首页> 外文会议>ASME 2nd Multifunctional Nanaocomposites and Nanomaterials and Nanomaterials Conference: Design and Modeling of Nanomaterials... >NANOCOMPOSITES WITH STRONG OPTICAL RESONANCES: SILVER NANOPARTICLES-ORGANIC MOLECULES SYSTEMS
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NANOCOMPOSITES WITH STRONG OPTICAL RESONANCES: SILVER NANOPARTICLES-ORGANIC MOLECULES SYSTEMS

机译:具有强光学共振的纳米复合材料:银纳米粒子-有机分子系统

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The ability of selected molecular species to link Ag nanoparticles into dimers and/or small aggregates has been tested. Dimercaptocarborane and ethidium bromide have been shown to link Ag nanoparticles via their bonding to Ag nanoparticle surface probably by the two strongly argentophilic groups in para-positions. Alternatively, dimers and small aggregates were assembled through an electrostatic interaction between negatively charged citrate-modified and positively charged polylysine-modified Ag nanoparticles, and a subsequent incorporation of 5,10,15,20-tetrakis(4-sulphonato-phenyl)porphine (TSPP) into such pre-prepared nanoobjects has been probed by SERRS (surface-enhanced resonance Raman scattering). Formation of dimers and small aggregates has been established by TEM (transmission electron microscopy) and SEM (scanning electron microscopy). SE(R)RS spectral measurements from specific locations of samples containing molecularly-linked dimers and aggregates have shown temporal fluctuations (blinking) of the SE(R)RS signal, which indicates, that the signal likely originates from molecules located in the strong, nanoscale localized optical fields dubbed hot spots. In addition to that, characteristic bands of graphitic carbon were observed in the spectra and their intensities (together with the spectral background intensities) strongly varied with time and from one spectrum to another. One of the possible explanations of these observations is a photochemical and/or thermal decomposition of the molecules located in hot spots combined with diffusion of unperturbed molecules into hot spots.
机译:已经测试了选定的分子种类将Ag纳米颗粒连接成二聚体和/或小的聚集体的能力。已经显示二巯基碳硼烷和溴化乙锭可能通过对位中的两个强亲银基团通过将它们与银纳米颗粒表面结合而将银纳米颗粒连接在一起。或者,通过带负电荷的柠檬酸盐修饰的和带正电荷的聚赖氨酸修饰的Ag纳米粒子之间的静电相互作用组装二聚体和小的聚集体,然后掺入5,10,15,20-四(4-磺酸根-苯基)卟啉( TSPP)已通过SERRS(表面增强共振拉曼散射)探究到这种预先制备的纳米物体中。通过TEM(透射电子显微镜)和SEM(扫描电子显微镜)已经确定了二聚物和小聚集体的形成。从包含分子连接的二聚体和聚集体的样品的特定位置进行的SE(R)RS光谱测量显示,SE(R)RS信号随时间发生了波动(闪烁),这表明该信号可能源自强分子中的分子,纳米级局部光场称为热点。除此之外,在光谱中观察到石墨碳的特征带,并且它们的强度(连同光谱背景强度)随时间从一个光谱到另一个光谱强烈变化。这些观察结果的可能解释之一是位于热点的分子发生光化学和/或热分解,再加上不受干扰的分子扩散到热点中。

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