[1] 陈美梅,郭荣辉.抗菌材料的研究进展[J].纺织科学与工程学报,2019,36(1):153-157.
[2] 汪子翔,张坤,卫金皓,等.抗菌材料及抗菌剂的研究现状及前景展望[J].橡塑技术与装备,2021,47(12):22-29.
[3] 韩晓杰,张瑜.静电纺纳米纤维的性能及应用[J].中国纤检,2014(15):34-35.
[4] Xue J,Wu T,Dai Y,et al.Electrospinning and electrospun nanofibers:methods,materials,and applications[J].Chemical Reviews,2019,119(8):5298-5415.
[5] Wang X,Xiang H,Song C,et al.Highly efficient transparent air filter prepared by collecting-electrode-free bipolar electrospinning apparatus[J].Journal of Hazardous Materials,2020,385:121535.
[6] Chen A,Huang W,Wu L,et al.Bioactive ECM mimic hyaluronic acid dressing via sustained releasing of bFGF for enhancing skin wound healing[J].ACS Applied Bio Materials,2020,3(5):3039-3048.
[7] 徐聪,李同燮,钱珊珊,等.静电纺丝技术在食品领域应用的研究进展[J].食品工业科技,2021,42(2):370-378.
[8] 孙康,王丽平.壳聚糖静电纺纳米纤维的制备和特点[J].应用化学,2011,28(2):123-130.
[9] Kurt S B,Sahiner N.Chitosan based fibers embedding carbon dots with anti-bacterial and fluorescent properties[J].Polymer Composites,2021,42(2):872-880.
[10] 杨媛媛.壳聚糖混杂聚合物电纺膜的制备及其自来水细菌过滤[D].天津:天津工业大学,2018.
[11] Gu X H,Cao R,Li Y,et al.Three-component antibacterial membrane of poly(butylene carbonate),poly(lactic acid) and chitosan prepared by electrospinning[J].Materials Technology,2019,34(8):463-470.
[12] Lan W J,Zhang R,Ahmed S,et al.Effects of various antimicrobial polyvinyl alcohol/tea polyphenol composite films on the shelf life of packaged strawberries[J].Lwt-Food Science and Technology,2019,113:108297.
[13] Luo J J,Zuo D Q,Deng Z H,et al.Effects of heat treatment and tea polyphenols on the structure and properties of polyvinyl alcohol nanofiber films for food packaging[J].Coatings,2020,10(1):49.
[14] 顾晓华,李燕,刘思雯,等.茶多酚-聚乳酸/聚碳酸丁二醇酯抗菌复合纤维膜的制备及性能[J].复合材料学报,2020,37(6):1227-1233.
[15] Liu Y W,Liang X,Wang S Y,et al.Electrospun antimicrobial polylactic acid/tea polyphenol nanofibers for food-packaging applications[J].Polymers,2018,10(5):561.
[16] 付琳,付强,李冀,等.黄连化学成分及药理作用研究进展[J].中医药学报,2021,49(2):87-92.
[17] Yang S B,Kim E H,Kim S H,et al.Electrospinning fabrication of poly(vinyl alcohol)/coptis chinensis extract nanofibers for antimicrobial exploits[J].Nanomaterials,2018,8(9):734.
[18] Molan P,Rhodes T.Honey:a biologic wound dressing[J].Wounds-a Compendium of Clinical Research and Practice,2015,27(6):141-151.
[19] Tang Y D,Lan X Z,Liang C F,et al.Honey loaded alginate/PVA nanofibrous membrane as potential bioactive wound dressing[J].Carbohydrate Polymers,2019,219:113-120.
[20] Li H,Chen X,Lu W,et al.Application of electrospinning in antibacterial field[J].Nanomaterials,2021,11(7):1822.
[21] Hamad A,Khashan K S,Hadi A.Silver nanoparticles and silver ions as potential antibacterial agents[J].Journal of Inorganic and Organometallic Polymers and Materials,2020,30(12):4811-4828.
[22] Blosi M,Costa A L,Ortelli S,et al.Polyvinyl alcohol/silver electrospun nanofibers:biocidal filter media capturing virus-size particles[J].Journal of Applied Polymer Science,2021,138(46):e51380.
[23] Chen W C,Ko C Y,Chang K C,et al.Preparation of electrospun silver/poly(vinyl alcohol) fibrous membranes and characterization of the effect of sterilization processes on the antibacterial activity[J].Journal of Industrial Textiles,2020,51(4-SUPPL):7205S-7222S.
[24] 邵伟力,岳万里,熊俊鹏,等.聚氨酯抗菌纳米纤维及其空气过滤性能[J].上海纺织科技,2019,47(11):27-30.
[25] Shi L E,Li Z H,Zheng W,et al.Synthesis,antibacterial activity,antibacterial mechanism and food applications of ZnO nanoparticles:a review[J].Food Additives and Contaminants Part a-Chemistry Analysis Control Exposure & Risk Assessment,2014,31(2):173-186.
[26] Chen Y,Lu W P,Guo Y C,et al.Electrospun gelatin fibers surface loaded ZnO particles as a potential biodegradable antibacterial wound dressing[J].Nanomaterials,2019,9(4):525.
[27] Artifon W,Pasini S M,Valerio A,et al.Harsh environment resistant-antibacterial zinc oxide/polyetherimide electrospun composite scaffolds[J].Materials Science & Engineering C-Materials for Biological Applications,2019,103:109859.
[28] Li X M,Ma Q Q,Liu T,et al.Effect of TiO2-nanoparticles on copper toxicity to bacteria:role of bacterial surface[J].RSC Advances,2020,10(9):5058-5065.
[29] Ansari M A,Albetran H M,Alheshibri M H,et al.Synthesis of electrospun TiO2 nanofibers and characterization of their antibacterial and antibiofilm potential against gram-positive and gram-negative bacteria[J].Antibiotics-Basel,2020,9(9):572.
[30] Feng S Y,Zhang F,Ahmed S,et al.Physico-mechanical and antibacterial properties of PLA/TiO2 composite materials synthesized via electrospinning and solution casting processes[J].Coatings,2019,9(8):525.
[31] Ding X K,Duan S,Ding X J,et al.Versatile antibacterial materials:an emerging arsenal for combatting bacterial pathogens[J].Advanced Functional Materials,2018,28(40):1802140.
[32] Huang Y P,Dan N H,Dan W H,et al.Bilayered antimicrobial nanofiber membranes for wound dressings via in situ cross-linking polymerization and electrospinning[J].Industrial & Engineering Chemistry Research,2018,57(50):17048-17057.
[33] Shi R,Geng H,Gong M,et al.Long-acting and broad-spectrum antimicrobial electrospun poly (epsilon-caprolactone)/gelatin micro/nanofibers for wound dressing[J].Journal of Colloid and Interface Science,2018,509:275-284.