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用于优异抗菌和抗氧化性能的新型二维Ti3C2-BiOCl纳米颗粒

Emerging Two-Dimensional Ti3C2-BiOCl Nanoparticles for Excellent Antimicrobial and Antioxidant Properties.

作者信息

Rathina Gesav V Ra, Geetha A, Vasugi S, Balachandran S, Ilangovar I G K

机构信息

Department of Physiology, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Science, Saveetha University, Chennai, IND.

出版信息

Cureus. 2024 Jul 22;16(7):e65080. doi: 10.7759/cureus.65080. eCollection 2024 Jul.

Abstract

Introduction  MXenes (TiC) represent a group of two-dimensional inorganic compounds, produced through a top-down exfoliation method. They comprise ultra-thin layers of transition metal carbides, or carbonitrides, and exhibit hydrophilic properties on their surfaces. Utilizing TiC BiOCl nanoparticles for their antimicrobial and antioxidant attributes involves enhancing synthesis, processing, and characterization techniques. Materials and method  To prepare TiC MXene, dissolve 1.6 g of LiF in 20 ml of 9M HCl. Slowly add 1 g of TiAlC (titanium aluminum carbide) powder to the solution while stirring. Etch at 35°C for 24 h to remove Al layers from TiAlC, leaving TiC layers. Wash the mixture with distilled water and ethanol until the pH is around 6. Collect the washed sediment by centrifugation and sonicate it in distilled water for 1 h. Centrifuge to remove unexfoliated particles. For BiOCl synthesis, dissolve 2 mmol of Bi(NO)·5HO (bismuth nitrate pentahydrate) in 10 ml of 2M HCl (hydrochloric acid) with 0.5 g of PVP (polyvinylpyrrolidone). Transfer the solution to a Teflon-lined autoclave, fill it with distilled water up to 80%, and heat at 160°C for 24 h. Collect the precipitate by centrifugation, wash, and dry at 60°C for 12 h. Disperse BiOCl nanoparticles in distilled water, sonicate for 30 min, add TiC MXene dispersion, stir for 2 h, collect, wash, dry, and calcine at 400°C for 2 h. Result  The Scanning Electron Microscope (SEM) utilizes electrons, rather than light, to generate highly magnified images. Energy Dispersive X-ray Spectroscopy (EDS) complements SEM by analyzing the X-ray spectrum emitted when a solid sample is bombarded with electrons, enabling localized chemical analysis. In SEM imaging, incorporating an X-ray spectrometer allows for both element mapping and point analysis. The SEM image of the prepared samples reveals accordion-like multilayer structures in BiOCl, characterized by thin sheet-like structures with numerous pores. EDS, relying on X-ray emissions from electron bombardment, facilitates detailed chemical analysis at specific locations within the sample.  Conclusion  Our research has shed light on the synthesis and characterization processes of two-dimensional TiC BiOCl nanoparticles, revealing their remarkable antimicrobial and antioxidant properties.

摘要

引言 MXenes(TiC)是一类通过自上而下的剥离方法制备的二维无机化合物。它们由超薄的过渡金属碳化物或碳氮化物层组成,并且在其表面具有亲水性。利用TiC BiOCl纳米颗粒的抗菌和抗氧化特性需要改进合成、加工和表征技术。

材料与方法 为制备TiC MXene,将1.6 g LiF溶解于20 ml 9M HCl中。在搅拌的同时,将1 g TiAlC(碳化钛铝)粉末缓慢加入溶液中。在35°C下蚀刻24小时以从TiAlC中去除Al层,留下TiC层。用蒸馏水和乙醇洗涤混合物,直到pH值约为6。通过离心收集洗涤后的沉淀物,并在蒸馏水中超声处理1小时。离心以去除未剥离的颗粒。对于BiOCl的合成,将2 mmol Bi(NO)·5HO(五水合硝酸铋)溶解于10 ml含有0.5 g PVP(聚乙烯吡咯烷酮)的2M HCl(盐酸)中。将溶液转移至内衬聚四氟乙烯的高压釜中,加入蒸馏水至80%,并在160°C下加热24小时。通过离心收集沉淀物,洗涤并在60°C下干燥12小时。将BiOCl纳米颗粒分散在蒸馏水中,超声处理30分钟,加入TiC MXene分散体,搅拌2小时,收集、洗涤、干燥并在400°C下煅烧2小时。

结果 扫描电子显微镜(SEM)利用电子而非光来生成高放大倍数的图像。能量色散X射线光谱仪(EDS)通过分析固体样品被电子轰击时发射的X射线光谱来补充SEM,从而实现局部化学分析。在SEM成像中,结合X射线光谱仪可进行元素映射和点分析。制备样品的SEM图像显示BiOCl中存在类似手风琴的多层结构,其特征是具有许多孔隙的薄片结构。EDS依靠电子轰击产生的X射线发射,有助于在样品内特定位置进行详细的化学分析。

结论 我们的研究揭示了二维TiC BiOCl纳米颗粒的合成和表征过程,揭示了它们显著的抗菌和抗氧化特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a41/11337143/de9f58cb3e0c/cureus-0016-00000065080-i01.jpg

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