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Tuning of the optical, electronic, and magnetic properties of boron nitride nanosheets with oxygen doping and functionalization

机译:通过氧掺杂和功能化来调整氮化硼纳米片的光学,电子和磁性

摘要

Engineering of the optical, electronic, and magnetic properties of hexagonal boron nitride (-BN) nanomaterials via oxygen doping and functionalization has been envisaged in theory. However, it is still unclear as to what extent these properties can be altered using such methodology because of the lack of significant experimental progress and systematic theoretical investigations. Therefore, here, comprehensive theoretical predictions verified by solid experimental confirmations are provided, which unambiguously answer this long-standing question. Narrowing of the optical bandgap in -BN nanosheets (from ≈5.5 eV down to 2.1 eV) and the appearance of paramagnetism and photoluminescence (of both Stokes and anti-Stokes types) in them after oxygen doping and functionalization are discussed. These results are highly valuable for further advances in semiconducting nanoscale electronics, optoelectronics, and spintronics.
机译:理论上已经设想了通过氧掺杂和官能化来工程化六方氮化硼(-BN)纳米材料的光学,电子和磁性性质。但是,由于缺乏重要的实验进展和系统的理论研究,使用这种方法可以在多大程度上改变这些性质仍不清楚。因此,在这里,提供了经过可靠的实验证实的综合理论预测,可以明确回答这一长期存在的问题。讨论了-BN纳米片中的光学带隙变窄(从≈5.5eV下降到2.1 eV)以及在氧掺杂和功能化之后顺磁性和光致发光(斯托克斯型和反斯托克斯型)的出现。这些结果对于半导体纳米电子,光电子和自旋电子学的进一步发展非常有价值。

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