首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Theoretical Study on Enhancement of Sensing Capability of Plasmonic Dimer Au Nanoparticles with Amphiphilic Polymer Brushes
【24h】

Theoretical Study on Enhancement of Sensing Capability of Plasmonic Dimer Au Nanoparticles with Amphiphilic Polymer Brushes

机译:两亲性聚合物刷增强等离子二聚体金纳米颗粒传感能力的理论研究

获取原文
获取原文并翻译 | 示例
       

摘要

Au nanoparticle (Au-NP) sensors need a high surface plasmon resonance intensity and a low steric effect for efficient labeling in sensors. Since dimers meet these requirements, we have theoretically studied the self-assembly of monomer and dimer Au-NPs by considering influential factors such as Au-NP size, polymer thickness, and gap distance between dimer Au-NPs. In order to control the monomerization and dimerization of spherical Au-NPs and their sizes via self-assembly, two polymers (hydrophilic PEG and hydrophobic PMMA) were grafted on the Au-NPs as amphiphilic brushes. Computational methods of dissipative particle dynamics and discrete dipole approximation were employed for virtual self assembly and theoretical analyses of plasmons related to sensing properties, respectively. We found that the bigger Au-NPs were obtained when the amounts of each polymer were roughly identical and the gap distance between Au-NPs in the dimer was shorter when the amount of PMMA was reduced within the condition of dimerization. This theoretical study revealed an optimal near-contact distance for Au-NPs@PMMA/PEG, where the electron tunneling effect was minimized, and reported unseen roles of polymers and plasmons, which consequently allowed achieving a highly efficient Au-NP dimer sensor.
机译:Au纳米粒子(Au-NP)传感器需要较高的表面等离子体共振强度和较低的空间效应,才能在传感器中进行有效标记。由于二聚体满足这些要求,因此我们在理论上通过考虑影响因素,例如Au-NP尺寸,聚合物厚度以及二聚体Au-NP之间的间隔距离,研究了单体和二聚体Au-NP的自组装。为了通过自组装控制球形Au-NP的单体化和二聚化及其大小,将两种聚合物(亲水性PEG和疏水性PMMA)作为两亲刷接枝在Au-NP上。耗散粒子动力学的计算方法和离散偶极子近似分别用于虚拟自组装和与感测特性有关的等离激元的理论分析。我们发现,当在二聚化条件下减少PMMA的量时,当每种聚合物的量大致相同时,可获得更大的Au-NP,而在二聚体中的Au-NP之间的间隙距离更短。这项理论研究揭示了Au-NPs @ PMMA / PEG的最佳近接触距离,其中电子隧穿效应被最小化,并且报告了聚合物和等离激元看不见的作用,因此可以实现高效的Au-NP二聚体传感器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号