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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Construction of heterostructured g-C3N4/ZnO/cellulose and its antibacterial activity: experimental and theoretical investigations
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Construction of heterostructured g-C3N4/ZnO/cellulose and its antibacterial activity: experimental and theoretical investigations

机译:异质结构G-C3N4 / ZnO /纤维素的构建及其抗菌活性:实验和理论研究

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摘要

A g-C3N4/ZnO/cellulose ternary composite (labeled as CNZCel) with an ordered structure and excellent antibacterial properties has been successfully synthesized via a facile method. Its morphology, microstructure and components have been analyzed by using XRD, SEM, TEM and EDS, and the results corroborate the co-existence of three components in the ternary composite. It is revealed that ZnO particles are connected to the layered g-C3N4 and simultaneously attached to the cellulose substrate. This microstructural feature is also borne out by the relativistic density functional study of a finite g-C3N4-ZnO-cellulose cluster. Both experimental and theoretical results unravel that the interfacial bonding interactions in the ternary composite improve electron transfer among components and enable high-efficiency spatial separation of photogenerated electrons and holes. Consequently, good antibacterial performance of the composite has been found in tests. This study provides the prospect of preparing low-cost and environment-friendly food packaging materials, which are also endowed with excellent antibacterial activity.
机译:通过容易法成功地合成了具有有序结构和优异的抗菌性能的G-C3N4 / ZnO /纤维素三元复合(标记为CNZCEL)。其形态,结构和部件已通过使用X射线衍射,SEM,TEM和EDS进行分析,结果证实了三种成分的共存在三元复合物。揭示ZnO颗粒与层状G-C3N4连接并同时连接到纤维素衬底。该微观结构特征也被有限G-C3N4- ZnO-纤维素簇的相对论密度官能研究承载。实验和理论结果解开:三元复合材料中的界面粘合相互作用改善了组件之间的电子传递,使光生电子和孔的高效空间分离。因此,已经发现了复合材料的良好抗菌性能。本研究提供了制备低成本和环保食品包装材料的前景,也赋予了优异的抗菌活性。

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