杀菌剂
模具
抗真菌
材料科学
生物相容性
真菌生长
杀生物剂
纳米技术
生物
微生物学
波动性(金融)
作者
Antong Ma,Wenwen Han,Xu Yan,Shengli Fan,Xiaoqi Xu,Yapei Wang
标识
DOI:10.1021/acsami.5c26118
摘要
Benefiting from the advantages of excellent biocompatibility and remarkable antifungal performance, plant essential oils have recently become promising alternatives to conventional fungicides, yet suffer from the challenges of high volatility, short-lived efficacy, and poor target specificity. In this research, a novel type of essential-oil-based fungal inhibitor was developed, which presented a microenvironment-adaptive fungicidal behavior triggered by fungal growth. With stimulus-responsive cleavable linkages on the backbone, such an inhibitor could remain dormant under normal conditions while releasing antifungal essential oil with the presence of physiological water and acidic metabolites produced by fungi. The favorable properties of reduced volatility and controllable release performance endowed the fungal inhibitor with a long-term fungicidal performance for the preservation of cultural relics against mold contamination. This innovative concept of "microenvironment-adaptive fungal inhibitor triggered by fungi" offers a promising platform for developing next-generation fungicidal materials that are capable of controlling mold contamination in settings where stringent environmental and safety standards are necessary.
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