 및 생분해성 평가 (Water Absorption Properties and Biodegradability of Lignin/PVA Nanofibrous Webs)

  • 송유정;이은실;이승신
    • 한국의류학회지
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    • 제41권3호
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    • pp.517-526
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    • 2017
  • The biodegradation and water absorption properties of lignin/poly(vinyl alcohol) (PVA) nanofibrous webs are investigated. Lignin/PVA nanofibrous webs containing 0, 50, and 85wt% of lignin were prepared via an electrospinning process to observe the effect of the lignin concentration on the biodegradability and water absorption properties of lignin/PVA nanofibrous webs. The morphology of the materials was examined by field emission scanning electron microscopy (FE-SEM) and atomic force microscopy (AFM). To understand the wetting behavior and hydrophilic nature of the electrospun lignin/PVA nanofibrous webs, the water absorbency, contact angle, and water uptake were examined. The enzymatic degradation of lignin/PVA nanofibrous webs was investigated using laccase by measuring total organic carbon (TOC) concentration over a course of 50 days. Water drops were absorbed immediately into all of the specimens. The water uptake of lignin/PVA nanofibrous webs increased as the amount of PVA in the lignin/PVA hybrid webs increased. The enzymatic degradation experiment indicated that the inherent biodegradability of lignin was retained after its transformation into nanofibers. Our findings imply that blending these two types of polymers is promising because it can lead to the development of a new range of multifunctional materials such as antimicrobial absorbent nanotextiles based on sustainable biopolymers.

Electrospun Metal Oxide Composite Nanofibers Gas Sensors: A Review

  • Abideen, Zain Ul;Kim, Jae-Hun;Lee, Jae-Hyoung;Kim, Jin-Young;Mirzaei, Ali;Kim, Hyoun Woo;Kim, Sang Sub
    • 한국세라믹학회지
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    • 제54권5호
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    • pp.366-379
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    • 2017
  • Nanostructured materials have attracted considerable research interest over the recent decades because of their potential applications in nanoengineering and nanotechnology. On the other hand, the developments in nanotechnology are strongly dependent on the availability of new materials with novel and engineered morphologies. Among the novel nanomaterials reported thus far, composite nanofibers (NFs) have attracted considerable attention in recent years. In particular, metal oxide NFs have great potential for the development of gas sensors. Highly sensitive and selective gas sensors can be developed by using composite NFs owing to their large surface area and abundance of grain boundaries. In composite NFs, gas sensing properties can be enhanced greatly by tailoring the conduction channel and surface properties by compositional modifications using the synergistic effects of different materials and forming heterointerfaces. This review focuses on the gas sensing properties of composite NFs synthesized by an electrospinning (ES) method. The synthesis of the composite NFs by the ES method and the sensing mechanisms involved in different types of composite NFs are presented along with the future perspectives of composite NFs.

폴리아크릴로나이트릴 섬유를 기반으로 한 폐수에서의 중금속 이온 제거: 총설 (Removal of Heavy Metal Ions from Wastewater by Polyacrylonitrile based Fibers: A Review)

  • 오현영;이재훈;라즈쿠마 파텔
    • 멤브레인
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    • 제29권3호
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    • pp.123-129
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    • 2019
  • 가속화되는 산업화로 인해 중금속 이온의 침출이 환경문제로 떠오르고 있다. 수질 정화를 위한 몇 가지 방법 중 기능성 고분자 섬유를 이용한 흡착은 효율적이며 경제적이라는 장점이 있다. 특히, 폴리아크릴로나이트릴(polyacrylonitrile, PAN)은 금속 이온을 흡착할 수 있는 작용기가 많아 관심을 끌고 있다. PAN은 쉽게 전기방사를 통해 고분자 나노 섬유화될 수 있으며 높은 표면적을 가질 수 있다. 본 총설에서 다룰 복합 PAN 섬유는 폐수 처리를 위한 또 다른 유형의 고분자이다.