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Enhanced field emission properties of graphene-based cathodes fabricated by ultrasonic atomization spray

机译:超声雾化喷涂制备的石墨烯基阴极的增强的场发射特性

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Two types of graphene cathodes were constructed by doctor blade and ultrasonic atomization spray respectively. The effects of cathodic film morphology and thickness on graphene cathodes' field emission performance were investigated. Ultrasonic atomization spray coated graphene cathodes possess a much lower turn-on and threshold field but much higher emission current density than graphene cathodes coated by doctor blade. The enhanced field emission properties can be ascribed to the suppression of field-screening effect by roughened surface geometry rendered by ultrasonic atomization spray. For ultrasonic atomization sprayed graphene cathodes at a film thickness of 116 μm, an emission current density as large as 29.6 mA cm ~(?2) was achieved at 5 V μm ~(?1) , along with a turn-on field and threshold field as low as 1.52 V μm ~(?1) and 2.65 V μm ~(?1) , respectively. Emission stability examination shows no visible emission current density fluctuation or decline over a 10 hour operation at ~3.72 mA cm ~(?2) , demonstrating excellent field emission stability for ultrasonic atomization sprayed graphene cathodes. The luminance test also indicates good uniformity of electron emission from ultrasonic atomization sprayed graphene cathodes. The above experiment results indicate that the ultrasonic atomization spray method is suitable for large-area fabrication of high-performance graphene field emitters and holds great potential for applications in field emission displays.
机译:分别通过刮刀和超声雾化喷涂法制备了两种石墨烯阴极。研究了阴极膜的形态和厚度对石墨烯阴极场发射性能的影响。超声雾化喷涂的石墨烯阴极具有比刮刀涂覆的石墨烯阴极低得多的开启和阈值场,但发射电流密度却高得多。增强的场发射特性可以归因于通过超声雾化喷雾产生的粗糙的表面几何形状来抑制场屏蔽效应。对于膜厚为116μm的超声雾化喷涂石墨烯阴极,在5 Vμm〜(?1)的条件下,可以获得高达29.6 mA cm〜(?2)的发射电流密度,以及导通场和阈值磁场分别低至1.52 Vμm〜(?1)和2.65 Vμm〜(?1)。发射稳定性检查表明,在〜3.72 mA cm〜(?2)的条件下,运行10小时后,可见发射电流密度没有波动或下降,这表明超声雾化喷涂石墨烯阴极具有出色的场发射稳定性。亮度测试还表明,超声雾化喷涂石墨烯阴极的电子发射具有良好的均匀性。以上实验结果表明,超声雾化喷涂方法适用于大面积制造高性能石墨烯场致发射体,在场致发射显示器中具有广阔的应用前景。

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