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Ultra-thin ultraviolet cathodoluminescent device based on exfoliated hexagonal boron nitride

机译:基于剥离型六方氮化硼的超薄紫外阴极发光器件

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摘要

The need for highly efficient devices with longer operating lives in the blue wavelength region is increasing. Herein, we showed that hexagonal boron nitride, as a blue luminescent material, is promising because it is a wide bandgap semiconductor with very high thermal and chemical stabilities and can be used in devices operating under extreme conditions. Specifically, through the highly luminous properties of exfoliated hexagonal boron nitride (Exf-hBN), a blue emission device equipped with a field-emission array using carbon nanotube as an excitation source was fabricated and its stable operation has been demonstrated. Furthermore, the cathodoluminescent device is thinner than conventional lamps when using the ultra-thin Exf-hBN film and graphene as an electrode. The blue fluorescence of Exf-hBN may allow new devices to be developed with extraordinary properties for applications from optoelectronics to biotechnological devices.
机译:对在蓝色波长区域具有更长使用寿命的高效设备的需求正在增长。本文中,我们证明了六方氮化硼作为一种蓝色发光材料很有希望,因为它是一种带隙半导体,具有很高的热稳定性和化学稳定性,可用于在极端条件下工作的器件。具体地,通过剥落的六方氮化硼六方氮化硼(Exf-hBN)的高发光特性,制造了配备有使用碳纳米管作为激发源的场致发射阵列的蓝色发射装置,并且已经证明了其稳定的操作。此外,当使用超薄Exf-hBN膜和石墨烯作为电极时,阴极发光装置比常规灯更薄。 Exf-hBN的蓝色荧光可能允许开发具有非凡特性的新设备,用于从光电到生物技术设备的应用。

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