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Surface functionalized spherical nanoparticles: an optical assessment of local chirality

机译:表面官能化球形纳米粒子:局部手性的光学评估

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Electromagnetic radiation propagating through any molecular system typically experiences a characteristic change in its polarization state as a result of light-matter interaction. Circularly polarized light is commonly absorbed or scattered to an extent that is sensitive to the incident circularity, when it traverses a medium whose constituents are chiral. This research assesses specific modifications to the properties of circularly polarized light that arise on passage through a system of surface-functionalized spherical nanoparticles, through the influence of chiral molecules on their surfaces. Non-functionalized nanospheres of atomic constitution are usually inherently achiral, but can exhibit local chirality associated with such surface-bound chromophores. The principal result of this investigation is the quantification of functionally conferred nanoparticle chirality, manifest through optical measurements such as circularly polarized emission. The relative position of chiral chromophores fixed to a nanoparticle sphere are first determined by means of spherical coverage co-ordinate analysis. The total electromagnetic field received by a spatially fixed, remote detector is then determined. It is shown that bound chromophores will accommodate both electric and magnetic dipole transition moments, whose scalar product represents the physical and mathematical origin of chiral properties identified in the detected signal. The analysis concludes with discussion of the magnitude of circular differential optical effects, and their potential significance for the characterization of surface-functionalized nanoparticles.
机译:通过任何分子系统传播的电磁辐射通常由于光物质相互作用而经历其偏振状态的特征变化。圆偏振光通常被吸收或散射到对入射圆形敏感的程度,当它穿过其成分是手性的介质时。该研究评估了对通过表面官能化球形纳米颗粒的通过体系而产生的圆偏振光的性质的特异性修饰,通过手性分子对其表面的影响。原子构成的非官能化纳米球通常是本质的,但可以表现出与这种表面结合的发色团相关的局部患者。本研究的主要结果是通过光学测量(如圆偏振发射)的光学测量,清洁功能赋予纳米颗粒性的主要结果。固定到纳米颗粒球体的手性发色团的相对位置首先通过球形覆盖坐标分序分析确定。然后确定通过空间固定的远程检测器接收的总电磁场。结果表明,结合的发色团将适应电磁偶极转换矩,其标量产物代表检测到的信号中鉴定的手性特性的物理和数学来源。该分析结论,讨论了圆形差分光学效应的大小,以及它们对表面官能化纳米颗粒表征的潜在意义。

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