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REVIEWS

Development of Polypropylene Nanofiber Production System

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Pages 288-308 | Received 17 Apr 2011, Accepted 31 May 2011, Published online: 11 Aug 2011

References

  • Natta , G. and Corradini , P. 1960 . Structure and properties of isotactic polypropylene . IL NUOVO CIMENTO , 15 : 40 – 51 .
  • Raab , M. , Kotek , J. , Baldrian , J. and Grellmann , W. 1998 . Toughness profile in injection-molded polypropylene: The effect of the b-modification . J. Appl. Polym. Sci , 69 : 2255 – 2259 .
  • Valentini , L. , Biagiotti , J. , Kenny , J. M. and Santucci , S. 2003 . Morphological characterization of single-walled carbon nanotubes-PP composites . Compos. Sci. Technol , 63 : 1149 – 1153 .
  • O’Hare , L. A. , Leadley , S. and Parbhoo , B. 2002 . Surface physicochemistry of corona-discharge-treated polypropylene film . Surf. Interface Anal. , 33 : 335 – 342 .
  • Banthia , N. and Gupta , R. 2006 . Influence of polypropylene fiber geometry on plastic shrinkage cracking in concrete . Chem. Concr. Res. , 36 : 1263 – 1267 .
  • Nakata , K. , Fujii , K. , Ohkoshi , Y. , Gotoh , Y. , Nagura , M. , Numata , M. and Kamiyama , M. 2007 . Poly(ethylene terephthalate) nanofibers made by sea–island-type conjugated melt spinning and laser-heated flow drawing . Macromol. Rapid Commun , 28 : 792 – 795 .
  • Bansal , V. and Shambaugh , R. L. 1998 . On-line determination of diameter and temperature during melt blowing of polypropylene . Ind. Eng. Chem. Res. , 37 : 1799 – 1806 .
  • Formhals , A. “Process and Apparatus for Preparing Artificial Threads.” , US 1975 504, 1934 .
  • Lee , K. H. , Ohsawa , O , Watanabe , K. , Kim , I. S. , Givens , S. R. , Chase , B. and Rabolt , J. F. 2009 . Electrospinning of Syndiotactic polypropylene from a polymer solution at ambient temperatures . Macromolecules , 42 : 5215 – 5218 .
  • Ohsawa , O. , Lee , K. H. , Kim , B. S. , Lee , S. and Kim , I.S. 2010 . Preparation and characterization of polyketone (PK) fibrous membrane via electrospinning . Polymer , 51 : 2007 – 2012 .
  • Park , J. C. , Ito , T. , Kim , K. O. , Kim , K. W. , Kim , B. S. , Khil , M. S. , Kim , H. Y. and Kim , I. S. 2010 . Electrospun poly(vinyl alcohol) nanofibers: effects of degree of hydrolysis and enhanced water stability . Polym. J. , 42 : 273 – 276 .
  • Wei , K. , Ohta , T. , Kim , B. S. , Kim , K. W. , Lee , K. H. , Khil , M. S. , Kim , H. Y. and Kim , I. S. 2010 . Development of electrospun metallic hybrid nanofibers via metallization . Polym. Adv. Technol. , 21 : 746 – 751 .
  • Ohta , T. , Ito , T. , Shimizu , M. , Tauchi , L. , Nguyen-Tran , H. D. , Park , J. C. , Kim , B. S. , Kim , I. S. and Ohta , K. 2010 . Development of novel synthetic method of carbon nanotubes from electrospun polystyrene fibers by using microwave heating . Polym. Adv. Technol. , doi: 10.1002/pat.1723.
  • Wei , K. , Xia , J. H. , Kim , B. S. and Kim , I. S. 2010 . Multiwalled carbon nanotubes incorporated bombyx mori silk nanofibers by electrospinning . J. Polym. Res. , 18 : 579 – 585 .
  • Huang , Z. M. , Zhang , Y. Z. , Kotaki , M. and Ramakrishna , S. 2003 . A review on polymer nanofibers by electrospinning and their applications in nanocomposites . Compos. Sci. Technol. , 63 : 2223 – 2253 .
  • Subbiah , T. , Bhat , G. S. , Tock , R. W. , Parameswaran , S. and Ramkumar , S. S. 2005 . Electrospinning of nanofibers . J. Appl. Polym. Sci. , 96 : 557 – 569 .
  • Kim , K. O. , Seo , Y. A. , Kim , B. S. , Yoon , K. J. , Khil , M. S. , Kim , H. Y. and Kim , I. S. 2011 . Transition behaviors and hybrid nanofibers of poly(vinyl alcohol) and polyethylene glycol-POSS telechelic blends . Colloid Polym. Sci , 289 : 863 – 870 .
  • Wei , K. , Li , Y. , Kim , K. O. , Nakagawa , Y. , Kim , B. S. , Abe , K. and Kim , I. S. 2011 . Fabrication and osteoblastic behavior of nano-hydroxyapatite on electrospun silk fibroin composite scaffolds . J. Biomed. Mater. Res. Part A , 97 ( 3 ) : 272 – 280 .
  • Kim , C. K. , Kim , B. S. , Sheikh , F. A. , Lee , U. S. , Khil , M. S. and Kim , H. Y. 2007 . Amphiphilic poly(vinyl alcohol) (PVA) hybrids and electrospun nanofibers incorporating polyhedral oligosilsesquioxane (POSS) . Macromolecules , 40 : 4823 – 4828 .
  • Reneker , D. H. and Chun , L. 1996 . Nanometer diameter fibers of polymer produced by electrospinning . Nanotechnology , 7 : 216 – 223 .
  • Gopal , R. , Kaur , S. , Ma , Z. , Chan , C. , Ramakrishna , S. and Matsuura , T. 2006 . Electrospun nanofibrous filtration membrane . J. Membr. Sci. , 281 : 581 – 586 .
  • Gibson , P , Schreuder-Gibson , H. and Rivin , D. 2001 . Transport properties of porous membranes based on electrospun nanofibers . Colloid Surf. A-Physicochem. Eng. Asp , 187–188 : 469 – 481 .
  • Gibson , H. S , Gibson , P , Senecal , K , Sennett , M , Walker , J , Yeomans , M , Ziegler , D and Tsai , P. P. 2002 . Protective textile materials based on electrospun nanofibers . J. Adv. Mater. , 3 : 44 – 55 .
  • Bergshoef , M. M. and Vancso , G. J. 1999 . Transparent nanocomposites with ultrathin, electrospun nylon-4,6 fiber reinforcement . Adv. Mater. , 11 : 1362 – 1365 .
  • Yang , J , Yu , J , Fan , J , Sun , D , Tang , W and Yang , X . 2011 . Biotemplated preparation of CdS nanoparticles/bacterial cellulose hybrid nanofibers for photocatalysis application . J. Haz. Mater. , 189 : 377 – 383 .
  • Ding , B , Wang , M , Wang , X , Yu , J and Sun , G. 2010 . Electrospun nanomaterials for ultrasensitive sensors . Mater. Today , 13 : 16 – 27 .
  • Zong , X. , Kim , K. S. , Fang , D. , Ran , S. , Hsiao , B. S. and Chu , B. 2002 . Structure and process relationship of electrospun bioabsorbable nanofiber membranes . Polymer , 43 : 4403 – 4412 .
  • Sill , T. J and Recum , H. A. V. 2008 . Electrospinning: Application in drug delivery and tissue engineering . Biomaterials , 29 : 1989 – 2006 .
  • Xu , C. Y , Inai , R , Kotaki , M and Ramakrishna , S. 2004 . Aligned biodegradable nanofibrous structure: a potential scaffold for blood vessel engineering . Biomaterials , 25 : 877 – 886 .
  • Moore , E. P. 1996 . “ Polypropylene Handbook ” . In Polymerization, Characterization, Properties, Process, Applications , Cincinnati, OH : Hanser-Gardner Publications .
  • Lee , K.H. , Snively , C. M. , Givens , S. , Chase , D. B. and Rabolt , J.F. 2007 . Time-dependent transformation of an electrospun isotactic poly(1-butene) fibrous membrane . Macromolecules , 40 : 2590 – 2595 .
  • Lee , K. H. , Givens , S. , Chase , D. B. and Rabolt , J. F. 2006 . Electrostatic polymer processing of isotactic poly(4-methyl-1-pentene) fibrous membrane . Polymer , 47 : 8013 – 8018 .
  • Lyons , J. , Li , C. and Ko , F. 2004 . Melt-electrospinning part I: Processing parameters and geometric properties . Polymer , 45 : 7597 – 7603 .
  • Ellison , C. J. , Phatak , A. , Giles , D. W. , Macosko , C. W. and Bates , F. S. 2007 . Melt blown nanofibers: Fiber diameter distributions and onset of fiber breakup . Polymer , 48 : 3306 – 3316 .
  • Qin , X. H. , Wan , Y. Q. , He , J. H. , Zhang , J. , Yu , J. Y. and Wang , S. Y. 2004 . Effect of LiCl on electrospinning of PAN polymer solution: Theoretical analysis and experimental verification . Polymer , 45 : 6409 – 6413 .
  • Li , D. , Wang , Y. and Xia , Y. 2003 . Electrospinning of polymeric and ceramic nanofibers as uniaxially aligned arrays . Nano Lett. , 3 : 1167 – 1171 .
  • Teo , W. E. , Kotaki , M. , Mo , X. M. and Ramakrishna , S. 2005 . Porous tubular structures with controlled fiber orientation using a modified electrospinning method . Nanotechnology , 16 : 918 – 924 .
  • Katta , P. , Alessandro , M. , Ramsier , R. D. and Chase , G. G. 2004 . Continuous electrospinning of aligned polymer nanofibers onto a wire drum collector . Nano Lett. , 4 : 2215 – 2218 .
  • Kameoka , J. , Orth , R. , Yang , Y. , Czaplewski , D. , Mathers , R. , Coates , G. W. and Craighead , H. G. 2003 . A scanning tip electrospinning source for deposition of oriented nanofibers . Nanotechnology , 14 : 1124 – 1129 .
  • Li , D. , Wang , Y. and Xia , Y. 2004 . Electrospinning nanofibers as uniaxially aligned arrays and layer-by-layer stacked films . Adv. Mater. , 16 : 361 – 366 .
  • Yang , Q. , Li , Z. , Hong , Y. , Zhao , Y. , Qiu , S. , Wang , C. and Wei , Y. 2004 . Influence of solvents on the formation of ultrathin uniform poly(vinyl pyrrolidone) nanofibers with electrospinning . J. Polym. Sci. Pt. B—Polym. Phys. , 42 : 3721 – 3726 .
  • Veleirinho , B. , Rei , M. F. and Lopes-da-silva , J. A. 2008 . Solvent and concentration effects on the properties of electrospun poly(ethylene terephthalate) nanofiber mats . J. Polym. Sci. Pt. B—Polym. Phys. , 46 : 460 – 471 .
  • Huang , L. , McMillan , R. A. , Apkarian , R. P. , Pourdeyhimi , B. , Conticello , V. P. and Chaikof , E. L. 2000 . Generation of synthetic elastin-mimetic small diameter fibers and fiber networks . Macromolecules , 33 : 2989 – 2997 .
  • Alger , M. 1997 . Polymer Science Dictionary , 2nd ed. , London : Chapman & Hall .
  • De Rosa , C. and Auriemma , F. 2006 . Structure and physical properties of syndiotactic polypropylene: A highly crystalline thermoplastic elastomer . Prog. Polym. Sci , 31 : 145 – 237 .
  • De Rosa , C. , Auriemma , F. and Vinti , V. 1997 . Disordered polymorphic modifications of Form I of syndiotactic polypropylene . Macromolecules , 30 : 4137 – 4146 .
  • Vittoria , V. , Guadagno , L. , Comotti , A. , Simonutti , R. , Auriemma , F. and De Rosa , C. 2000 . Mesomorphic form of syndiotactic polypropylene . Macromolecules , 33 : 6200 – 6204 .
  • Guadagno , L. , Naddeo , C. , Vittoria , V. and Meille , S. V. 2005 . Temperature and orientation induced polymorphic behavior of syndiotactic polypropylene . Macromolecules , 38 : 8755 – 8764 .
  • Ma , W. , Yu , J. , He , J. and Wang , D. 2007 . Stability of form II of syndiotactic polypropylene confirmed by cold and melt crystallization in supercritical carbon dioxide . Polymer , 48 : 1741 – 1748 .
  • Guadagno , L. , D’Aniello , C. , Naddeo , C. and Vittoria , V. 2001 . Structure and physical properties of syndiotactic polypropylene oriented from different polymorphs . Macromolecules , 34 : 2512 – 2521 .
  • De Rosa , C. , De Ballesteros , O. R. , Auriemma , F. and Savarese , R. 2005 . Polymorphic transitions induced by annealing in stretched fibers of syndiotactic polypropylene . Macromolecules , 38 : 4791 – 4798 .
  • Sevegney , M. S. , Kannan , R. M. , Siedle , A. R. , Naik , R. and Naik , V. M. 2006 . Vibrational spectroscopic investigation of stereoregularity effects on syndiotactic polypropylene structure and morphology . Vib. Spectrosc. , 40 : 246 – 256 .
  • Christopher , J. E. , Alhad , P. , David , W. G. , Christopher , W. M. and Frank , S. B. 2007 . Melt blown nanofibers: Fiber diameter distributions and onset of fiber breakup . Polymer , 48 : 3306 – 3316 .
  • Grafe , T. and Graham , K. 2003 . Fiber formation during melt blowing . International Nonwovens Journal , 12 : 21 – 28 .
  • Zhang , Y. , Lim , C. T. , Ramakrishna , S. and Huang , Z. M. 2005 . Recent development of polymer nanofibers for biomedical and biotechnological applications . J. Mater. Sci. Mater. Med. , 16 : 933 – 946 .
  • Zhou , F. L. and Gong , R. H. 2008 . Manufacturing technologies of polymeric nanofibres and nanofibre yarns . Polym. Int , 57 : 837 – 845 .
  • Watanabe , K. , Nakamura , T. , Kim , B. S. and Kim , I. S. 2011 . Preparation and characteristics of electrospun polypropylene fibers: Effect of organic solvents . Advanced Materials Research , 175 : 337 – 340 .
  • Kim , I. S. , Enomoto , Y. and Takahashi , T. 2009 . Mechanical characteristic evaluation test of ultrafiner fibers . Seni Gakkaishi , 65 : 325 – 327 .
  • Kim , H. R. , Ito , T. , Kim , B. S. , Watanabe , Y. and Kim , I. S. 2011 . Mechanical properties, morphologies, and microstructures of novel electrospun metallized nanofibers . Adv. Eng. Mater , 13 ( 5 ) : 376 – 382 .
  • Dalton , P. D. , Grafahrend , D. , Klinkhammer , K. , Klee , D. and Möller , M. 2007 . Electrospinning of polymer melts: Phenomenological observations . Polymer , 48 : 6823 – 6833 .
  • Varesano , A , Carletto , R. A. and Mazzuchetti , G. 2009 . Experimental investigations on the multi-jet electrospinning process . J. Mater. Process. Technol. , 209 : 5178 – 5185 .
  • Qin , X. H. , Wan , Y. Q. , He , J. H. , Zhang , J. , Yu , J. Y. and Wang , S. Y. 2004 . Effect of LiCl on electrospinning of PAN polymer solution: theoretical analysis and experimental verification . Polymer , 45 : 6409 – 6413 .
  • Machado , G. , Kinast , E. J. , Scholten , J. D. , Thompson , A. , De Vargas , T. , Teixeira , S. R. and Samios , D. 2009 . Morphological and crystalline studies of isotactic polypropylene plastically deformed and evaluated by small-angle X-ray scattering, scanning electron microscopy and X-ray diffraction . Eur. Polym. J. , 45 : 700 – 713 .
  • Watanabe , K. , Nakamura , T. , Kim , B.S. , Enomoto , Y. and Kim , I. S. 2011 . Fabrication of uniaxially aligned syndiotactic polypropylene nanofibers via sample handspinning . Macromol. Mater. Eng. , 296 : 568 – 593 .
  • Knaul , J. , Hooper , M. , Chanyi , C. and Creber , K. A. M. 1998 . Improvements in the drying process for wet-spun chitosan fibers . J. Appl. Polym. Sci. , 69 : 1435 – 1444 .
  • Gatos , K. G. , Kandilioti , G. , Galiotis , C. and Gregoriou , V. G. 2004 . Mechanically and thermally induced chain conformational transformations between helical form I and trans-planar form III in syndiotactic polypropylene using FT-IR and Raman spectroscopic techniques . Polymer , 45 : 4453 – 4464 .
  • Kimura , N. , Kim , H. K. , Kim , B. S. , Lee , K. H. and Kim , I. S. 2010 . Molecular orientation and crystalline structure of aligned electrospun nylon-6 nanofibers: effect of gap size . Macromol. Mater. Eng. , 295 : 1090 – 1096 .
  • Zhang , X. , Li , R. , Kong , L. and Wang , D. 2008 . Stress-induced structure transition of syndiotactic polypropylene via melt spinning . Polymer , 49 : 1350 – 1355 .

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