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Enhanced Hot-Carrier Luminescence in Multilayer Reduced Graphene Oxide Nanospheres

机译:多层还原石墨烯氧化物纳米球中增强的热载流子发光。

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We report a method to promote photoluminescence emission in graphene materials by enhancing carrier scattering instead of directly modifying band structure in multilayer reduced graphene oxide (rGO) nanospheres. We intentionally curl graphene layers to form nanospheres by reducing graphene oxide with spherical polymer templates to manipulate the carrier scattering. These nanospheres produce hot-carrier luminescence with more than ten-fold improvement of emission efficiency as compared to planar nanosheets. With increasing excitation power, hot-carrier luminescence from nanospheres exhibits abnormal spectral redshift with dynamic feature associated to the strengthened electron-phonon coupling. These experimental results can be well understood by considering the screened Coulomb interactions. With increasing carrier density, the reduced screening effect promotes carrier scattering which enhances hot-carrier emission from such multilayer rGO nanospheres. This carrier-scattering scenario is further confirmed by pump-probe measurements.
机译:我们报告了一种通过增强载流子散射而不是直接修改多层氧化石墨烯(rGO)纳米球中的能带结构来促进石墨烯材料中的光致发光发射的方法。我们有意卷曲石墨烯层,通过使用球形聚合物模板还原氧化石墨烯来控制载流子散射,从而形成纳米球。与平面纳米片相比,这些纳米球产生热载流子发光,发射效率提高十倍以上。随着激发功率的增加,来自纳米球的热载流子发光表现出异常的光谱红移,并具有与增强的电子-声子耦合相关的动态特征。通过考虑筛选的库仑相互作用,可以很好地理解这些实验结果。随着载流子密度的增加,降低的屏蔽效应会促进载流子散射,从而增强了此类多层rGO纳米球的热载流子发射。通过泵浦探针测量进一步证实了这种载流子散射情况。

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