首页> 外文会议>Nanocoatings; Proceedings of SPIE-The International Society for Optical Engineering; vol.6647 >Active control of the optical properties of nanoscale coatings using 'smart' nanoparticles
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Active control of the optical properties of nanoscale coatings using 'smart' nanoparticles

机译:使用“智能”纳米粒子主动控制纳米级涂料的光学性能

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Coatings that can self-modulate their optical properties as a function of an external stimulus are of significant technological interest. In this regard, the possibilities for thermo- or electrochromic materials such as VO_2 and WO_3 are already comparatively well-known. Here, however, we explore a new kind of 'smart' coating, based on the active control of a plasmon resonance in nanoparticles. One possible system is based on the modulation of the plasmon resonance of a precious metal nanorod or nanosphere by an active dielectric shell. The active dielectric undergoes an insulator-to-metal transition on increase of temperature which modulates the plasmon resonance of the underlying precious metal nanoparticle, thereby changing the wavelength at which its optical extinction is maximum. In the case of nanorods, the absorption maximum of the longitudinal plasmon is particularly sensitive to the aspect ratio of the nanoparticle and the dielectric properties of the environment, and may be readily tuned across the visible and near-infrared portions of the spectrum. In addition, nanoparticles of certain thermochromic dielectrics, such as VO_2, are expected to have a plasmon resonance of their own which can be switched on or off by control of the temperature. We consider some of the possibilities, using both the discrete dipole approximation and the exact analytical solution due to Mie to calculate the optical properties.
机译:可以根据外部刺激自调其光学性能的涂层具有重大的技术意义。在这方面,热致变色或电致变色材料(例如VO_2和WO_3)的可能性已经相对众所周知。但是,在这里,我们基于对纳米粒子中等离振子共振的主动控制,探索了一种新型的“智能”涂层。一种可能的系统基于有源介电壳对贵金属纳米棒或纳米球的等离子体共振的调制。活性电介质在温度升高时经历绝缘体到金属的转变,从而调制下面的贵金属纳米粒子的等离子体共振,从而改变其光学消光最大的波长。在纳米棒的情况下,纵向等离激元的最大吸收量对纳米颗粒的纵横比和环境的介电特性特别敏感,并且可以很容易地在光谱的可见光和近红外部分进行调谐。此外,某些热致变色电介质(例如VO_2)的纳米粒子有望具有自身的等离子体共振,可以通过控制温度来开启或关闭该共振。我们考虑了一些可能性,同时使用离散偶极近似和Mie产生的精确解析解来计算光学特性。

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