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基于生物源金、氯化银和氧化锌颗粒的牛蒡衍生复合材料作为生物医学应用和环境保护的绿色多功能平台

Burdock-Derived Composites Based on Biogenic Gold, Silver Chloride and Zinc Oxide Particles as Green Multifunctional Platforms for Biomedical Applications and Environmental Protection.

作者信息

Zgura Irina, Badea Nicoleta, Enculescu Monica, Maraloiu Valentin-Adrian, Ungureanu Camelia, Barbinta-Patrascu Marcela-Elisabeta

机构信息

National Institute of Materials Physics, Atomistilor 405A, 077125 Magurele, Romania.

General Chemistry Department, Faculty of Chemical Engineering and Biotechnologies, University "Politehnica" of Bucharest, 1-7, Polizu Street, 011061 Bucharest, Romania.

出版信息

Materials (Basel). 2023 Jan 29;16(3):1153. doi: 10.3390/ma16031153.

Abstract

Green nanotechnology is a rapidly growing field linked to using the principles of green chemistry to design novel nanomaterials with great potential in environmental and health protection. In this work, metal and semiconducting particles (AuNPs, AgClNPs, ZnO, AuZnO, AgClZnO, and AuAgClZnO) were phytosynthesized through a "green" bottom-up approach, using burdock ( L.) aqueous extract. The morphological (SEM/TEM), structural (XRD, SAED), compositional (EDS), optical (UV-Vis absorption and FTIR spectroscopy), photocatalytic, and bio-properties of the prepared composites were analyzed. The particle size was determined by SEM/TEM and by DLS measurements. The phytoparticles presented high and moderate physical stability, evaluated by zeta potential measurements. The investigation of photocatalytic activity of these composites, using Rhodamine B solutions' degradation under solar light irradiation in the presence of prepared powders, showed different degradation efficiencies. Bioevaluation of the obtained composites revealed the antioxidant and antibacterial properties. The tricomponent system AuAgClZnO showed the best antioxidant activity for capturing ROS and ABTS• radicals, and the best biocidal action against , and . The "green" developed composites can be considered potential adjuvants in biomedical (antioxidant or biocidal agents) or environmental (as antimicrobial agents and catalysts for degradation of water pollutants) applications.

摘要

绿色纳米技术是一个快速发展的领域,它涉及运用绿色化学原理来设计在环境与健康保护方面具有巨大潜力的新型纳米材料。在这项工作中,通过“绿色”的自下而上方法,利用牛蒡(Arctium lappa L.)水提取物对金属和半导体颗粒(金纳米颗粒、氯化银纳米颗粒、氧化锌、金 - 氧化锌、氯化银 - 氧化锌以及金 - 氯化银 - 氧化锌)进行了植物合成。对所制备复合材料的形态(扫描电子显微镜/透射电子显微镜)、结构(X射线衍射、选区电子衍射)、成分(能谱分析)、光学(紫外 - 可见吸收光谱和傅里叶变换红外光谱)、光催化及生物性能进行了分析。通过扫描电子显微镜/透射电子显微镜以及动态光散射测量确定了颗粒尺寸。通过zeta电位测量评估了植物颗粒呈现出的高和中等物理稳定性。利用制备的粉末在太阳光照射下对罗丹明B溶液进行降解,以此研究这些复合材料的光催化活性,结果显示出不同的降解效率。对所获得复合材料的生物评估揭示了其抗氧化和抗菌性能。三元体系金 - 氯化银 - 氧化锌对捕获活性氧和ABTS•自由基表现出最佳的抗氧化活性,并且对大肠杆菌、金黄色葡萄球菌和白色念珠菌具有最佳的杀菌作用。这些“绿色”研发的复合材料可被视为生物医学(抗氧化剂或杀菌剂)或环境(作为抗菌剂和水污染物降解催化剂)应用中的潜在佐剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b4a/9919592/b8f4f47ded00/materials-16-01153-g001.jpg

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