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Synergistic Effect of Silk Fibroin/Chlorogenic Acid/Citric Acid on Anti-ultraviolet and Antibacterial Properties of Cotton Fabric

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In order to obtain a durable anti-ultraviolet and antibacterial cotton fabric, silk fibroin, honeysuckle extract (chlorogenic acid) and citric acid were used to prepare a compound environment-friendly finishing agent, and then the cotton fabric was modified in this paper. Micro-morphology and properties were compared between cotton fabrics finished with a composite solution of silk fibroin/chlorogenic acid/citric acid and those finished first with silk fibroin then chlorogenic acid. Results showed that amidation and esterification crosslinking reactions occurred between the compounds and cotton fibers. Cotton fabric treated with the composite solution had higher UPF value (>90 after 30 launderings) and antibacterial rates (>95% for Staphylococcus aureus and Escherichia coli). There existed strong covalent bonds and good synergistic effects among silk fibroin, citric acid and chlorogenic acid, which could endow the cotton fabric with more durable anti-ultraviolet and antibacterial properties.
Rocznik
Strony
76--82
Opis fizyczny
Bibliogr. 16 poz., rys.
Twórcy
autor
  • School of Textiles and Clothes, Yancheng Institute of Technology, Yancheng224051, Jiangsu, P.R.China
  • College of Textile and Clothing Engineering, Soochow University, Suzhou, 215021, Jiangsu, P.R.China
autor
  • School of Textiles and Clothes, Yancheng Institute of Technology, Yancheng224051, Jiangsu, P.R.China
Bibliografia
  • 1. Li Yi, Yang Jianzhong, Guo Changsheng. Research Status and Development Trends of Cotton Fiber. Journal of Chengdu Textile College[J]. 2016; 33(2): 174-177+185.
  • 2. Chen Li. Research progress in cotton modification technology. Modern Textile Technology[J]. 2006; (6): 50-52.
  • 3. Zhang Jianxiang, Ren Jizhong, Tian Lili, et al. Anti-ultraviolet compound finishing of cotton fabrics. Printing and Dyeing[J]. 2010; 36(10): 29-31.
  • 4. Lin YanPing. Properties of viscose fibers finished by silk fibroin. Wool Textile Journal[J]. 2017; 8(45): 55-57.
  • 5. Yin Lihua, Mou Xing, Yu Zhanhai, et al. Research development in preparation of silk fibroin and its composite scaffolds. Materials Reports[J]. 2013; 27(17): 110-112.
  • 6. Zhang Chao, Zhang YaoPeng, Shao HuiLi, et al. Hybrid silk fibers dryspun from regenerated silk fibroin/graphene oxide aqueous solution. ACS Applied Materials Interfaces[J]. 2016; 8(5): 3349-3358.
  • 7. Li ZeHao, Wang Li, Dai Honglian, et al. Fabrication characterization and in vitro evaluation of biomimetic silk fibroin porous scaffolds via supercritical CO2 technology. The Journal of Supercritical Fluids[J]. 2019; 150: 86-93.
  • 8. Xu Zongpu, Shi Liyang, Yang Mingying, et al. Preparation and biomedical applications of silk fibroin nanoparticles composites with enhanced properties. Materials Science and Engineering C[J]. 2019; 95: 302-311.
  • 9. Ma Yan, Li Zhi, Ran Ruilong, et al. Research on Application of silk in biomaterial field[J]. Materials Review[J]. 2018; 3(1): 86-94.
  • 10. Sun Shasha, Tang Rencheng. Adsorption and UV protection properties of extract from lonicera japonica thunb on nylon. Printing and Dyeing[J]. 2009; 22: 4-8.
  • 11. LI Jie, Wang Xueting, Wu Yinpin, et al. Research Progress on Extraction Methods of Chlorogenic Acid from Honeysuckle. Anhui Agricultural Sciences[J]. 2014; 42(16): 4969-4970+4973.
  • 12. Tajik Narges, Tajik Mahboubeh, Mack Isabelle, et al. The potential effects of chlorogenic acid, the main phenolic components in coffee, on health: a comprehensive review of the literature. European journal of nutrition[J]. 2017; 56(7): 2215-2244.
  • 13. Yang Qiongying. Preparation of filin protein/chitosan microsphere and its finishing on cotton fabric. Shanghai Textile Science & Technology[J]. 2023; 51(2): 12-15.
  • 14. Lin Hong, Yao Lirong, Chen Yuyue, et al. Structure and Properties of Silk Fibroin Modified Cotton, Fibers and Polymers[J]. 2008; 9(2): 113-120.
  • 15. Xu Yunhui, Li Jifeng, Wang Yunxia, et al. Structure and properties of cotton fabric by amide modification of silk fibroin. Journal of Textile Research[J]. 2017; 38(2): 135-139.
  • 16. Tao Wei, Li Mingzhong, Zhao Chunxia. Structure and properties of regenerated antheraea pernyi silk fibroin in aqueous solution. Biological Macromolecules[J]. 2006; (11): 1-7.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-64b361a5-42c5-4c36-b378-61a9894ad0f1
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