私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

當前位置:群英聚首 > 論文著作 > 正文
【2023年影響因子/JCR分區:24.2/Q1】Bioinspired Superhydrophobic Surfaces Inhibiting or Promoting Microbial Contamination?
來源:趙杰教授個人網站 發布日期:2023-07-11
作者:Yuxiang Chen, Ji Ao, Jiteng Zhang, Jie Gao, Lingwan Hao, Rujian Jiang, Zhihui Zhang, Zhenning Liu, J
關鍵字:Bioinspired superhydrophobic surface, Microbial contamination,Viral transmission,Surface modification strategy,Bacterial adhesion
論文來源:期刊
具體來源:Materials Today
發表時間:2023年
Bioinspired superhydrophobic surfaces have offered unique advantages in combating microbial contaminations involving fungi, bacteria, and viruses, especially during the global COVID-19 pandemic. It has been widely accepted that the biofouling-resistant capability of the superhydrophobic substrates principally arises from the entrapped air-layer. With this principle, substantial consideration is devoted to designing superhydrophobic surfaces with an emphasis on stabilizing the air-layer. However, some superhydrophobic surfaces were proven to promote the attachment of microorganisms in certain cases, implying that the mechanisms governing the capacity of superhydrophobic surfaces to mediate microbial adhesion still need to be better understood. Here, we review recent efforts in elucidating the inter-relationship between surface superhydrophobicity and microbial adhesion to make a generalizable consensus on why some superhydrophobic surfaces can repel microbes while others may be incapable. In this context, we shed light on the fact that surface topography and low surface energy are not only the requirements to develop superhydrophobic surfaces but also play a decisive role in endowing surfaces with improved anti-adhesive properties. The obtained viewpoints ideally pave the way for engineering functional superhydrophobic surfaces that effectively reduce microbial contamination on a predetermined basis and can potentially be applied to high-touch surfaces, biomaterial surfaces, personal protective equipment (PPE), and other medical equipment.
Copyright © 2005 Polymer.cn All rights reserved
中國聚合物網 版權所有
經營性網站備案信息

京公網安備11010502032929號

工商備案公示信息

京ICP證050801號

京ICP備12003651號

主站蜘蛛池模板: 汉川市| 漳浦县| 浏阳市| 鹤岗市| 华蓥市| 资溪县| 赫章县| 绥棱县| 兰考县| 光山县| 神木县| 乌拉特中旗| 汝州市| 平邑县| 芒康县| 沧州市| 天台县| 龙岩市| 舞阳县| 德兴市| 康平县| 西乌珠穆沁旗| 长葛市| 张家界市| 南丹县| 临武县| 高青县| 三门县| 花莲县| 建瓯市| 温泉县| 盐津县| 海南省| 安溪县| 河曲县| 图木舒克市| 宁武县| 石泉县| 孟津县| 浮山县| 井研县|