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Nanoscale investigation of improved triboelectric properties of UV-irradiated ultrananocrystalline diamond films

机译:纳米尺度的调查改善摩擦电紫外线照射过的属性ultrananocrystalline钻石薄膜

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We report improved the triboelectric properties of ultraviolet (UV)-irradiated ultrananocrystalline diamond (UNCD) films that were measured using atomic force microscopy (AFM). Fabricated using the chemical vapor deposition (CVD) method, UNCD is an artificial diamond film with mechanical properties similar to single-crystal diamond. Surface modification by means of UV irradiation is a simple method to modify the surface properties of carbon-based and oxide materials. While the physical properties (e.g., roughness, adhesion, and friction) of these UNCD films did not exhibit any significant change following the UV treatment, we found that the UV-irradiated UNCD surface was oxidized and became graphitic, as confirmed using X-ray photoelectron spectroscopy, work function measurements using Kelvin probe force microscopy, and ultraviolet photoelectron spectroscopy. The work function of the samples increased with increasing UV exposure time, which is associated with the reduction of carbon atoms on the surface and oxygen-rich surfaces. Tribocharges were generated by scratching the surface of the UNCD films with a diamond-coated AFM tip. The duration of the tribocharges increased because of reactive radicals and the insulating property resulting from the UV/ozone treatment. The radicals were responsible for trapping charges; the UV-irradiated UNCD films preserved the charges for more than 5 h, which is five times longer than that on bare UNCD. This study demonstrated that UNCD is a promising material for generating triboelectricity and that UNCD can be used as a charge-trapping layer in charge-trap flash memory devices.
机译:我们报告改进的摩擦电性质紫外线辐照ultrananocrystalline钻石(UNCD)电影,测量使用原子力显微镜(AFM)。化学气相沉积(CVD)方法,UNCD是一个人造金刚石薄膜机械吗属性类似于单晶钻石。表面改性的紫外线照射表面是一个简单的方法来修改吗碳和氧化材料的性质。而物理性质(如粗糙度,粘附和摩擦)这些UNCD电影没有表现出任何重大改变后紫外线处理,我们发现,紫外线照射过UNCD表面被氧化,石墨,确认使用x射线光电子光谱,测量功函数使用开尔文探针力显微镜,紫外光电子能谱。样品暴露于紫外线辐射的增加而增加时间,这与减少有关碳原子在表面和富氧表面。抓的表面UNCD电影了金刚石层面AFM小费。tribocharges因为活性增加自由基产生和绝缘性能从紫外/臭氧治疗。负责捕获费用;紫外线照射过UNCD电影保存这些指控超过5小时,五倍的时间比裸UNCD。UNCD是生成一种有前景的材料摩擦电,UNCD可以用作charge-trapping层电荷捕获闪存设备。

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