通过绿色途径制备 Semal-ZnO 纳米粒子,在各种水生环境中实现太阳能驱动的有毒染料高效催化

Ratan Lal, Tripti Gour, Narendra Dave, Niharika Singh, Jigyasu Yadav, Afshin Khan, Akshita Jain, L. Agarwal, Yogesh Kumar Sharma, Kuldeep Sharma
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摘要

这项研究成功地展示了一种利用偃松叶水提取物合成 Semal-ZnO 纳米粒子(NPs)的可持续且环保的方法。这些 NPs 在紫外可见光谱中约 390 纳米处出现吸收峰,能隙(Eg)为 3.11 eV。利用各种光谱和显微技术、XRD、带 EDS 的 FE-SEM 和 HR-TEM 对其形貌和粒度进行的详细分析显示,这些结晶峰属于六方相,平均晶体尺寸为 17 纳米。Semal-ZnO NPs 还表现出显著的光催化效率,能在阳光下降解从不同天然来源采集的不同水样中的亚甲基蓝(MB)和甲基橙(MO),这表明它们是很有前景的环境修复光催化剂。生物制造的 Semal-ZnO NPs 的光催化效率令人印象深刻,在阳光照射下,其对不同水样中的甲基溴和甲基橙的光降解率分别高达 99% 和 79%。因此,新型植物制造的 Semal-ZnO NPs 具有理想的光催化效率、伪一阶动力学以及在各种水生环境中分解有害染料污染物的能力,是环境的希望灯塔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green route to fabrication of Semal-ZnO nanoparticles for efficient solar-driven catalysis of noxious dyes in diverse aquatic environments
This work successfully demonstrates a sustainable and environmentally friendly approach for synthesizing Semal-ZnO nanoparticles (NPs) using the aqueous leaf extract of Bombax ceiba L. These NPs exhibit an absorption peak at approximately 390 nm in the UV-visible spectrum and an energy gap (Eg) of 3.11 eV. Detailed analyses of the morphology and particle size using various spectroscopic and microscopic techniques, XRD, FE-SEM with EDS, and HR-TEM reveal crystallographic peaks attributable to the hexagonal phase, with an average crystal size of 17 nm. The Semal-ZnO NPs also exhibit a notable photocatalytic efficiency for degrading methylene blue (MB) and methyl orange (MO) under sunlight in different water samples collected from diverse natural sources, indicating that they are promising photocatalysts for environmental remediation. The photocatalytic efficiency of the biofabricated Semal-ZnO NPs is impressive, exhibiting a photodegradation rate of up to 99% for MB and 79% for MO in different water samples under exposure to sunlight. The novel phytofabricated Semal-ZnO NPs are thus a beacon of hope for the environment, with their desirable photocatalytic efficiency, pseudo-first-order kinetics, and ability to break down noxious dye pollutants in various aquatic environments.
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