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Anomalous behaviors of visible luminescence from graphene quantum dots: Interplay between size and shape

机译:石墨烯量子点可见光的异常行为:尺寸和形状之间的相互作用

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摘要

For the application of graphene quantum dots (GQDs) to optoelectronic nanodevices, it is of critical importance to understand the mechanisms which result in novel phenomena of their light absorption/emission. Here, we present size-dependent shape/edge-state variations of GQDs and visible photoluminescence (PL) showing anomalous size dependences. With varying the average size (d _a) of GQDs from 5 to 35 nm, the peak energy of the absorption spectra monotonically decreases, while that of the visible PL spectra unusually shows nonmonotonic behaviors having a minimum at d _a = ~17 nm. The PL behaviors can be attributed to the novel feature of GQDs, that is, the circular-to-polygonal-shape and corresponding edge-state variations of GQDs at d _a = ~17 nm as the GQD size increases, as demonstrated by high-resolution transmission electron microscopy.
机译:对于将石墨烯量子点(GQD)应用于光电纳米器件,了解导致其光吸收/发射新现象的机理至关重要。在这里,我们介绍了GQD的尺寸相关形状/边缘状态变化以及可见的光致发光(PL),显示了异常的尺寸相关性。随着GQD的平均大小(d _a)从5到35 nm变化,吸收光谱的峰值能量单调降低,而可见光PL光谱的峰值能量异常地显示出非单调行为,在d _a =〜17 nm时最小。 PL行为可归因于GQD的新颖特征,即随着GQD尺寸的增加,d_a =〜17 nm时GQD的圆形到多边形形状和相应的边缘状态变化,如高分辨率透射电镜。

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