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Isotope effect on band gap and radiative transitions properties of boron nitride nanotubes

机译:同位素对氮化硼纳米管的带隙和辐射跃迁性质的影响

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摘要

We have carried out an isotope study on the band gap and radiative transition spectra of boron nitride nanotubes (BNNTs) using both experimental and theoretical approaches. The direct band gap of BNNTs was determined at 5.38 eV, independent of the nanotube size and isotope substitution, by cathodoluminescences (CL) spectra. At lower energies, several radiative transitions were observed, and an isotope effect was revealed. In particular, we confirmed that the rich CL spectra between 3.0 and 4.2 eV reflect a phonon-electron coupling mechanism, which is characterized by a radiative transition at 4.09 eV. The frequency. red shift and peak broadening due to isotopic effect have been observed. Our Fourier transform infrared spectra and density functional theory calculations suggest that those radiative transitions in BNNTs could be generated by a replacement of some nitrogen atoms with oxygen.
机译:我们已经使用实验和理论方法对氮化硼纳米管(BNNT)的带隙和辐射跃迁谱进行了同位素研究。 BNNTs的直接带隙由阴极发光(CL)光谱确定为5.38 eV,与纳米管尺寸和同位素取代无关。在较低的能量下,观察到几个辐射跃迁,并且显示出同位素效应。特别是,我们确认了3.0至4.2 eV之间的丰富CL光谱反映了声子-电子耦合机理,其特征是在4.09 eV处发生了辐射跃迁。频率。观察到由于同位素效应引起的红移和峰展宽。我们的傅立叶变换红外光谱和密度泛函理论计算表明,BNNT中的那些辐射跃迁可以通过用氧替代一些氮原子来产生。

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