전기방사를 이용한 PLA/CNC 복합 매트의 기초 특성

논문상세정보
' 전기방사를 이용한 PLA/CNC 복합 매트의 기초 특성' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • cellulosenanocrystal
  • electrospunfibers
  • polylactic acid
  • tensile strength
  • thermal stability
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
299 0

0.0%

' 전기방사를 이용한 PLA/CNC 복합 매트의 기초 특성' 의 참고문헌

  • Science and engineering of electrospun nanofibers for advances inclean energy, water filtration, and regenerative medicine
    Ramakrishna, S. Journal of Materials Science 45 : 6283 ~ 6312 [2010]
  • Progress in the field of electrospinning for tissue engineering applications
    Agarwal, S. Advanced Materials 21 (32-33) : 3343 ~ 3351 [2009]
  • Preparation and characterization of electrospun PLA/nanocrystalline cellulose-Based composites
    Pirani, S. Applied Polymer Science 130 : 3345 ~ 3354 [2013]
  • Preparation and Characterization of Cellulose Nanofibril/Polyvinyl Alcohol Composite Nanofibers by Electrospinning
    박병대 목재공학 42 (2) : 119 ~ 129 [2014]
  • Poly(lactic acid)fiber : An overview
    Gupta, B. Progress in Polymer Science 32 (4) : 455 ~ 482 [2007]
  • Poly (ε-caprolactone) reinforced with fibres of poly (methyl methacry-late) loaded with multiwall carbon nanotubes or graphene nanoplatelets
    Lamastra, F. R. Chemical Engineering Journal 195 (1) : 140 ~ 148 [2012]
  • Natural micro andnanobio composites with enhanced barrier properties and novel functionalities for food biopackaging applications
    Maria, D. S. Trends in Food Science and Technology 21 : 528 ~ 536 [2010]
  • Nanotechnology for bioplastics : Oppor-tunities, challenges and strategies
    Jose, M. L. Trends in Food Science and Technology 22 : 611 ~ 617 [2011]
  • Nanofibrous mem-brane based tyrosinase biosensor for the detection of phenolic compounds
    Arecchi, A. Analytica Chimica Acta 659 : 133 ~ 136 [2010]
  • Nanocomposite fibers electrospun from poly(lactic acid)/cellulose nanocrystals
    Xiang, C. H. Journal of Biobased Materials and Bioenergy 3 (2) : 147 ~ 155 [2009]
  • Morphology and properties tuning of PLA/cellulose nanocrystals bionanocomposites by means of reactive functionalization and blending with PVAc
    Pracella, M. Polymer 55 : 3720 ~ 3728 [2014]
  • Industrial Upscaling of Electrospinning and Applications of Polymer Nanofibers : A Review
    Luana, P. Macromolecular Materials and Engineering 298 (5) : 504 ~ 520 [2013]
  • Fabrication, functionalization, and application of electrospun biopolymer nanofibers
    Kriegel, C. CriticalReviews in Food Science and Nutrition 48 : 775 ~ 797 [2008]
  • Electrospun poly(ε-caprolactone)-based composites using synthesized β-tricalcium phosphate
    Bianco, A. Polymers for Advanced Technologies 22 (12) : 1832 ~ 1841 [2011]
  • Electrospun nanofibrous structure : A novel scaffold for tissue engineering
    Li, W. J. Journal of Biomedical Materials Research 60 (4) : 613 ~ 621 [2002]
  • Electrospinning of nano/micro scale poly(l-lactic acid)aligned fibers and their potential in neural tissue engineering
    Yang, F. Biomaterials 26 (15) : 2603 ~ 2610 [2005]
  • Control of degradation rate and hydrophilicity in electrospun non-woven poly(D, L-lactide)nanofiber scaffolds for biomedical applications
    Kim, K. Biomaterials 24 (27) : 4977 ~ 4985 [2003]
  • Biopolymer based nanocomposites : comparing layered silicates and microcrystalline cellulose as nano reinforcement
    Petersson, L. Composites Science and Technology 66 : 2187 ~ 2196 [2006]
  • A facile technique toprepare biodegradable coaxial electrospun nanofibers for controlled release ofbioactive agents
    Jiang, H. Journal of Controlled Release 108 : 237 ~ 243 [2005]