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Tailorable chiroptical activity of metallic nanospiral arrays

机译:可裁制成衣的chiroptical金属的活性

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摘要

The engineering of the chiroptical activity of the emerging chiral metamaterial, metallic nanospirals, is in its infancy. We utilize glancing angle deposition (GLAD) to facilely sculpture the helical structure of silver nanospirals (AgNSs), so that the scope of chiroptical engineering factors is broadened to include the spiral growth of homochiral AgNSs, the combination of left-and right-handed helical chirality to create heterochiral AgNSs, and the coil-axis alignment of the heterochiral AgNSs. It leads to flexible control over the chiroptical activity of AgNS arrays with respect to the sign, resonance wavelength and amplitude of circular dichroism (CD) in the UV and visible regime. The UV chiroptical mode has a distinct response from the visible mode. Finite element simulation together with LC circuit theory illustrates that the UV irradiation is mainly adsorbed in the metal and the visible is preferentially scattered by the AgNSs, accounting for the wavelength-related chiroptical distinction. This work contributes to broadening the horizons in understanding and engineering chiroptical responses, primarily desired for developing a wide range of potential chiroplasmonic applications.
机译:工程的chiroptical活动新兴手性材料,金属nanospirals,处于起步阶段。轻快地掠射角沉积(高兴)雕塑银的螺旋结构nanospirals (agn),这样的范围是扩大chiroptical工程因素包括螺旋增长homochiral agn。过度左倾——并以个人喜好开拓右手螺旋的结合手性创造heterochiral agn,线圈轴对齐的heterochiral agn。导致chiroptical灵活控制agn活动数组的迹象,共振波长和振幅循环二色性(CD)在紫外和可见的政权。紫外线chiroptical模式有不同的反应可见模式。一起LC电路理论说明主要吸附在紫外线照射金属和可见的是优先分散agn,会计的wavelength-related chiroptical区别。工作有助于拓宽视野理解和工程chiroptical反应,主要是想要开发一个广泛的潜在chiroplasmonic应用程序。

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