纤维素基抗菌材料是通过添加抗菌物质对纤维素进行改性,使得其成为具有抗菌性能的材料。纤维素基抗菌材料因其优良的抗菌性能和广阔的应用前景而备受关注。为进一步开展研究,特对纤维素的改性、抗菌剂的种类及纤维素基抗菌材料的应用进行了综述,并展望了纤维素基抗菌材料的发展方向和前景。
Cellulosic antibacterial material is a kind of material that gives cellulose antibacterial properties after modification by adding antibacterial substances.Cellulosic antibacterial materials have attracted much attention because of their excellent antibacterial properties and broad application prospects.The definition,preparation,classification and application of antibacterial materials based on cellulose were reviewed,and the development direction and prospect of the materials were prospected.
[1] 尹海顺.高性能纤维素材料制备研究[J].化工管理,2018(32):253.
[2] 王阳,赵国华,肖丽,等.源于食品加工副产物纳米纤维素晶体的制备及其在食品中的应用[J].食品与机械,2017(2):1-5.
[3] 陈晓琴.复合机理型抗菌材料的制备与性能研究[D].南京:南京理工大学,2017.
[4] 劳超,杨晓光,李一,等.甘蔗渣纤维素的改性及应用进展[J].广州化学,2017(2):71-76.
[5] 俞娟,徐俊华,范一民.壳聚糖抗菌性能研究进展[J].林业工程学报,2018(5):20-27.
[6] 姚一军,王鸿儒.纤维素化学改性的研究进展[J].材料导报,2018(19):3478-3488.
[7] 郭婷,刘雄.纳米纤维素的改性及其在复合材料中的应用进展[J].食品科学,2014(3):285-289.
[8] 安红玉,杨建忠,郭昌盛.纤维素的改性技术研究进展[J].成都纺织高等专科学校学报,2016(3):160-163.
[9] 宋俊,李俊男,侯源富,等.纤维素山梨酸酯膜的制备及其抗菌性能研究[J].高分子学报,2019,50(1):62-70.(请根据附件中本刊参考文献规范进行修订)
[10] 周志敏,裴继诚,刘海棠,等.漆酶/TEMPO体系氧化棉纤维接枝壳聚糖制备抗菌纤维[J].功能材料,2018(6):6140-6145.
[11] 侯淑娜,苏巧权,林春香.纳米纤维素的改性及应用[J].中华纸业,2017(22):11-17.
[12] 韩瑞涛,赵磊,唐二军,等.ATRP法接枝卤胺分子制备纤维素共聚物抗菌材料[J].化工学报,2018(S1):155-160.
[13] 刘颖.基于卤胺化合物/季铵盐的纤维素基质高效抗菌改性研究[D].无锡:江南大学,2017.
[14] 马明国,付连花,李亚瑜,等.纤维素基复合材料及其在医用方面的研究进展[J].林业工程学报,2017(6):1-9.
[15] 蒙景茹,段超,孟欣,等.银系金属有机框架物与纤维素纤维复合抗菌材料的制备及性能研究[J].中国造纸,2018(5):14-19.
[16] 徐永建,雷凤,徐洋,等.纤维素酶预处理对纤维素-Ag复合抗菌材料制备的影响[J].陕西科技大学学报,2017(6):15-19.
[17] Yadav C,Maji P K.Synergistic effect of cellulose nanofibres and bio-extracts for fabricating high strength sodium alginate based composite bio-sponges with antibacterial properties[J].Carbohydrate Polymers,2019,203:396-408.
[18] 徐永建,左磊刚.抗菌纤维素/纤维素纤维的研究进展[J].陕西科技大学学报(自然科学版),2014(1):10-15.
[19] 李旭飞,车阳丽,吕艳,等.壳聚糖/无机物纳米复合材料在抗菌方面的研究进展[J].材料导报,2018(21):3823-3830.
[20] 鲍文毅,徐晨,宋飞,等.纤维素/壳聚糖共混透明膜的制备及阻隔抗菌性能研究[J].高分子学报,2015(1):49-56.
[21] 付冉冉.纤维素基复合材料的制备与抗菌性能研究[D].天津:天津工业大学,2018.
[22] Wahid F,Hu X,Chu L,et al.Development of bacterial cellulose/chitosan based semi-interpenetrating hydrogels with improved mechanical and antibacterial properties[J].International Journal of Biological Macromolecules,2018,122:380-387.
[23] 何悦,王毓彤,徐朝阳.纳米二氧化钛抗菌包装用纸的性能研究[J].包装工程,2018(19):30-36.
[24] Brandes R,Trindade E C A,Vanin D F,et al.Spherical bacterial cellulose/TiO2 nanocomposite with potential application in contaminants removal from wastewater by photocatalysis[J].Fibers and Polymers,2018,19(9):1861-1868.
[25] Tran C D,Prosenc F,Franko M,et al.One-pot synthesis of biocompatible silver nanoparticle composites from cellulose and keratin:characterization and antimicrobial activity[J].ACS Applied Materials & Interfaces,2016,8(50):34791-34801.
[26] Dacrory S,Abou-Yousef H,Abouzeid R E,et al.Antimicrobial cellulosic hydrogel from olive oil industrial residue[J].International Journal of Biological Macromolecules,2018,117:179-188.
[27] Fu F,Gu J,Zhang R,et al.Three-dimensional cellulose based silver-functionalized ZnO nanocomposite with controlled geometry:synthesis,characterization and properties[J].Journal of Colloid and Interface Science,2018,530:433-443.
[28] Wang Y,Wang Z,Wu K,et al.Synthesis of cellulose-based double-network hydrogels demonstrating high strength,self-healing,and antibacterial properties[J].Carbohydrate Polymers,2017,168:112-120.
[29] Renouard S,Hano C,Ouagne P,et al.Cellulose coating and chelation of antibacterial compounds for the protection of flax yarns against natural soil degradation[J].Polymer Degradationand Stability,2017,138:12-17.
[30] 孟令馨,徐淑艳,谢元仲.纳米纤维素及纤维素衍生物在包装材料领域的应用[J].森林工程,2015(5):134-138.
[31] 童玲,张剑.传统食品包装设计流程研究[J].食品与机械,2016(9):95-98.
[32] 程红,吴习宇,徐丹,等.壳聚糖涂膜处理对猪腰枣保鲜效果的影响[J].食品与机械,2016(9):113-116.
[33] 李翔.壳聚糖基累托石改性复合薄膜的制备及抑菌性能研究[D].南宁:广西大学,2017.
[34] Zhang X,Shu Y,Su S,et al.One-step coagulation to construct durable anti-fouling and antibacterial cellulose film exploiting Ag@AgCl nanoparticle-triggered photo-catalytic degradation[J].Carbohydrate Polymers,2018,181:499-505.
[35] 张淑敏,李蓉,栗志广,等.季铵盐抗菌剂整理涤纶织物的研究[J].化工新型材料,2018(10):275-279.
[36] Hu L,Zhang H,Gao A,et al.Functional modification of cellulose fabrics with phthalocyanine derivatives and the UV light-induced antibacterial performance[J].Carbohydrate Polymers,2018,201:382-386.
[37] 王淼.一种抗菌纤维的制备及其抗菌性[J].西安工程大学学报,2017(6):742-746.
[38] 钟海英.纳米银医用辅料的研究进展[C].铜牛杯第九届功能性纺织品及纳米技术研讨会论文集,2009:90-94.(请根据附件中本刊参考文献规范进行修订)
[39] Lumbreras-Aguayo A,Ivan Melendez-Ortiz H,Puente-Urbina B,et al.Poly(methacrylic acid)-modified medical cotton gauzes with antimicrobial and drug delivery properties for their use as wound dressings[J].Carbohydrate Polymers,2019,205:203-210.
[40] 汤双双.纤维素酯的制备及其在抗菌敷料中的应用研究[D].上海:东华大学,2017.
基金资助
广西区特色本科专业建设项目——食品科学与工程(制糖工程)