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六方氮化硼纳米片水悬浮液中的光散射和随机激光。

Light scattering and random lasing in aqueous suspensions of hexagonal boron nitride nanoflakes.

机构信息

School of Physics and the Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College Dublin, Dublin 2, Ireland. Advanced Materials and Bioengineering Research (AMBER), Trinity College Dublin, Dublin 2, Ireland.

出版信息

Nanotechnology. 2017 Nov 24;28(47):47LT02. doi: 10.1088/1361-6528/aa923a.

Abstract

Liquid phase exfoliation allows large scale production of 2D materials in solution. The particles are highly anisotropic and strongly scatter light. While spherical particles can be accurately and precisely described by a single parameter-the radius, 2D nanoflakes, however, cannot be so easily described. We investigate light scattering in aqueous solutions of 2D hexagonal boron nitride nanoflakes in the single and multiple scattering regimes. In the single scattering regime, the anisotropic 2D materials show a much stronger depolarization of light when compared to spherical particles of similar size. In the multiple scattering regime, the scattering as a function of optical path for hexagonal boron nitride nanoflakes of a given lateral length was found to be qualitatively equivalent to scattering from spheres with the same diameter. We also report the presence of random lasing in high concentration suspensions of aqueous h-BN mixed with Rhodamine B dye. The h-BN works as a scattering agent and Rhodamine B as a gain medium for the process. We observed random lasing at 587 nm with a threshold energy of 0.8 mJ.

摘要

液相剥离允许在溶液中大规模生产二维材料。这些粒子具有高度各向异性和强烈的光散射性。虽然球形粒子可以用一个单一的参数——半径来精确地描述,但二维纳米薄片却不能如此轻易地描述。我们研究了在单散射和多散射两种情况下,二维六方氮化硼纳米薄片在水溶液中的光散射。在单散射情况下,与具有相似尺寸的球形粒子相比,各向异性的二维材料表现出更强的光退极化。在多散射情况下,对于给定横向长度的六方氮化硼纳米薄片,随着光程的增加,散射强度被发现与具有相同直径的球体的散射强度在定性上等效。我们还报告了在高浓度的含有罗丹明 B 染料的水合 h-BN 悬浮液中存在随机激光。h-BN 作为散射剂,罗丹明 B 作为该过程的增益介质。我们在 587nm 处观察到了随机激光,阈值能量为 0.8mJ。

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