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Yucca-derived synthesis of gold nanomaterial and their catalytic potential

机译:丝兰衍生的金纳米材料的合成及其催化潜力

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摘要

AuNPs ranging in 20 to 300 nm size were synthesized at a room temperature using Yucca filamentosa leaf extract. Diverse nanomaterial morphologies were obtained by varying the extract concentration, reaction pH, and temperature. While low volumes of extract (0.25 and 0.5 mL) induced the formation of microscale Au sheets with edge length greater than 1 μm, high volumes yielded spherical particles ranging from 20 to 200 nm. Varying pH of the solution significantly influenced the particle shape with the production of largely spherical particles at pH 5 to 6 and truncated triangles at pH 2. Separation of multidimensional nanostructures was achieved using a novel method of sucrose density gradient centrifugation. The catalytic function of Yucca-derived AuNPs was demonstrated by degradation of a wastewater dye: methylene blue using spectrophotometric measurements over time. Treatment with Au nanosheets and spheres demonstrated methylene blue degradation approximately 100% greater than the activity in control at 60 min.
机译:使用丝兰丝叶提取物在室温下合成尺寸为20至300 nm的AuNP。通过改变提取物的浓度,反应的pH值和温度来获得不同的纳米材料形态。低体积的提取物(0.25和0.5 mL)诱导了边长大于1μm的微米级金薄片的形成,而高体积的金球形颗粒则在20至200 nm范围内。溶液的不同pH值会显着影响颗粒形状,pH值为5至6时会产生大量球形颗粒,pH值为2时会产生截头三角形。使用新型蔗糖密度梯度离心方法可实现多维纳米结构的分离。丝兰衍生的AuNPs的催化功能通过使用分光光度法随时间推移的废水染料:亚甲蓝的降解来证明。用Au纳米片和球体进行的处理表明,亚甲基蓝的降解比60分钟时的对照活性高约100%。

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