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Screening of microalgae for biosynthesis and optimization of Ag/AgCl nano hybrids having antibacterial effect

机译:用于生物合成的微藻和抗菌作用的Ag / AgCl纳米杂交种的微藻筛选

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Here we report a facile and novel bio-synthesis technique, using algal extract to reduce silver metal ions into Ag/AgCl nanoparticles. Different concentrations of metallic precursors of silver nitrate (0.1 mM, 0.2 mM, 0.5 mM and 1 mM) were tested with alcoholic extract prepared from biomass of Chlorella sp. for nanoparticle biosynthesis which was screened out of four species namely Chlorella sp., Lyngbya putealis, Oocystis sp. and Scenedesmus vacuolatus. The biomolecules present in the alcoholic extract assisted in the synthesis of nanoparticles by reducing the metallic salt to metal ions and acting as capping agents in order to stabilize the particles. The synthesized particles were characterized for physico-chemical properties. DLS analysis of particles prepared from Chlorella sp. shows the particles with size of 90.6 nm. These biosynthesized nanoparticles show great potential applications in antibacterial activity.
机译:在这里,我们报告了藻类提取物以将银金属离子减少到Ag / AgCl纳米颗粒中的裂缝和新的生物合成技术。 用由小球测量的生物量制备的酒精萃取液测试不同浓度的硝酸银(0.1mm,0.2mm,0.5mm和1mm)。 对于纳米粒子生物合成,其中筛选出四种物种,即小球藻SP。,Lyngbya putealis,oocystis sp。 和scenedesmus vacuolatus。 通过将金属盐还原成金属离子并用作封端剂以稳定颗粒来辅助纳米颗粒的醇提取物中的生物分子辅助纳米颗粒。 合成的颗粒的特征在于物理化学性质。 DLS分析来自小球藻SP的颗粒。 显示尺寸为90.6nm的颗粒。 这些生物合成的纳米颗粒在抗菌活性中显示出巨大的潜在应用。

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    《RSC Advances》 |2019年第44期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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