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Guided assembly of nanoparticles on electrostatically charged nanocrystalline diamond thin films

机译:纳米粒子在带静电的纳米晶金刚石薄膜上的引导组装

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摘要

We apply atomic force microscope for local electrostatic charging of oxygen-terminated nanocrystalline diamond (NCD) thin films deposited on silicon, to induce electrostatically driven self-assembly of colloidal alumina nanoparticles into micro-patterns. Considering possible capacitive, sp2 phase and spatial uniformity factors to charging, we employ films with sub-100 nm thickness and about 60% relative sp2 phase content, probe the spatial material uniformity by Raman and electron microscopy, and repeat experiments at various positions. We demonstrate that electrostatic potential contrast on the NCD films varies between 0.1 and 1.2 V and that the contrast of more than ±1 V (as detected by Kelvin force microscopy) is able to induce self-assembly of the nanoparticles via coulombic and polarization forces. This opens prospects for applications of diamond and its unique set of properties in self-assembly of nano-devices and nano-systems.
机译:我们应用原子力显微镜对沉积在硅上的氧封端的纳米晶金刚石(NCD)薄膜进行局部静电充电,以将胶体氧化铝纳米粒子的静电驱动自组装诱导为微图案。考虑到可能的电容性,sp 2 相位和空间均匀性因素,我们采用厚度小于100 nm,相对sp 2 相对含量约为60%的薄膜,探索了空间拉曼光谱和电子显微镜观察材料的均匀性,并在不同位置重复进行实验。我们证明,NCD膜上的静电势对比度在0.1到1.2 V之间变化,并且超过±1 V的对比度(通过开尔文力显微镜检测)能够通过库仑力和极化力诱导纳米粒子的自组装。这为金刚石的应​​用及其在纳米器件和纳米系统自组装中的独特性能开辟了前景。

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