羧甲基壳聚糖银:一种增强木器涂料机械性能和抗菌效果的新材料

IF 2.8 4区 材料科学 Q2 CHEMISTRY, APPLIED
Senchi Li, Na Zhang, Lai Peng, Yang Zhang
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引用次数: 0

摘要

微生物造成的木材及其产品的退化和侵蚀仍然是一个持续的挑战,造成重大的经济和财产损失,并由于病原微生物的存在对使用者的健康构成潜在威胁。鉴于最近的COVID-19大流行,由于对私人健康的日益关注,这一问题在现代社会变得越来越紧迫。本文采用微波辅助法制备羧甲基壳聚糖纳米银(CMCS-Ag),并将CMCS-Ag与水性涂料进行超声混合,得到水性抗菌木器涂料。与相同粒径的商用纳米银相比,由于体系的独特,CMCS-Ag具有更强的抗菌效果和更低的银离子释放量。CMCS-Ag在水性涂料中表现出有效的分散性,从而显著提高了涂料的机械性能和抗菌性能。CMCS-Ag含量为10 wt%时,涂层具有较高的弹性模量、抗拉强度和邵氏硬度,分别比对照提高78%、33%和69%。此外,抗菌试验证实,CMCS-Ag木器涂料可抑制大肠杆菌(24小时灭菌率:99.99%)、黑霉(28天不腐蚀)和土壤腐烂真菌(56天不腐蚀),同时最大限度地减少木制品外观恶化和微生物侵蚀造成的质量损失。这些发现不仅为增强木材及其产品的抗微生物性提供了宝贵的见解,而且还减少了人们接触病原体的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carboxymethyl chitosan-silver: a novel material to augment mechanical properties and antimicrobial efficacy in wood coatings

The degradation and erosion of wood and its products caused by microorganisms remains a persistent challenge, which leads to significant economic and property losses and poses a potential health threat to users due to the presence of pathogenic microorganisms. In light of the recent COVID-19 pandemic, this issue has become increasingly urgent to address in modern society due to the increasing focus on private health. In this work, the carboxymethyl chitosan nano-silver (CMCS-Ag) was prepared through a microwave-assisted method, where the CMCS-Ag was ultrasonically blended with waterborne paint to obtain a waterborne antimicrobial wood coatings. Compared with commercial nano-silver with the same particle size, due to the unique system, the CMCS-Ag exhibited superior antibacterial efficacy and lower Ag+ release. CMCS-Ag exhibited effective dispersion within waterborne coatings, leading to a significant improvement in both the mechanical and antimicrobial performance of the coatings. With a CMCS-Ag content of 10 wt%, the coating films exhibit high elastic modulus, tensile strength and shore hardness, 78%, 33% and 69% higher than the control, respectively. Moreover, antimicrobial tests confirm that CMCS-Ag wood coatings inhibit Escherichia coli (24 h sterilization rate: 99.99%), Aspergillus niger (28 days without erosion), and soil decay fungi (56 days undecayed), while minimizing wood product appearance deterioration and mass loss from microbial erosion. These findings not only provide valuable insights into enhancing the antimicrobial of wood and its products but also reduce possibilities for people exposed to pathogens.

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来源期刊
Journal of Coatings Technology and Research
Journal of Coatings Technology and Research 工程技术-材料科学:膜
CiteScore
4.30
自引率
8.70%
发文量
130
审稿时长
2.5 months
期刊介绍: Journal of Coatings Technology and Research (JCTR) is a forum for the exchange of research, experience, knowledge and ideas among those with a professional interest in the science, technology and manufacture of functional, protective and decorative coatings including paints, inks and related coatings and their raw materials, and similar topics.
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