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Controlling the cooperative self-assembly of graphene oxide quantum dots in aqueous solutions

机译:控制水溶液中氧化石墨烯量子点的协同自组装

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Fascinating 3D cooperative self-assembly behavior was observed for 2D graphene oxide quantum dots (GOQDs) in dilute and semi dilute aqueous solutions. In addition the optical properties could be tuned by controlling the supramolecular structures. While the electrostatic interactions between the charged single sheets were assigned as the main secondary interactions that were responsible for the supramolecular fine structures, the concentration, temperature, salt concentration and pH could tune the repulsive/attractive forces and the molecular binding between the GOQD sheets. The morphological studies combined with UV-Vis and fluorescence evaluations proved that after a slow nucleation step, elongation preceded radially by H-aggregate self-association of the GOQD monomers, forming the final porous spheres by radial growth of rods. The quenching properties of the self-associated-assembled GOQDs together with the excitation wavelengths of the GOQD solutions enabled tuning of the fluorescence intensity and color of the final solutions, which could be utilized for e.g. bioimaging and smart spectroscopy.
机译:在稀和半稀水溶液中观察到了2D氧化石墨烯量子点(GOQD)的迷人3D合作自组装行为。另外,可以通过控制超分子结构来调节光学性质。虽然将带电的单张纸之间的静电相互作用指定为负责超分子精细结构的主要次要相互作用,但浓度,温度,盐浓度和pH可以调节GOQD纸之间的排斥力/吸引力和分子结合。形态学研究与UV-Vis和荧光评估相结合证明,在缓慢的成核步骤后,GOQD单体的H聚集自缔合在径向延伸之前,通过棒的径向生长形成最终的多孔球体。自结合组装的GOQD的猝灭性质与GOQD溶液的激发波长一起使得能够调节最终溶液的荧光强度和颜色,这可以用于例如。生物成像和智能光谱学。

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