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Tuning optical properties of self-assembled nanoparticle network with external optical excitation

机译:外部光学激发的自组装纳米粒子网络调谐光学性质

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摘要

DNA-driven self-assembly enables precise positioning of the colloidal nanoparticles owing to specific Watson-Crick interactions. Another important feature of this self-assembly method is its reversibility by controlling the temperature of the medium. In this work, we study the potential of another mechanism to control the binding/unbinding process of DNA-functionalized gold nanoparticles. We employ laser radiation that can be absorbed by the gold nanoparticles to heat their network and disassociate it. Here, we show that we can actively control the optical properties of the nanoparticle network by external optical excitation. We find out that by irradiating the structure with a green hand-held laser, the total transmittance can increase by ~30% compared to the transmittance of the sample not irradiated by the laser. Similarly, the optical microscopy images indicate the transformation of the nanoparticle network from opaque to transparent, while the nanoparticles formed a network again after the laser irradiation stopped. Our results prove that the optical excitation can be used to tailor the structure and thus the optical properties of the DNA-self-assembled nanoparticle networks.
机译:由于特定的Watson-Cric相互作用,DNA驱动的自组装能够精确定位胶体纳米粒子。这种自组装方法的另一个重要特征是通过控制介质的温度来回可逆性。在这项工作中,我们研究另一种机制的潜力,以控制DNA官能化金纳米颗粒的结合/解除过程。我们采用了可被金纳米颗粒吸收的激光辐射,以加热其网络并将其脱离。在这里,我们表明我们可以通过外部光学激发主动控制纳米粒子网络的光学性质。我们发现通过用绿色手持式激光照射结构,与未被激光照射的样品的透射率相比,总透射率可以增加〜30%。类似地,光学显微镜图像表明纳米粒子网络从不透明到透明的转化,而纳米颗粒在激光照射停止后再次形成网络。我们的结果证明了光学激发可用于量身定制结构,从而使用DNA自组装纳米粒子网络的光学性质。

著录项

  • 来源
    《Journal of Applied Physics》 |2021年第15期|153106.1-153106.6|共6页
  • 作者单位

    Department of Electrical-Electronics Engineering Abdullah Guel University Erkilet Bul. 38080 Kayseri Turkey;

    Department of Electrical-Electronics Engineering Abdullah Guel University Erkilet Bul. 38080 Kayseri Turkey;

    Department of Electrical-Electronics Engineering Abdullah Guel University Erkilet Bul. 38080 Kayseri Turkey;

  • 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
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