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Pressure tuned photoluminescence and band gap in two-dimensional layered g-C3N4: the effect of interlayer interactions

机译:压力调光致发光和带隙二维层状g-C3N4:的效果层间的相互作用

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摘要

We show that the photoluminescence (PL) emission color of few layered g-C3N4 (FL-CN) can be tuned from blue to yellow by applying pressure. FL-CN also exhibits an anomalous PL enhancement and obvious change in the light absorption at very low pressure. Further studies reveal that the increase of pressure-induced interlayer interactions affects the charge separation of photo-induced electrons and holes and thus leads to PL enhancement. An obvious decrease in interlayer compressibility probably due to interlayer stacking transition in FL-CN has been observed at above 3 GPa, which becomes less compressible than that of graphite, accompanied by obvious PL intensity weakening and emission band broadening. The results suggest that interlayer interactions may play dominant roles in the optical properties of FL-CN, shedding new insights into our understanding on PL engineering in g-C3N4.
机译:我们表明,光致发光(PL)排放几个颜色分层g-C3N4 (FL-CN)可以通过调优从蓝色到黄色,施加压力。也表现了异常PL增强和光吸收在非常明显的变化低压力。增加pressure-induced夹层交互影响的电荷分离photo-induced电子和空穴,从而导致PL增强。层间压缩可能由于层间堆积在FL-CN过渡观察以上3 GPa,变得更少可压缩比石墨,陪同明显的PL强度弱化和排放乐队扩大。层间的相互作用可能扮演主导角色FL-CN光学性质的,新的在PL工程洞察我们的理解在g-C3N4。

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