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Biogenic materialization using pear extract intended for the synthesis and design of ordered gold nanostructures

机译:使用梨提取物的生物实现,旨在用于有序金纳米结构的合成和设计

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摘要

We report a facile, green, and biomimetic reduction route coupled with the synthesis and biomolecular-based well-defined self-assembly of gold nanoparticles (AuNPs), without using any organic solvents or any toxic reducing or capping agents. To demonstrate the potential use of pear phytochemicals for the materialization of AuNPs, we propose that the available biomolecules appending on the AuNPs surface and subsequently observed their importance in assembly designs. The spatial array of AuNPs was investigated precisely by using a high-resolution transmission electron microscopy. This method offered biomolecular capping of the AuNPs during and after synthesis and thus provides a promising alternative for nanosurface engineering. The peptide and other biomolecule-based coatings on the AuNPs are applicable for their stability and healthy capping. The hybrid “biomolecular-inorganic” system will be suitable for safe application in medical and diagnostic fields.
机译:我们报告了一种简便,绿色和仿生的还原途径,以及金纳米颗粒(AuNPs)的合成和基于生物分子的明确定义的自组装,无需使用任何有机溶剂或任何有毒的还原或封端剂。为了证明梨植物化学物质在AuNPs的物化中的潜在用途,我们建议将可用的生物分子附着在AuNPs表面上,并随后观察其在装配设计中的重要性。 AuNPs的空间阵列通过使用高分辨率透射电子显微镜精确地研究。该方法提供了在合成过程中和合成后对AuNPs进行生物分子封端的方法,因此为纳米表面工程提供了有希望的替代方法。 AuNPs上的肽和其他基于生物分子的涂层适用于其稳定性和健康的封端。混合“生物分子-无机”系统将适用于医疗和诊断领域的安全应用。

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  • 来源
    《Journal of Materials Science》 |2011年第14期|p.4741-4747|共7页
  • 作者单位

    Department of Life Science, Research Institute for Natural Sciences, Hanyang University, Seoul, 133-791, Korea;

    Marine Living Resource Research Department, Korea Ocean Research and Development Institute, Seoul, Korea;

    Department of Physics, Hanyang University, Seoul, 133-731, Korea;

    Department of Life Science, Research Institute for Natural Sciences, Hanyang University, Seoul, 133-791, Korea;

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