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Light intensity field enhancement (LIFE) induced localized edge abrasion of silica-coated silver nanoprisms

机译:光强度场增强(生活)诱导的局部边缘磨损silica-coated银nanoprisms

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Silver nanoprisms (AgNPrs) exhibit localized surface plasmon resonance (LSPR) in the near infrared (NIR) region of the electromagnetic spectrum. LSPR-driven electric field enhancement around AgNPr edges has been investigated in various studies. A coating of dielectric materials such as silica on the surface of the AgNPrs is employed to extend the application of these nanoparticles under biocompatible conditions and to increase the thermal stability. Upon interactions with optical excitation (pulsed laser excitation), the AgNPrs undergo light intensity field enhancement (LIFE) at the corners. In the cases of hybrid hetero-structures of AgNPrs with silica coatings (AgNPr@SiO2), LIFE leads to nano-structural deformations. In this study, we demonstrate that, depending on the intensity of the light excitation, the medium properties and the geometrical sharpness of the corners of the prisms, LIFE could induce localized damage or abrasion at the edges of the immediate dielectric contact, which in this case was the silica coating. A theoretical study was conducted to establish the influence of the finite radius of curvature (ROC) of the corners on the plasmonic interactions to generate LIFE during optical excitation. Experiments were performed on AgNPr@SiO2 using nanosecond pulsed laser excitation at 900 nm and electron microscopic analysis of the nanostructures revealed the localized edge abrasion of the silica at the prism corners. To further study the effect of the direct plasmonic excitation during LIFE, pulsed laser excitation on ultra-thin graphene oxide (GO) wrapped AgNPr@SiO2 (GO-AgNPr@SiO2) was conducted. Due to the GO wrapping and subsequent changes in light absorption, the extent of the LIFE at the corners diminishes, which leads to structural stability and preservation of the hetero-structure morphology.
机译:银纳米棱柱(AgNPrs)展览本地化表面等离子体共振(LSPR)附近红外(NIR)电磁区域光谱。在AgNPr边缘一直在调查各种研究。材料,如二氧化硅表面的AgNPrs采用扩展的应用这些纳米颗粒在生物相容性条件和增加热稳定性。在光激发的交互(脉冲激光激发),AgNPrs接受光强度增强(生活)角落。AgNPrs的硅涂层(AgNPr@SiO2)的生活导致nano-structural变形。研究中,我们证明,这取决于强度的光激发,媒介属性和几何的清晰度角落的棱镜,生活可以诱导局部损坏或磨损的边缘在这种情况下立即介质接触是硅涂层。进行建立的影响有限的曲率半径(ROC)的角落在电浆交互产生的生活在光激发。上执行AgNPr@SiO2使用纳秒脉冲在900纳米激光激发和电子纳米结构的微观分析揭示了局部磨损的边缘硅在棱镜角。直接电浆中激发的效果生活中,脉冲激光激发超薄氧化石墨烯包裹AgNPr@SiO2(去)(GO-AgNPr@SiO2)。包装和随后的光的变化吸收,角落生活的程度减少,导致结构稳定性hetero-structure和保存形态。

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