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参考文献

[1]张俐娜.天然高分子改性材料及应用[M].北京:化学工业出版社,2006.

[2]KAPLAN D L. Biopolymers from renewable resources[M].Germany:Springer Berlin Heidelberg,1998.

[3]KIM C W,FREY M W,MARQUEZ M,et al. Preparation of submicron-scale,electrospun cellulose fibers via direct dissolution[J].Journal of Polymer Science Part B-Polymer Physics,2005,43(13):1673-1683.

[4]FRENOT A,HENRIKSSON M W,WALKENSTROM P. Electrospinning of cellulose-based nanofibers[J].Journal of Applied Polymer Science,2007,103(3):1473-1482.

[5]XU S S,ZHANG J,HE A H,et al. Electrospinning of native cellulose from nonvolatile solvent system[J].Polymer,2008,49(12):2911-2917.

[6]SUWANTONG O,RUKTANONCHAI U,SUPAPHOL P. Electrospun cellulose acetate fiber mats containing asiaticoside or Centella asiatica crude extract and the release characteristics of asiaticoside[J].Polymer,2008,49(19):4239-4247.

[7]TUNGPRAPA S,PUANGPARN T,WEERASOMBUT M,et al. Electrospun cellulose acetate fibers:effect of solvent system on morphology and fiber diameter[J].Cellulose,2007,14(6):563-575.

[8]LANCUSKI A,VASILYEV G,PUTAUX J L,et al. Rheological properties and electrospinnability of high-amylose starch in formic acid[J].Biomacromolecules,2015,16(8):2529-2536.

[9]KONG L,ZIEGLER G R. Fabrication of pure starch fibers by electrospinning[J].Food Hydrocolloids,2014,36:20-25.

[10]NIE H,HE A,ZHENG J,et al. Effects of chain conformation and entanglement on the electrospinning of pure alginate[J].Biomacromolecules,2008,9(5):1362-1365.

[11]MENDES A C,GORZELANNY C,HALTER N,et al. Hybrid electrospun chitosan-phospholipids nanofibers for transdermal drug delivery[J].International Journal of Pharmaceutics,2016,510(1):48-56.

[12]VRIEZE S D,WESTBROEK P,CAMP T V,et al. Electrospinning of chitosan nanofibrous structures:feasibility study[J].Journal of Material Science,2007,42(19):8029-8034.

[13]HK N,SW L,JM K,et al. Electrospinning of chitin nanofibers:degradation behavior and cellular response to normal human keratinocytes and fibroblasts[J].Biomaterials,2006,27(21):3934-3944.

[14]BARBER P S,GRIGGS C S,BONNER J R,et al. Electrospinning of chitin nanofibers directly from an ionic liquid extract of shrimp shells[J].Green Chemistry,2013,15(3):601-607.

[15]RITCHAROEN W,THAIYING Y,SAEJENG Y,et al. Electrospun dextran fibrous membranes[J].Cellulose,2008,15(3):435-444.

[16]BRENNER E K,SCHIFFMAN J D,THOMPSON E A,et al. Electrospinning of hyaluronic acid nanofibers from aqueous ammonium solutions[J].Carbohydrate Polymers,2012,87(1):926-929.

[17]CELEBIOGLU A,UYAR T. Electrospinning of nanofibers from non-polymeric systems:Electrospun nanofibers from native cyclodextrins[J].Journal of Colloid and Interface Science,2013,404:1-7.

[18]GOMES S R,RODRIGUES G,MARTINS G G,et al. In vitro and in vivo evaluation of electrospun nanofibers of PCL,chitosan and gelatin:A comparative study[J].Materials Science and Engineering C-Materials for Biological Applications,2015,46:348-358.

[19]ZHANG Y Z,VENUGOPAL J,HUANG Z M,et al. Crosslinking of the electrospun gelatin nanofibers[J].Polymer,2006,47(8):2911-2917.

[20]ELAMPARITHI A,PUNNOOSE A M,KURUVILLA S. Electrospun type 1 collagen matrices preserving native ultrastructure using benign binary solvent for cardiac tissue engineering[J].Artifical Cells and Nanomedicine Biotechnology,2016,44(5):1318-1325.

[21]RATH G,HUSSAIN T,CHAUHAN G,et al. Collagen nanofiber containing silver nanoparticles for improved wound-healing applications[J].Journal of Drug Targeting,2015,6:1.

[22]RNJAKKOVACINA J,WISE S G,LI Z,et al. Electrospun synthetic human elastin:collagen composite scaffolds for dermal tissue engineering[J].Acta Biomaterial,2012,8(10):3714-3722.

[23]ELAKKIYA T,MALARVIZHI G,RAJIV S,et al. Curcumin loaded electrospun Bombyx mori silk nanofibers for drug delivery[J].Polymer International.2014,63(1):100-105.

[24]CATTO V,FARÈ S,CATTANEO I,et al.Small diameter electrospun silk fibroin vascular grafts:Mechanical properties,in vitro biodegradability,and in vivo biocompatibility[J].Materials Science&Engineering C,2015,54:101-111.

[25]MOOMAND K,LIM L T. Properties of encapsulated fish oil in electrospun zein fibres under simulated in vitro conditions[J].Food&Bioprocess Technology,2015,8(2):431-444.

[26]BRAHATHEESWARAN D,MATHEW A,ASWATHY R G,et al. Hybrid fluorescent curcumin loaded zein electrospun nanofibrous scaffold for biomedical applications[J].Biomedical Materials,2012,7(4):045001.

[27]CASTROENR QUEZ D D,RAM REZWONG B,TORRESCH VEZ P I,et al. Preparation,characterization and release of urea from wheat gluten electrospun membranes[J].Materials,2012,5(12):2903.

[28]STEPHANSEN K B,GARC AD AZ M,JESSEN F,et al. Interactions between surfactants in solution and electrospun protein fibers effects on release behavior and fiber properties[J].Molecular Pharmaceutics,2016,13(3):748-755.

[29]GARCIA-MATEOS F J,CORDERO-LANZAC T,BERENGUER R,et al. Lignin-derived Pt supported carbon(submicron)fiber electrocatalysts for alcohol electro-oxidation[J].Applied Catalysis B-Environmental,2017,211:18-30.

[30]KIM J R,NETRAVALI A N. One-step toughening of soy protein based green resin using electrospun epoxidized natural rubber fibers[J].ACS Sustainable Chemistry and Engineering,2017,5(6):4957-4968.

[31]CALDERON M A R,ZHAO W Q. Applications of polymer nanofibers in bio-materials,biotechnology and biomedicine:a review[J].Tms 2014 Supplemental Proceedings,2014,401-414.

[32]LIANG D,HSIAO B S,CHU B. Functional electrospun nanofibrous scaffolds for biomedical applications[J].Advanced Drug Delivery Review,2007,59(14):1392-1412.

[33]LINDMAN B,KARLSTR M G,STIGSSON L. On the mechanism of dissolution of cellulose[J].Journal of Molecular Liquids,2010,156(1):76-81.

[34]ZHANG L F,MENKHAUS T J,FONG H. Fabrication and bioseparation studies of adsorptive membranes/felts made from electrospun cellulose acetate nanofibers[J].Journal of Membrane Science,2008,319(1-2):176-184.

[35]OHKAWA K. Nanofibers of cellulose and its derivatives fabricated using direct electrospinning[J].Molecules,2015,20(5):9139-9154.

[36]MIN B M,LEE S W,LIM J N,et al. Chitin and chitosan nanofibers:electrospinning of chitin and deacetylation of chitin nanofibers[J].Polymer,2004,45(21):7137-7142.

[37]PAKRAVAN M,HEUZEY M C,AJJI A. Core-shell structured peo-chitosan nanofibers by coaxial electrospinning[J].Biomacromolecules,2012,13(2):412-421.

[38]JEANNIE TAN Z Y,ZHANG X W. Influence of chitosan on electrospun pva nanofiber mat[J].Advanced Materials Research,2011,311:1763-1768.

[39]IGNATOVA M,MANOLOVA N,MARKOVA N,et al. Electrospun non-woven nanofibrous hybrid mats based on chitosan and PLA for wound-dressing applications[J].Macromolecular Bioscience,2010,9(1):102-111.

[40]PARK W H,JEONG L,DONG I Y,et al. Effect of chitosan on morphology and conformation of electrospun silk fibroin nanofibers[J].Polymer,2004,45(21):7151-7157.

[41]CHEN Z,MO X,QING F. Electrospinning of collagen-chitosan complex[J].Materials Letters,2007,61(16):3490-3494.

[42]SCHEIBEL T. Protein fibers as performance proteins:new technologies and applications[J].Current Opinion in Biotechnology,2005,16(4):427-433.

[43]NEO Y P,RAY S,EASTEAL A J,et al. Influence of solution and processing parameters towards the fabrication of electrospun zein fibers with sub-micron diameter[J].Journal of Food Engineering,2012,109(4):645-651.

[44]TORRESGINER S,GIMENEZ E,LAGARON J M. Characterization of the morphology and thermal properties of zein prolamine nanostructures obtained by electrospinning[J].Food Hydrocolloids,2008,22(4):601-614.

[45]KAYACI F,UYAR T. Electrospun zein nanofibers incorporating cyclodextrins[J].Carbohydrate Polymers,2012,90(1):558-568.

[46]NOSZCZYK B H,KOWALCZYK T,ŁYŻNIAK M,et al.Biocompatibility of electrospun human albumin:a pilot study[J].Biofabrication,2015,7(1):015011.

[47]TOMASULA P M,SOUSA A M M,LIOU S C,et al. Short communication:electrospinning of casein/pullulan blends for food-grade applications[J].Journal of Dairy Science,2016,99(3):1837-1845.

[48]丁彬,俞建勇.静电纺丝与纳米纤维[M].北京:中国纺织出版社,2011.

[49]LEE K H,KIM H Y,LA Y M,et al. Influence of a mixing solvent with tetrahydrofuran and N,N-dimethylformamide on electrospun poly(vinyl chloride)nonwoven mats[J].Journal of Polymer Science Part B-Polymer Physics,2002,40(19):2259-2268.

[50]MEDEIROS E S,MATTOSO L H C,OFFEMAN R D,et al. Effect of relative humidity on the morphology of electrospun polymer fibers[J].Revue Canadienne De Chimie,2008,86(6):590-599.

[51]HUTMACHER D W,DALTON P D. Melt electrospinning[J].Chemistry-An Asian Journal,2011,6(1):44-56.

[52]OGATA N,YAMAGUCHI S,SHIMADA N,et al. Poly(lactide)nanofibers produced by a melt‐electrospinning system with a laser melting device[J].Journal of Applied Polymer Science,2010,104(3):1640-1645.

[53]YOON Y I,PARK K E,LEE S J,et al. Fabrication of microfibrous and nano-/microfibrous scaffolds:melt and hybrid electrospinning and surface modification of poly(L-lactic acid)with plasticizer[J].BioMed Research International,2013,2013(2013):309048.

[54]ESFAHANI H,JOSE R,RAMAKRISHNA S. Electrospun ceramic nanofiber mats today:synthesis,properties,and applications[J].Materials,2017,10(11):1238.

[55]SHAO C L,KIM H,GONG J,et al. A novel method for making silica nanofibres by using electrospun fibres of polyvinylalcohol/silica composite as precursor[J].Nanotechnology,2002,13(5):635-637.

[56]CHOI S S,LEE S G,IM S S,et al. Silica nanofibers from electrospinning/sol-gel process[J].Journal of Materials Science Letters,2003,22(12):891-893.

[57]GU Y X,JIAN F F,WANG X. Synthesis and characterization of nanostructured Co3O4fibers used as anode materials for lithium ion batteries[J].Thin Solid Films,2008,517(2):652-655.

[58]LI Y,ZHAN S. Electrospun nickel oxide hollow nanostructured fibers[J].Journal of Dispersion Science and Technology,2009,30(2):246-249.

[59]CHEN Z,ZHANG Z,TSAI C C,et al. Electrospun mullite fibers from the sol-gel precursor[J].Journal of Sol-Gel Science and Technology,2015,74(1):208-219.

[60]DAI Y,LIU W,FORMO E,et al. Ceramic nanofibers fabricated by electrospinning and their applications in catalysis,environmental science,and energy technology[J].Polymers for Advanced Technologies,2011,22(3):326-338.

[61]JAMIL H,BATOOL S S,IMRAN Z,et al. Electrospun titanium dioxide nanofiber humidity sensors with high sensitivity[J].Ceramics International,2012,38(3):2437-2441.

[62]XUE J,XIE J,LIU W,et al. Electrospun nanofibers:new concepts,materials,and applications[J].Accounts of Chemical Research,2017,50(8):1976-1987.

[63]FORMO E,YAVUZ M S,LEE E P,et al. Functionalization of electrospun ceramic nanofibre membranes with noble-metal nanostructures for catalytic applications[J].Journal of Materials Chemistry,2009,19(23):3878-3882.

[64]WANG G,JI Y,HUANG X R,et al. Fabrication and characterization of polycrystalline WO3nanofibers and their application for ammonia sensing[J].Journal of Physical Chemistry B,2006,110(47):23777-23782.

[65]DING B,KIM C K,KIM H Y,et al. Titanium dioxide nanoribers prepared by using electrospinning method[J].Fibers and Polymers,2004,5(2):105-109.

[66]ZHANG Y,HE X,LI J,et al. Fabrication and ethanol-sensing properties of micro gas sensor based on electrospun SnO2nanofibers[J].Sensors and Actuators B-Chemical,2008,132(1):67-73.

[67]AB KADIR R,LI Z,SADEK A Z,et al. Electrospun granular hollow SnO2nanofibers hydrogen gas sensors operating at low temperatures[J].Journal of Physical Chemistry C,2014,118(6):3129-3139.

[68]PARK S J,CHASE G G,JEONG K U,et al. Mechanical properties of titania nanofiber mats fabricated by electrospinning of sol-gel precursor[J].Journal of Sol-Gel Science and Technology,2010,54(2):188-194.

[69]LI H,ZHANG W,LI B,et al. Diameter-dependent photocatalytic activity of electrospun TiO2nanofiber[J].Journal of the American Ceramic Society,2010,93(9):2503-2506.

[70]MAHAPATRA A,MISHRA B G,HOTA G. Synthesis of ultra-fine alpha-Al2O3fibers via electrospinning method[J].Ceramics International,2011,37(7):2329-2333.

[71]CUI Q Z,DONG X T,WANG J X,et al. Direct fabrication of cerium oxide hollow nanofibers by electrospinning[J].Journal of Rare Earths,2008,26(5):664-669.

[72]DING Y,WANG Y,SU L,et al. Electrospun Co3O4nanofibers for sensitive and selective glucose detection[J].Biosensors&Bioelectronics,2010,26(2):542-548.

[73]ZHENG W,LI Z Y,ZHANG H N,et al. Electrospinning route for alpha-Fe2O3ceramic nanofibers and their gas sensing properties[J].Materials Research Bulletin,2009,44(6):1432-1436.

[74]KIM H Y,VISWANATHAMURTHI P,BHATTARAI N,et al. Preparation and morphology of germanium oxide nanofibers[J].Reviews on Advanced Materials Science,2003,5(3):220-223.

[75]FAN Q,WHITTINGHAM M S. Electrospun manganese oxide nanofibers as anodes for lithium-ion batteries[J].Electrochemical and Solid State Letters,2007,10(3):A48-A51.

[76]LI S,SHAO C,LIU Y,et al. Nanofibers and nanoplatelets of MoO3via an electrospinning technique[J].Journal of Physics and Chemistry of Solids,2006,67(8):1869-1872.

[77]ARAVINDAN V,KUMAR P S,SUNDARAMURTHY J,et al. Electrospun NiO nanofibers as high performance anode material for Li-ion batteries[J].Journal of Power Sources,2013,227:284-290.

[78]BAN C,CHERNOVA N A,WHITTINGHAM M S. Electrospun nano-vanadium pentoxide cathode[J].Electrochemistry Communications,2009,11(3):522-525.

[79]WANG H G,MA D L,HUANG Y,et al. Electrospun V2O5Nanostructures with controllable morphology as high-performance cathode materials for lithium-ion batteries[J].Chemistry-A European Journal,2012,18(29):8987-8993.

[80]WANG G,JI Y,HUANG X,et al. Fabrication and characterization of polycrystalline WO3nanofibers and their application for ammonia sensing[J].Journal of Physical Chemistry B,2006,110(47):23777-23782.

[81]LENG J Y,XU X J,LV N,et al. Synthesis and gas-sensing characteristics of WO3nanofibers via electrospinning[J].Journal of Colloid and Interface Science,2011,356(1):54-57.

[82]REN H,DING Y,JIANG Y,et al. Synthesis and properties of ZnO nanofibers prepared by electrospinning[J].Journal of Sol-Gel Science and Technology,2009,52(2):287-290.

[83]SINGH P,MONDAL K,SHARMA A. Reusable electrospun mesoporous ZnO nanofiber mats for photocatalytic degradation of polycyclic aromatic hydrocarbon dyes in wastewater[J].Journal of Colloid and Interface Science,2013,394:208-215.

[84]SHAO C L,GUAN H Y,LIU Y C,et al. A novel method for making ZrO2nanofibres via an electrospinning technique[J].Journal of Crystal Growth,2004,267(1-2):380-384.

[85]FORMO E,CAMARGO P H C,LIM B,et al. Functionalization of ZrO2nanofibers with Pt nanostructures:The effect of surface roughness on nucleation mechanism and morphology control[J].Chemical Physics Letters,2009,476(1-3):56-61.

[86]LUO C J,STOYANOV S D,STRIDE E,et al. Electrospinning versus fibre production methods:from specifics to technological convergence[J].Chemical Society Reviews,2012,41(13):4708-4735.

[87]GE J,QU Y,CAO L,et al. Polybenzoxazine-based highly porous carbon nanofibrous membranes hybridized by tin oxide nanoclusters:durable mechanical elasticity and capacitive performance[J].Journal of Materials Chemistry A,2016,4(20):7795-7804.

[88]MAO X W,HATTON T A,RUTLEDGE G C. A review of electrospun carbon fibers as electrode materials for energy storage[J].Current Organic Chemistry,2013,17(13):1390-1401.

[89]RAHAMAN M S A,ISMAIL A F,MUSTAFA A. A review of heat treatment on polyacrylonitrile fiber[J].Polymer Degradation and Stability,2007,92(8):1421-1432.

[90]XUYEN N T,RA E J,GENG H Z,et al. Enhancement of conductivity by diameter control of polyimide-based electrospun carbon nanofibers[J].Journal of Physical Chemistry B,2007,111(39):11350-11353.

[91]GE J L,QU Y S,CAO L T,et al. Polybenzoxazine-based highly porous carbon nanofibrous membranes hybridized by tin oxide nanoclusters:durable mechanical elasticity and capacitive performance[J].Journal of Materials Chemistry A,2016,4(20):7795-7804.

[92]YANG Y,CENTRONE A,CHEN L,et al. Highly porous electrospun polyvinylidene fluoride(PVDF)-based carbon fiber[J].Carbon,2011,49(11):3395-3403.

[93]KIM B H,BUI N N,YANG K S,et al. Electrochemical properties of activated polyacrylonitrile/pitch carbon fibers produced using electrospinning[J].Bulletin of the Korean Chemical Society,2009,30(9):1967-1972.

[94]TANG X M,SI Y,GE J L,et al. In situ polymerized superhydrophobic and superoleophilic nanofibrous membranes for gravity driven oil-water separation[J].Nanoscale,2013,5(23):11657-11664.

[95]HROMADKA J,TOKAY B,CORREIA R,et al. Highly sensitive volatile organic compounds vapour measurements using a long period grating optical fibre sensor coated with metal organic framework ZIF-8[J].Sensors and Actuators B:Chemical,2018,260:685-692.

[96]BOGNITZKI M,BECKER M,GRAESER M,et al. Preparation of sub-micrometer copper fibers via electrospinning[J].Advanced Materials,2006,18(18):2384-2386.

[97]WU H,HU L,ROWELL M W,et al. Electrospun metal nanofiber webs as high-performance transparent electrode[J].Nano Letters,2010,10(10):4242-4248.

[98]LI Y H,KOU X L,HOU N. Synthesis,microstructure and magnetic properties of Fe2CoAl nanofibers[J].Functional Materials Letters,2017,10(4):1750035.

[99]YOON D G,CHIN B D,BAIL R. Electrohydrodynamic spinning of random-textured silver webs for electrodes embedded in flexible organic solar cells[J].Journal of the Korean Physical Society,2017,70(6):598-605.

[100]AYLETT B J. The chemistry of transition metal carbides and nitrides[J].Journal of Organometallic Chemistry,1997,540:193-193.

[101]法尔哈德 莫哈迈迪,理查德B卡斯.碳化硼陶瓷纤维:中国,102066247 B[P].2014-02-12.

[102]EICK B M,YOUNGBLOOD J P. SiC nanofibers by pyrolysis of electrospun preceramic polymers[J].Journal of Materials Science,2009,44(1):160-165.

[103]LIU Y,LIU Y,CHOI W C,et al. Highly flexible,erosion resistant and nitrogen doped hollow SiC fibrous mats for high temperature thermal insulator[J].Journal of Materials Chemistry A,2017,5(6):2664-2672.

[104]WANG B,WANG Y,LEI Y,et al. Tailoring of porous structure in macro-meso-microporous SiC ultrathin fibers via electrospinning combined with polymer-derived ceramics route[J].Advanced Manufacturing Processes,2015,31(10):1357-1365.

[105]王良彪.碳化物和氮化物的固相合成、表征与性能研究[D].安徽:中国科学技术大学,2012.

[106]LUO X J,ZHENG X J,WANG D,et al. The ethanol-sensing properties of porous GaN nanofibers synthesized by electrospinning[J].Sensors and Actuator B:Chemical,2014,202:1010-1018.

[107]ESZTER B,KOLOS M,ANDRAS M,et al. Silicon nitride-based composites reinforced with zirconia nanofibres[J].Ceramics International,2017,43(18):16811-16818.

[108]QIU Y J,YU J,RAFIQUE J,et al. Large-scale production of aligned long boron nitride nanofibers by multijet/multicollector electrospinning[J].Journal of Physical Chemistry C,2009,113(26):11228-11234.

[109]Li J Y,Sun Y,Tan Y,et al. Zirconium nitride(ZrN)fibers prepared by carbothermal reduction and nitridation of electrospun PVP/zirconium oxychloride composite fibers[J].Chemical Engineering Journal,2008,144(1):149-152.

[110]GUALANDI C,CELLI A,ZUCCHELLI A,et al. Nanohybrid materials by electrospinning[M].Germany:Springer International Publishing,2014.

[111]KIM D H,SUN Z,RUSSELL T P,et al. Organic-inorganic nanohybridization by block copolymer thin films[J].Advanced Functional Materials,2010,15(7):1160-1164.

[112]KRISSANASAERANEE M,VONGSETSKUL T,RANGKUPAN R,et al. Preparation of ultra‐fine silica fibers using electrospun poly(vinyl alcohol)/silatrane composite fibers as precursor[J].Journal of the American Ceramic Society,2010,91(9):2830-2835.

[113]KIM Y J,CHANG H A,LEE M B,et al. Characteristics of electrospun PVDF/SiO2composite nanofiber membranes as polymer electrolyte[J].Materials Chemistry&Physics,2011,127(1):137-142.

[114]KALRA V,MENDEZ S,LEE J H,et al. Confined assembly in coaxially electrospun block copolymer fibers[J].Advanced Materials,2010,18(24):3299-3303.

[115]GUAN H,ZHOU W,FU S,et al. Electrospun nanofibers of NiO/SiO2composite[J].Journal of Physics&Chemistry of Solids,2009,70(10):1374-1377.

[116]DING B,KIM C K,KIM H Y,et al. Titanium dioxide nanofibers prepared by using electrospinning method[J].Fibers and Polymers,2004,5(2):105-109.

[117]WANG C,YAN E,HUANG Z,et al. Fabrication of highly photoluminescent TiO2/PPV hybrid nanoparticle-polymer fibers by electrospinning[J].Macromolecular Rapid Communications,2010,28(2):205-209.

[118]WAN H,NA W,YANG J,et al. Hierarchically structured polysulfone/titania fibrous membranes with enhanced air filtration performance[J].Journal of Colloid&Interface Science,2014,417(3):18-26.

[119]DREW C,LIU X,ZIEGLER D,et al. Metal oxide-coated polymer nanofibers[J].Nano Letters,2003,3(2):143-147.

[120]HE T,ZHOU Z,XU W,et al. Preparation and photocatalysis of TiO2-fluoropolymer electrospun fiber nanocomposites[J].Polymer,2009,50(13):3031-3036.

[121]XIN Y,HUANG Z,PENG L,et al. Photoelectric performance of poly(p-phenylene vinylene)/Fe3O4nanofiber array[J].Journal of Applied Physics,2009,105:086106.

[122]DING B,OGAWA T,KIM J,et al. Fabrication of a super-hydrophobic nanofibrous zinc oxide film surface by electrospinning[J].Thin Solid Films,2008,516(9):2495-2501.

[123]SUI X,SHAO C,LIU Y. Photoluminescence of polyethylene oxide-ZnO composite electrospun fibers[J].Polymer,2007,48(6):1459-1463.

[124]OLDHAM C J,BO G,SPAGNOLA J C,et al. Encapsulation and chemical resistance of electrospun nylon nanofibers coated using integrated atomic and molecular layer deposition[J].Journal of the Electrochemical Society,2011,158(158):D549-D556.

[125]Chang Z.“Firecracker-shaped”ZnO/polyimide hybrid nanofibers via electrospinning and hydrothermal process[J]. Chemical Communications,2011,47(15):4427-4429.

[126]PADMARAJ O,RAO B N,JENA P,et al. Electrochemical studies of electrospun organic/inorganic hybrid nanocomposite fibrous polymer electrolyte for lithium battery[J].Polymer,2014,55(5):1136-1142.

[127]CHEN D,GAO L. Facile synthesis of single-crystal tin oxide nanorods with tunable dimensions via hydrothermal process[J].Chemical Physics Letters,2004,398(1):201-206.

[128]LI Z,HUANG H,WANG C. Electrostatic forces induce poly(vinyl alcohol)‐protected copper nanoparticles to form copper/poly(vinyl alcohol)nanocables via electrospinning[J].Macromolecular Rapid Communications,2010,27(2):152-155.

[129]ADOMAVICIENE M,STANYS S,DEMSAR A,et al. Insertion of Cu nanoparticles into a polymeric nanofbrous structure via an electrospinning technique[J].Fibres&Textiles in Eastern Europe,2010,78(1):17-20.

[130]BASHOUTI M,DR W S,BRUMER M,et al. Alignment of colloidal CdS nanowires embedded in polymer nanofibers by electrospinning[J].Chemphyschem A European Journal of Chemical Physics&Physical Chemistry,2010,7(1):102-106.

[131]WANG S,SUN Z,YAN E,et al. Spectrum-control of poly(p-phenylene vinylene)nanofibers fabricated by electrospinning with highly photoluminescent ZnS quantum dots[J].International Journal of Electrochemical Science,2014,9(2):549-561.

[132]LU X,ZHAO Y,WANG C,et al. Fabrication of CdS Nanorods in PVP Fiber Matrices by Electrospinning[J].Macromolecular Rapid Communications,2010,26(16):1325-1329.

[133]LU X,ZHAO Y,WANG C. Fabrication of PbS nanoparticles in polymer‐fiber matrices by electrospinning[J].Advanced Materials,2010,17(20):2485-2488.

[134]LU X,LI L,ZHANG W,et al. Preparation and characterization of Ag2S nanoparticles embedded in polymer fibre matrices by electrospinning[J].Nanotechnology,2005,16(10):2233-2237.

[135]KO F,GOGOTSI Y,ALI A,et al. Electrospinning of continuous carbon nanotube‐filled nanofiber yarns[J].Advanced Materials,2010,15(14):1161-1165.

[136]MAZINANI S,AJJI A,DUBOIS C. Morphology,structure and properties of conductive PS/CNT nanocomposite electrospun mat[J].Polymer,2009,50(14):3329-3342.

[137]JI H H,JEONG E H,HAN S L,et al. Electrospinning of polyurethane/organically modified montmorillonite nanocomposites[J].Journal of Polymer Science Part B:Polymer Physics,2010,43(22):3171-3177.

[138]WANG S,ZHENG F,HUANG Y,et al. Encapsulation of amoxicillin within laponite-doped poly(lactic-co-glycolic acid)nanofibers:preparation,characterization,and antibacterial activity[J].ACS Applied Materials&Interfaces,2012,4(11):6393-6401.

[139]JEONG S I,KO E K,YUM J,et al. Nanofibrous poly(lactic acid)/hydroxyapatite composite scaffolds for guided tissue regeneration[J].Macromolecular Bioscience,2010,8(4):328-338.

[140]BIANCO A,FEDERICO E D,CACCIOTTI I. Electrospun poly(ε-caprolactone)-based composites using synthesized β-tricalcium phosphate[J].Polymers for Advanced Technologies,2011,22(12):1832-1841.

[141]FUJIHARA K,KOTAKI M,RAMAKRISHNA S. Guided bone regeneration membrane made of polycaprolactone/calcium carbonate composite nano-fibers[J].Biomaterials,2005,26(19):4139-4147.

[142]SCHLECHT S,TAN S,YOSEF M,et al. Toward linear arrays of quantum dots via polymer nanofibers and nanorods[J].Chemistry of Materials,2005,17(4):809-814.

[143]KANEHATA M,DING B,SHIRATORI S. Nanoporous ultra-high specific surface inorganic fibres[J].Nanotechnology,2007,18(31):315602.

[144]李雪松.纳米金属材料的制备及性能[M].北京:北京理工大学出版社,2012.

[145]HE D,HU B,YAO Q F,et al. Large-scale synthesis of flexible free-standing SERS substrates with high sensitivity:electrospun PVA nanofibers embedded with controlled alignment of silver nanoparticles[J].ACS Nano,2009,3(12):3993-4002.

[146]CHENG M,WANG H,ZHANG Z,et al. Gold Nanorod-Embedded Electrospun Fibrous Membrane as a Photothermal Therapy Platform[J].ACS Applied Materials&Interfaces,2014,6(3):1569-1575.

[147]ZHANG C L,LV K P,CONG H P,et al. Controlled assemblies of gold nanorods in PVA nanofiber matrix as flexible free-standing SERS substrates by electrospinning[J].Small,2012,8(5):647-653.

[148]CHAPMAN R,DANIAL M,KOH M L,et al. Design and properties of functional nanotubes from the self-assembly of cyclic peptide templates[J].Chemical Society Reviews,2015,43(47):6023-6041.

[149]ZHANG S,PELLIGRA C I,FENG X,et al. Directed assembly of hybrid nanomaterials and nanocomposites[J].Advanced Materials,2018,1705794.

[150]Lim J Y,Lee C K,Kim S J,et al. Controlled nanofiber composed of multi-wall carbon nanotube/poly(ethylene oxide)[J].Journal of Macromolecular Science,Part A:Pure and Applied Chemistry,2006,43(4-5):785-796.

[151]NOVOSELOV K S,GEIM A K,MOROZOV S V,et al. Electric field effect in atomically thin carbon films[J].Science,2004,306(5696):666-669.

[152]BAO Q,ZHANG H,YANG J X,et al. Graphene-polymer nanofiber membrane for ultrafast photonics[J].Advanced Functional Materials,2010,20(5):782-791.

[153]LI B,YUAN H,ZHANG Y. Transparent PMMA-based nanocomposite using electrospun graphene-incorporated PA-6 nanofibers as the reinforcement[J].Composites Science&Technology,2013,89(1):134-141.

[154]MARRAS S I,KLADI K P,TSIVINTZELIS I,et al. Biodegradable polymer nanocomposites:the role of nanoclays on the thermomechanical characteristics and the electrospun fibrous structure[J].Acta Biomaterialia,2008,4(3):756-765.

[155]PARK J H,LEE H W,DONG K C,et al. Electrospinning and characterization of poly(vinyl alcohol)/chitosan oligosaccharide/clay nanocomposite nanofibers in aqueous solutions[J].Colloid&Polymer Science,2009,287(8):943-950.

[156]DENG X L,SUI G,ZHAO M L,et al. Poly(L-lactic acid)/hydroxyapatite hybrid nanofibrous scaffolds prepared by electrospinning[J].Journal of Biomaterials Science Polymer Edition,2007,18(1):117-130.

[157]BA L N,MIN Y K,LEE B T. Hybrid hydroxyapatite nanoparticles-loaded PCL/GE blend fibers for bone tissue engineering[J].Journal of Biomaterials Science Polymer Edition,2013,24(5):520-538.

[158]GUO M,DING B,LI X,et al. Amphiphobic nanofibrous silica mats with flexible and high-heat-resistant properties[J].Journal of Physical Chemistry C,2010,114(2):916-921.

[159]JIANG L,ZHAO Y,ZHAI J. A lotus-leaf-like superhydrophobic surface:a porous microsphere/nanofiber composite film prepared by electrohydrodynamics[J].Angew Chemie Interanational Edition,2004,43(33):4338-4341.

[160]KOOMBHONGSE S,LIU W,RENEKER D H. Flat polymer ribbons and other shapes by electrospinning[J].Journal of Polymer Science B Polymer Physics,2001,39(21):2598-2606.

[161]区炜锋,严玉蓉.静电纺多级孔材料制备研究进展[J].化工进展,2009,28(10):1766-1770.

[162]LIN J Y,DING B,YANG J M,et al. Subtle regulation of the micro-and nanostructures of electrospun polystyrene fibers and their application in oil absorption[J].Nanoscale,2012,4(1):176-182.

[163]MCCANN J T,MARQUEZ M,XIA Y. Highly porous fibers by electrospinning into a cryogenic liquid[J].Journal of the American Chemical Society,2006,128(5):1436-1437.

[164]BOGNITZKI M,FRESE T,STEINHART M,et al. Preparation of fibers with nanoscaled morphologies:Electrospinning of polymer blends[J].Polymer Engineering&Science,2001,41(6):982-989.

[165]LI W,LI M,WANG M,et al. Electrospinning with partially carbonization in air:Highly porous carbon nanofibers optimized for high-performance flexible lithium-ion batteries[J].Nano Energy,2015,13:693-701.

[166]CHATTOPADHYAY S,SAHA J,DE G. Electrospun anatase TiO2nanofibers with ordered mesoporosity[J].Journal of Materials Chemistry A.2014,2(44):19029-19035.

[167]LOSCERTALES I G,BARRERO A,GUERRERO I,et al. Micro/nano encapsutation via electrified coaxial liquid jets[J].Science,2002,295(5560):1695-1698.

[168]AVSAR G,AGIRBASLI D,AGIRBASLI M A,et al. Levan based fibrous scaffolds electrospun via co-axial and single-needle techniques for tissue engineering applications[J].Carbohydrate Polymers,2018,193:316-325.

[169]LIN J,TIAN F,SHANG Y,et al. Co-axial electrospun polystyrene/polyurethane fibres for oil collection from water surface[J].Nanoscale,2013,5(7):2745-2755.

[170]ZHANG X,ARAVINDAN V,KUMAR P S,et al. Synthesis of TiO2hollow nanofibers by co-axial electrospinning and its superior lithium storage capability in full-cell assembly with olivine phosphate[J].Nanoscale,2013,5(13):5973-5980.

[171]PENG S,LI L,HU Y,et al. Fabrication of spinel one-dimensional architectures by single-spinneret electrospinning for energy storage applications[J].ACS Nano,2015,9(2):1945-1954.

[172]ZHAO T Y,LIU Z Y,NAKATA K,et al. Multichannel TiO2hollow fibers with enhanced photocatalytic activity[J].Journal of Materials Chemistry,2010,20(24):5095-5099.

[173]GAO F,YAO Y,WANG W,et al. Light-driven transformation of bio-inspired superhydrophobic structure via reconfigurable PAzoMA microarrays:from lotus leaf to rice leaf[J].Macromolecules,2018,51(7):2742-2749.

[174]KAYES M I,GALANTE A J,STELLA N A,et al. Stable lotus leaf-inspired hierarchical,fluorinated polypropylene surfaces for reduced bacterial adhesion[J].Reactive and Functional Polymers,2018,128:40-46.

[175]WANG N,SI Y,WANG N,et al. Multilevel structured polyacrylonitrile/silica nanofibrous membranes for high-performance air filtration[J].Separation&Purification Technology,2014,126(15):44-51.

[176]SHENG J,YUE X,YU J,et al. Robust fluorine-free superhydrophobic amino-silicone Oil/SiO2modification of electrospun polyacrylonitrile membranes for waterproof-breathable application[J].ACS Applied Materials&Interfaces,2017,9(17):15139-15147.

[177]MIYAUCHI Y,DING B,SHIRATORI S. Fabrication of a silver-ragwort-leaf-like super-hydrophobic micro/nanoporous fibrous mat surface by electrospinning[J].Nanotechnology,2006,17(17):5151-5156.

[178]ZHANG Y,GUAN J,WANG X,et al. Balsam pear skin-like porous polyacrylonitrile nanofibrous membranes grafted with polyethyleneimine for post-combustion CO2capture[J].ACS Applied Materials&Interfaces,2017,9(46):41087-41098.

[179]KAMATA K,SUZUKI S,OHTSUKA M,et al. Fabrication of left-handed metal microcoil from spiral vessel of vascular plant[J].Advanced Materials,2011,23(46):5509-5513.

[180]KESSICK R,TEPPER G. Microscale polymeric helical structures produced by electrospinning[J].Applied Physics Letters,2004,84(23):4807-4809.

[181]常敏,李从举,王佩杰.静电纺丝制备具有扭曲螺旋结构的微/纳米纤维[J].合成纤维,2007,36(7):1-4.

[182]刘国相.静电纺丝制备纤维素增强聚乳酸纳米复合材料的研究[D].黑龙江:东北林业大学,2017.

[183]王先锋.静电纺纤维膜的结构调控及其在甲醛传感器中的应用研究[D].上海:东华大学,2012.

[184]DOSHI J,RENEKER D H. Electrospinning process and applications of electrospun fibers[J].Journal of Electrostatics,1995,35(2-3):151-160.

[185]THERON A,ZUSSMAN E,YARIN A L. Electrostatic field-assisted alignment of electrospun nanofibres[J].Nanotechnology,2001,12(3):384.

[186]SMIT E,BŰTTNER U,SANDERSON R D.Continuous yarns from electrospun fibers[J].Polymer,2005,46(8):2419-2423.

[187]TEO W E,GOPAL R,RAMASESHAN R,et al. A dynamic liquid support system for continuous electrospun yarn fabrication[J].Polymer,2007,48(12):3400-3405.

[188]王淑瑶,王勇章,刘耀文,等.图案化纤维制备工艺研究进展[J],化工新型材料,2016,9:240-242.

[189]徐合.具有可控微图案结构的电纺纤维生物材料的制备及其性能研究[D].上海:上海交通大学,2014.

[190]LI D,WANG Y,XIA Y. Electrospinning nanofibers as uniaxially aligned arrays and layer-by-layer stacked films[J].Advanced Materials,2010,16(4):361-366.

[191]WU Y,DONG Z,WILSON S,et al. Template-assisted assembly of electrospun fibers[J].Polymer,2010,51(14):3244-3248.

[192]CHO S J,KIM B,AN T,et al. Replicable multilayered nanofibrous patterns on a flexible film[J].Langmuir,2010,26(18):14395-14399.

[193]DING B,LI C,MIYAUCHI Y,et al. Formation of novel 2D polymer nanowebs via electrospinning[J].Nanotechnology,2006,17(17):3685-3691.

[194]WANG X,DING B,YU J,et al. Highly sensitive humidity sensors based on electro-spinning/netting a polyamide 6 nano-fiber/net modified by polyethyleneimine[J].Journal of Materials Chemistry,2011,21(40):16231-16238.

[195]ZHANG S,LIU H,YIN X,et al. Tailoring mechanically robust poly(m-phenylene isophthalamide)nanofiber/nets for ultrathin high-efficiency air filter[J].Scientific Reports,2017,7:40550.

[196]WANG X,DING B,SUN G,et al. Electro-spinning/netting:A strategy for the fabrication of three-dimensional polymer nano-fiber/nets[J].Progress in Materials Science,2013,58(8):1173-1243.

[197]张世超.超细纳米蛛网材料的成型机理及高效空气过滤应用研究[D].上海:东华大学,2017.

[198]HU J,WANG X,DING B,et al. One-step electro-spinning/netting technique for controllably preparing polyurethane nano-fiber/net[J].Macromolecular Rapid Communications,2011,32(21):1729-1734.

[199]BARAKAT N A M,KANJWAL M A,SHEIKH F A,et al. Spider-net within the N6,PVA and PU electrospun nanofiber mats using salt addition:novel strategy in the electrospinning process[J].Polymer,2009,50(18):4389-4396.

[200]TSOU S Y,LIN H S,WANG C. Studies on the electrospun Nylon 6 nanofibers from polyelectrolyte solutions:1.Effects of solution concentration and temperature[J].Polymer,2011,52(14):3127-3136.

[201]PANT H R,BAJGAI M P,NAM K T,et al. Formation of electrospun nylon-6/methoxy poly(ethylene glycol)oligomer spider-wave nanofibers[J].Materials Letters,2010,64(19):2087-2090.

[202]ZHANG S,CHEN K,YU J,et al. Model derivation and validation for 2D polymeric nanonets:Origin,evolution,and regulation[J].Polymer,2015,74(9):182-192.

[203]GE J,ZONG D,JIN Q,et al. Biomimetic and superwettable nanofibrous skins for highly efficient separation of oil-in-water emulsions[J].Advanced Functional Materials,2018,28(10):1705051.

[204]KIDOAKI S,KWON I K,MATSUDA T. Mesoscopic spatial designs of nano-and microfiber meshes for tissue-engineering matrix and scaffold based on newly devised multilayering and mixing electrospinning techniques[J].Biomaterials,2005,26(1):37-46.

[205]GE J,JIN Q,ZONG D,et al. Biomimetic multilayer nanofibrous membranes with elaborated superwettability for effective purification of emulsified oily wastewater[J].ACS Applied Materials&Interfaces,2018,10(18):16183-16192.

[206]PHAM Q P,SHARMA U,MIKOS A G. Electrospun poly(epsilon-caprolactone)microfiber and multilayer nanofiber/microfiber scaffolds:characterization of scaffolds and measurement of cellular infiltration[J].Biomacromolecules,2006,7(10):2796-2805.

[207]PARK S H,KIM T G,KIM H C,et al. Development of dual scale scaffolds via direct polymer melt deposition and electrospinning for applications in tissue regeneration[J].Acta Biomaterialia,2008,4(5):1198-1207.

[208]RAMAKRISHNA S,CHAN C K,LIAO S,et al. Remodeling of three-dimensional hierarchically organized nanofibrous assemblies[J].Current Nanoscience,2008,4(4):361-369

[209]HONG S,KIM G H. Fabrication of size-controlled three-dimensional structures consisting of electrohydrodynamically produced polycaprolactone micro/nanofibers[J].Applied Physics A,2011,103(4):1009-1014.

[210]YOKOYAMA Y,HATTORI S,YOSHIKAWA C,et al. Novel wet electrospinning system for fabrication of spongiform nanofiber 3-dimensional fabric[J].Materials Letters,2009,63(9):754-756.

[211]ZHANG D,CHANG J. Electrospinning of three-dimensional nanofibrous tubes with controllable architectures[J].Nano Letters,2008,10(8):3283-3287.

[212]ZHOU J,CAO C,MA X. A novel three-dimensional tubular scaffold prepared from silk fibroin by electrospinning[J].International Journal of Biological Macromolecules,2009,45(5):504-510.

[213]KIM T G,CHUNG H J,PARK T G. Macroporous and nanofibrous hyaluronic acid/collagen hybrid scaffold fabricated by concurrent electrospinning and deposition/leaching of salt particles[J].Acta Biomaterialia,2008,4(6):1611-1619.

[214]SCHNEIDER O D,WEBER F,BRUNNER T J,et al. In vivo and in vitro evaluation of flexible,cottonwool-like nanocomposites as bone substitute material for complex defects[J].Acta Biomaterialia,2009,5(5):1775-1784.

[215]SI Y,YU J,TANG X,et al. Ultralight nanofibre-assembled cellular aerogels with superelasticity and multifunctionality[J].Nature Communications,2014,5:5802.