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Nonlinear photoluminescence imaging of isotropic and liquid crystalline dispersions of graphene oxide

机译:氧化石墨烯各向同性和液晶分散体的非线性光致发光成像

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摘要

We report a visible-range nonlinear photoluminescence (PL) from graphene oxide (GO) flakes excited by near-infrared femtosecond laser light. PL intensity has nonlinear dependence on the laser power, implying a multiphoton excitation process, and also strongly depends on a linear polarization orientation of excitation light, being at maximum when it is parallel to flakes. We show that PL can be used for a fully three-dimensional label-free imaging of isotropic, nematic, and lamellar liquid crystalline dispersions of GO flakes in water. This nonlinear PL is of interest for applications in direct label-free imaging of composite materials and study of orientational ordering in mesomorphic phases formed by these flakes, as well as in biomedical and sensing applications utilizing GO.
机译:我们报告了由近红外飞秒激光激发的氧化石墨烯(GO)片的可见光范围非线性光致发光(PL)。 PL强度对激光功率具有非线性依赖性,这意味着多光子激发过程,并且还强烈取决于激发光的线性偏振方向,当它平行于薄片时最大。我们显示PL可以用于GO片在水中的各向同性,向列和层状液晶分散体的全三维无标记成像。这种非线性PL对于在复合材料的无标签直接成像中的应用以及由这些薄片形成的介晶相中的取向有序化研究以及在利用GO的生物医学和传感应用中引起关注。

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