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Nickel nanoparticle synthesis using Camellia Sinensis as reducing and capping agent: Growth mechanism and photo-catalytic activity evaluation

机译:镍纳米粒子合成使用Camellia Sinensis作为还原和封端剂:生长机制和光催化活性评估

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摘要

Recently, the biosynthesis of nanoparticle attracted the attention of scientific community due to its simplicity, ease and eco-friendly nature. In the present study, Camellia Sinensis (C. Sinensis) leaves extract was employed for the synthesis of nickel nanoparticles (NiNPs). The fabricated NiNPs were characterized by scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX) and X-ray diffraction techniques. The photocatalytic activity (PCA) was evaluated by degrading crystal violet (CV) dye. The NiNPs size was in the range of 43.87-48.76 nm, spherical in shape and uniformly distributed with magnetization saturation of 0.073 emu/g. The NiNPs showed promising PCA under solar light irradiation. At optimized conditions, up to 99.5% CV dye degradation was achieved. Results revealed that biosynthesis can be adopted for the synthesis of NiNPs in nano-size range since it is simple, cost effective and eco-friendly in nature versus physico-chemical methods. (C) 2017 Published by Elsevier B.V.
机译:最近,纳米粒子的生物合成引起了科学界的关注,因为其简单,缓解和环保性质。在本研究中,山茶花Sinensis(C. Sinensis)叶提取物用于合成镍纳米颗粒(NINPS)。通过扫描电子显微镜(SEM)和能量分散X射线(EDX)和X射线衍射技术,表征制造的血管。通过降解晶体紫(CV)染料来评价光催化活性(PCA)。 NINPS尺寸在43.87-48.76nm,形状球形,均匀分布,磁化饱和度为0.073 emu / g。在太阳光照射下,豆荚显示有前途的PCA。在优化的条件下,实现了高达99.5%的CV染料降解。结果表明,生物合成可以用于纳米尺寸范围内的血管生物合成,因为它的性质简单,成本效益和生态友好,与物理化学方法。 (c)2017年由Elsevier B.V发布。

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