See Kevin C, Spicer James B, Brupbacher John, Zhang Dajie, Vargo Terrence G
Department of Materials Science and Engineering, Johns Hopkins University, Baltimore, Maryland 21218-2681, USA.
J Phys Chem B. 2005 Feb 24;109(7):2693-8. doi: 10.1021/jp046687h.
The interband transition contributions to the optical properties of silver nanoparticles in fluoropolymer matrices are investigated. For the materials in this study, nanoparticle synthesis within the existing polymer matrix is accomplished using an infusion process that consists of diffusing an organometallic precursor gas into the free volume of the fluoropolymer and decomposing the precursor followed by metal nanoparticle nucleation and growth. The resulting polymer matrix nanocomposite has optical properties that are dominated by the response of the nanoparticles owing to the broadbanded transparency of the fluoropolymer matrix. The optical properties of these composites are compared to Maxwell-Garnett and Mie theory with results indicating that interband transitions excited in the silver nanoparticles affect the optical absorption over a range of frequencies including the surface plasmon resonance. It is shown that calculations of the optical absorption spectrum using published data for the silver dielectric function do not accurately describe the measured material response and that a classical model for bound and free electron behavior can best be used to represent the dielectric function of silver.
研究了氟聚合物基体中银纳米颗粒光学性质的带间跃迁贡献。对于本研究中的材料,在现有聚合物基体中合成纳米颗粒是通过一种注入工艺完成的,该工艺包括将有机金属前驱体气体扩散到氟聚合物的自由体积中,分解前驱体,随后进行金属纳米颗粒的成核和生长。由于氟聚合物基体的宽带透明性,所得的聚合物基体纳米复合材料的光学性质主要由纳米颗粒的响应决定。将这些复合材料的光学性质与麦克斯韦-加尼特理论和米氏理论进行了比较,结果表明银纳米颗粒中激发的带间跃迁在包括表面等离子体共振在内的一系列频率范围内影响光吸收。结果表明,使用已发表的银介电函数数据计算光吸收光谱不能准确描述所测量的材料响应,而经典的束缚和自由电子行为模型最适合用于表示银的介电函数。