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Enhancement of AgCrO_2 by double nanometric delafossite to be applied in many technological applications

机译:双纳米铜铁矿对AgCrO_2的增强作用将在许多技术应用中得到应用

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摘要

Abstract This work reports a simple, novel, low-cost and eco-friendly synthesis of AgCrO~(2)nanoparticles and its double nanometric delafossite Ag~(2)Cr~(2)O~(4)nanoparticles. The rate of synthesis is much faster than other synthesis methods and this approach is suitable for production in large scale. It is the first time to report the double nanometric delafossite from AgCrO~(2)nanoparticles at such low temperature (250 °C) and it is suitable to be applied as photocathode in a dye-sensitized solar cell, antimicrobial and many technological applications. The as-synthesized AgCrO~(2)and Ag~(2)Cr~(2)O~(4)nanoparticles, including their crystal phases, morphologies, element compositions, magnetic and optical properties, have been systematically studied. By enhancing AgCrO~(2)nanoparticles to double nanometric delafossite Ag~(2)Cr~(2)O~(4)nanoparticles, a transformation of magnetic material type has happened from superparamagnetic to ferromagnetic behavior. The optical study revealed that Ag~(2)Cr~(2)O~(4)nanoparticles had larger values of reflectance, refractive index, real and imaginary parts of dielectric constant and optical conductivity than that of AgCrO~(2)nanoparticles. An Antimicrobial application had been studied for both samples. Ag~(2)Cr~(2)O~(4)nanoparticles had better antimicrobial application than that of AgCrO~(2)nanoparticles.
机译:摘要这项工作报告了一种简单,新颖,低成本且环保的AgCrO〜(2)纳米粒子及其双纳米铜铁矿Ag〜(2)Cr〜(2)O〜(4)纳米粒子的合成方法。合成速率比其他合成方法快得多,并且该方法适合大规模生产。这是首次在如此低的温度(250°C)下从AgCrO〜(2)纳米颗粒报道双纳米铜铁矿,它适合用作染料敏化太阳能电池,抗菌剂和许多技术应用中的光阴极。系统地研究了合成后的AgCrO〜(2)和Ag〜(2)Cr〜(2)O〜(4)纳米粒子,包括它们的晶相,形貌,元素组成,磁性和光学性质。通过将AgCrO〜(2)纳米颗粒增强为双纳米铜铁矿Ag〜(2)Cr〜(2)O〜(4)纳米颗粒,磁性材料类型从超顺磁性转变为铁磁性。光学研究表明,Ag〜(2)Cr〜(2)O〜(4)纳米粒子的反射率,折射率,介电常数的实部和虚部以及电导率均大于AgCrO〜(2)纳米粒子。对两种样品均进行了抗菌应用研究。 Ag〜(2)Cr〜(2)O〜(4)纳米粒子具有比AgCrO〜(2)纳米粒子更好的抗菌作用。

著录项

  • 来源
    《Journal of materials science》 |2018年第7期|5401-5412|共12页
  • 作者单位

    Physics Department, Faculty of Science, Cairo University;

    Physics Department, Higher Institute of Engineering, New Cairo Academy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:43:33

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