欢迎登录材料期刊网

材料期刊网

高级检索

以纳米TiO2、壳聚糖双胍盐酸盐为抗菌剂,加以胶黏剂羧基丁苯胶乳、分散剂六偏磷酸钠、消泡剂叔丁醇,制备了TiO2/壳聚糖纳米复合涂料,利用SEM、FT-IR对涂料的微观形貌和基本结构进行了表征。以表面涂布方式将TiO2/壳聚糖纳米复合涂料施涂于纸张表面,制得涂布抗菌纸,对涂布抗菌纸的微观结构及抗菌性能进行了研究。结果表明,经TiO2/壳聚糖纳米复合涂料涂布后,纸张具备较强的抗菌性能;而且,实验发现,随着涂料体系中壳聚糖组分的不断增加,涂布纸的抗菌性能逐渐提高。当纳米TiO2/壳聚糖的加入比例为1∶1时,双层涂布后的纸张对大肠杆菌和金黄色葡萄球菌的抗菌率分别达到86.55%和92.19%。

TiO2/chitosan nanocomposited coatings was prepared by the combination of nanosized TiO2,chitosan biguanidine hydrochloride,SBR latex and other additives.The surface structure of TiO2/chitosan nanocomposited coating samples was characterized by SEM and FT-IR techniques.A new method of antibacterial coated paper based on the TiO2/chitosan nanocomposited coatings was carried out,and the microstructure and antibacterial properties of coated paper was characterized.It was shown that there was a significant increase in antibacterial properties when the paper was coated by TiO2/chitosan nanocomposited coatings.It was especially illustrated that with the increase of chitosan biguanidine hydrochloride amount in paper coatings,the antibacterial properties of coated paper can be persistently improved.When the proportion of TiO2,chitosan in nanocomposited coatings was equal,the antibacterial efficiency of coated paper to escherichia coli and staphylococcus aureus could attain to 86.55% and 92.19%,respectively.

参考文献

[1] 钱丽颖 .胍盐类等纸品抗菌剂合成及其抗菌机理研究[D].华南理工大学,2008.
[2] Guan Y;Qian LY;Xiao HN .Novel anti-microbial host-guest complexes based on cationic beta-cyclodextrin polymers and triclosan/butylparaben[J].Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation,2007(23):2244-2248.
[3] Vartiainen J;Motion R;Kulonen H;Ratto M;Skytta E;Ahvenainen R .Chitosan-coated paper: Effects of nisin and different acids on the antimicrobial activity[J].Journal of Applied Polymer Science,2004(3):986-993.
[4] Rodriguez A;Batlle R;Nerin C .The use of natural essential oils as antimicrobial solutions in paper packaging. Part II[J].Progress in Organic Coatings: An International Review Journal,2007(1):33-38.
[5] Langhorst M;Curtis W W.bial treatment on wallboard functionality[A].Atlanta,2006:417425.
[6] Kim C H;Moon S H;Huh J S et al.Storage ability of packaging paper by thin coating of botanical antimicrobial agent[J].PalpuChongiKisul,2004,36(03):74-82.
[7] Nicolas Bordenave;Stephane Grelier;Veronique Coma .Hydrophobization and Antimicrobial Activity of Chitosan and Paper-Based Packaging Material[J].Biomacromolecules,2010(1):88-96.
[8] Guan Y;Qian L;Xiao H;Zheng A;He B .Synthesis of a novel antimicrobial-modified starch and its adsorption on cellulose fibers: part II - adsorption behaviors of cationic starch on cellulose fibers[J].Cellulose,2008(4):619-629.
[9] 杨飞,陈克复,杨仁党,李军.载银抗菌沸石对涂布抗菌纸性能的影响[J].中国造纸,2010(06):19-23.
[10] 马滢,刘鹏涛,刘忠.羧甲基壳聚糖的制备及其在抗菌纸中的应用[J].功能材料,2010(04):648-651.
[11] 张美云,郭惠萍.季铵盐壳聚糖的制备及其在抗菌纸中的应用[J].中国造纸,2008(02):14-17.
[12] Xiaohui Wang;Yumin Du;Lihong Fan;Hui Liu;Ying Hu .Chitosan- metal complexes as antimicrobial agent:Synthesis,characterization and Structure-activity study[J].Polymer bulletin,2005(1/2):105-113.
[13] 黎霞,魏杰,李玉宝.二氧化钛/磷灰石纳米抗菌复合材料的研究[J].功能材料,2004(01):119-121.
[14] 夏军,唐艳军,薛国新,姚晓红.壳聚糖双胍盐酸盐的制备及其对纸页增强作用的研究*[J].造纸科学与技术,2011(05):53-55.
[15] 李秀丽 .壳聚糖双胍盐酸盐的制备及在棉织物上的应用[D].青岛大学,2009.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%