以紫Physalis purviana果实花萼叶提取物为原料制备CeO2-TiO2纳米复合材料及其抑菌和抗氧化活性

Bhaskar Dwivedi , Diksha Bhardwaj , Praveen Kumar Atal , Deepika Choudhary
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引用次数: 0

摘要

绿色合成已成为纳米技术的一种变革性方法,其环保、安全和可持续的原则推动了绿色合成的发展。在这项研究中,我们提出了一种生物启发的方法,利用从秘鲁Physalis purviana果实外花萼叶中提取的植物化学物质,在超声波下合成CeO₂-TiO₂纳米复合材料(NCs)。这种环保技术不仅消除了对危险化学品的需求,而且利用了生物废物的自然还原和封顶特性。利用傅里叶变换红外光谱(FTIR)、紫外可见光谱(UV-Vis)、透射电子显微镜(TEM)、扫描电子显微镜(SEM)、能量色散x射线光谱(EDX)、x射线衍射(XRD)和热重分析(TGA)对合成的nc进行了全面表征。测定其对革兰氏阳性菌和革兰氏阴性菌的抑菌活性及抗氧化能力。这项工作强调了来自果实花萼叶的植物化学物质作为生物模板的显着作用,促进了CeO₂-TiO₂NCs的可持续生产。超声辅助合成为纳米复合材料的制造提供了一种快速、节能和可扩展的工艺,展示了优异的生物相容性、均匀性和稳定性。此外,该方法不仅为纳米颗粒合成中使用危险化学品的挑战提供了解决方案,而且还通过使农业副产品增值来促进废物管理。我们的研究结果强调了绿色合成的CeO₂-TiO₂NCs在生物医学和制药行业的应用前景,为未来环保纳米技术的发展铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bio-inspired facile synthesis of CeO2-TiO2 nanocomposites using calyx leaves extract of Physalis peruviana fruits and their biological assessments: Antibacterial and antioxidant activity
Green synthesis has emerged as a transformative approach in nanotechnology, driven by its environmentally friendly, safe, and sustainable principles. In this study, we present a bio-inspired method for the synthesis of CeO₂-TiO₂ nanocomposites (NCs) using phytochemicals extracted from the outer calyx leaves of Physalis peruviana fruits, under ultrasound sonication. This eco-friendly technique not only eliminates the need for hazardous chemicals but also capitalizes on the natural reducing and capping properties of biowaste. The synthesized NCs were thoroughly characterized using fourier-transform infrared spectroscopy (FTIR), UV-Vis spectroscopy, transmission electron microscopy (TEM), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), X-ray diffraction (XRD), and thermogravimetric analysis (TGA). Their antibacterial activity was evaluated against various Gram-positive and Gram-negative bacteria, and their antioxidant potential was also assessed. This work highlights the remarkable role of phytochemicals from fruit calyx leaves as bio-templates, facilitating the sustainable production of CeO₂-TiO₂ NCs. The ultrasound-assisted synthesis provides a rapid, energy-efficient, and scalable process for nanocomposite fabrication, demonstrating excellent biocompatibility, uniformity, and stability. Furthermore, the approach not only offers a solution to the challenge of hazardous chemical use in nanoparticle (NPs) synthesis but also contributes to waste management by valorizing agricultural by-products. Our findings underscore the promising applications of green-synthesized CeO₂-TiO₂ NCs in the biomedical and pharmaceutical industries, paving the way for future advancements in eco-friendly nanotechnology.
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CiteScore
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