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ACS Nano ; 6(9): 8060-6, 2012 Sep 25.
Article de Anglais | MEDLINE | ID: mdl-22881340

RÉSUMÉ

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.


Sujet(s)
Graphite/composition chimique , Lasers , Cristaux liquides/composition chimique , Mesures de luminescence/méthodes , Nanostructures/composition chimique , Nanostructures/ultrastructure , Anisotropie , Cristaux liquides/analyse , Test de matériaux/méthodes , Dynamique non linéaire , Oxydes/composition chimique , Taille de particule
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