首页> 外文会议>Advances in Science and Engineering Technology International Conferences >Simulating the optical properties of isolated and dimer nanoshells for photothermal therapy
【24h】

Simulating the optical properties of isolated and dimer nanoshells for photothermal therapy

机译:模拟隔离和二聚体纳米型光热疗法的光学性质

获取原文

摘要

Photothermal therapy, the process of converting light from a laser into heat strong enough to destroy cancer cells, has risen as a promising, safe and minimally invasive means for cancer therapy. The ongoing progress in nanotechnology and material fabrication has revealed a novel class of metal nanoparticles whose free electrons resonate with incident light, exhibiting enhanced local electric field properties, an effect known as surface plasmon resonance. Designing nanoparticles that can efficiently absorb light is of critical importance for photothermal therapy while their ability to scatter light is useful for imaging. The presence of a simple, accurate and flexible method to investigate the optical response of different nanoparticle designs would be a huge step towards such goal. This work presents the use of the finite elements method to calculate the spectra of absorption and scattering efficiencies of gold nanoshells of different geometries. The size dependent dielectric function was used to model the gold shells. The results were compared to those of a previous study that uses Mie theory. The optical response of nanoshell dimers at different separations was also calculated and the results were compared with studies that use Wigner Eckart theorem, boundary elements method and experiments. Our model results were consistently found to be in very good agreement with those of the other studies. The finite elements method has proven its reliability to model the optical responses of nanoparticles and can be used to investigate more advanced nanoparticle designs that would be too complicated to model analytically.
机译:光热疗法,将光从激光转换成热量的过程足以破坏癌细胞,作为癌症治疗的有希望,安全和微创手段。纳米技术和材料制造的持续进展揭示了一种新颖的金属纳米颗粒,其自由电子与入射光共振,表现出增强的局部电场特性,称为表面等离子体共振的效果。设计能够有效吸收光的纳米颗粒对于光热疗法至关重要,同时其散射光的能力是可用于成像的。探讨不同纳米粒子设计的光学响应的​​简单,准确和灵活的方法是对这种目标的巨大步骤。这项工作介绍了有限元方法来计算不同几何形状的金纳米型的吸收和散射效率的光谱。尺寸依赖性介质函数用于模拟金壳。将结果与使用MIE理论的先前研究的结果进行了比较。还计算了纳米壳二聚体在不同分离时的光学响应,并将结果与​​使用Wigner Eckart定理,边界元素方法和实验进行了比较。我们的模型结果始终如一地发现与其他研究的协议非常好。有限元方法已证明其可靠性以模拟纳米颗粒的光学响应,可用于研究更先进的纳米颗粒设计,这些设计将分析模型过于复杂。

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