首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Rapid and green synthesis of cadmium telluride quantum dots with low toxicity based on a plant-mediated approach after microwave and ultrasonic assisted extraction: Synthesis, characterization, biological potentials and comparison study
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Rapid and green synthesis of cadmium telluride quantum dots with low toxicity based on a plant-mediated approach after microwave and ultrasonic assisted extraction: Synthesis, characterization, biological potentials and comparison study

机译:微波和超声波辅助提取后,基于植物介导的方法的猪碲化镉量子点的快速和绿色合成低毒性:合成,表征,生物潜力和比较研究

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摘要

In this work, a quick, facile and efficient approach was presented for green synthesis of cadmium telluride quantum dots (CdTe QDs) based on an aqueous extract of the Ficus johannis plant. Two extraction methods involving microwave assisted extraction (MWAE; 90 and 270 w; 15 min) and ultrasonic assisted extraction (USAE; 15 min; 45 degrees C) were performed as eco-friendly, effective, green and fast techniques for the extract preparation of the fruit's plant. The as-prepared plant extracts were used as natural stabilizing precursors in the synthesis of CdTe QDs. The synthesized QDs were characterized using various techniques. The average particle size of the QDs from the X-ray diffraction patterns was calculated to be 1.2 nm. UV-Vis absorption and fluorescence spectroscopic studies show a wide absorption band from 400 to 425 nm and a maximum emission peak around 470 nm, which confirmed the successful synthesis of CdTe QDs via the applied synthetic method. After synthesis and characterization of the samples, the antimicrobial properties, genotoxicity, toxicity and antifungal activities of the as-prepared CdTe QDs were investigated. In addition, antioxidant properties of the samples (QDs and extracts), were evaluated by different antioxidant assays. The results indicate the significant antimicrobial activity of the extract and CdTe QDs samples, with negligible toxicity and genotoxicity impacts.
机译:在这项工作中,基于Ficus Johannis植物的水提取物,提出了一种快速,容易和有效的方法,用于绿色合成碲化镉量子点(CdTe QDS)。两种涉及微波辅助提取的提取方法(MWAE; 90和270 W; 15分钟)和超声辅助提取(USAE; 15分钟; 45摄氏度)作为ECO友好,有效,绿色和快速技术进行了提取物制备水果的植物。用作合成CdTe QDS的制备植物提取物作为天然稳定的前体。使用各种技术表征合成的QD。从X射线衍射图案的QD的平均粒度计算为1.2nm。 UV-Vis吸收和荧光光谱研究表明,宽吸收带为400至425nm的宽吸收带和约470nm的最大排放峰,这证实了通过应用的合成方法成功地合成CdTe Qds。在合成和表征样品后,研究了制备的制备的CDTE QDS的抗微生物性质,遗传毒性,毒性和抗真菌活性。此外,通过不同的抗氧化剂测定评估样品(QD和提取物)的抗氧化性质。结果表明提取物和CDTE QDS样品的显着抗微生物活性,毒性可忽略不计和遗传毒性。

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