首页> 外文期刊>Journal of nanoscience and nanotechnology >Microscale size triangular gold prisms synthesized using Bengal gram beans (Cicer arietinum L.) extract and HAuCl4 center dot 3H(2)O: A green biogenic approach
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Microscale size triangular gold prisms synthesized using Bengal gram beans (Cicer arietinum L.) extract and HAuCl4 center dot 3H(2)O: A green biogenic approach

机译:使用孟加拉克豆(Cicer arietinum L.)提取物和HAuCl4中心点3H(2)O合成的微米级大小的三角形金三棱镜:一种绿色的生物方法

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摘要

Single step and completely green room temperature biosynthesis of microscale size triangular gold prisms (similar to 25 nm thick) using remnant water collected from soaked Bengal gram beans (Cicer arietinum L.) is reported for the first time. Extracellular transport of protein and biomolecules from protein rich gram beans mediate the reduction of aqueous Au3+ ions and direct the growth of triangular prisms. The growth of triangular gold prisms is monitored by UV-vis spectrometer and supported by complementary characterizations using UV-vis/NIR, TEM, EDS, light microscope, XRD, XPS, ATR-FTIR, and ESI-MS. Plausible mechanism for the formation of microscale size triangular gold prisms is discussed. Effect of varying compositions of gram bean extract and aqueous Au3+ solution governing the morphology of the resultant gold particles is also investigated. Procuring the reducing, growth directing, and stabilizing molecules from the remnant water (extract), which normally would have been a kitchen waste, and water as a universal solvent makes it a completely green process displaying both environmental and economic advantages. Furthermore, this biosynthesis approach is simple, green, and an eco-friendly alternative to chemical synthesis of triangular gold prisms with rates comparable to chemical methods.
机译:首次报道了使用从浸泡过的孟加拉克豆(Cicer arietinum L.)中收集的残留水进行的一步法和完全绿色室温的微型生物合成三角形金三角棱镜(近似25 nm厚)。来自富含蛋白质的克豆的蛋白质和生物分子的细胞外转运介导了Au3 +离子水溶液的还原并指导了三棱柱的生长。三角形金棱镜的生长通过紫外可见光谱仪进行监控,并通过紫外可见/近红外,TEM,EDS,光学显微镜,XRD,XPS,ATR-FTIR和ESI-MS的互补表征得到支持。讨论了形成微米级大小的三角形金棱镜的合理机制。还研究了不同种类的提取物和组成最终金颗粒形态的Au3 +水溶液的影响。从残留的水(提取物)中获得还原,生长导向和稳定的分子(通常是厨房垃圾),而水作为通用溶剂,使其成为一个完全绿色的过程,既显示环境又具有经济优势。此外,这种生物合成方法简单,绿色,是可替代化学方法生产的三角形金棱镜的环保替代品。

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