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Local Electrical Current and Voltage of Self-Assembled Nanodiamond Pillars

机译:局部电流和自组装纳米金刚柱的电压

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The self-assembly of pillar-like structures in nanodiamond (ND) layers was obtained by means of a controlled pulsed spray technique. This technique enabled to deposit ND layers directly on silicon substrate using as-received 250 nm nanocrystals. The morphology of the obtained ND layer was characterized by confocal and atomic force microscopies, which provided evidence of the existence of self-assembled pillar-like structures due to the coffee stain effect. The local electrical current and voltage of an isolated ND pillar was also studied by scanning Kelvin probe microscopy (SKPM) and scanning capacitance microscopy (SCM). This study showed that the pillar features an increase of voltage (SKPM) and a decrease of current (SCM). Specifically, the pillar current is lower than that of the surrounding hole. A model based on the finite element method (FEM) confirmed the electrical behavior found by SCM.
机译:通过受控的脉冲喷涂技术获得纳米金刚胺(Nd)层中的支柱状结构的自组装。该技术能够使用接收的250nm纳米晶体直接在硅衬底上直接沉积ND层。通过共聚焦和原子力显微镜表征所得ND层的形态,这提供了由于咖啡污染效应而存在自组装柱状结构的证据。还通过扫描开尔文探针显微镜(SKPM)和扫描电容显微镜(SCM)来研究隔离的ND柱的局部电流和电压。这项研究表明,柱子具有电压(SKPM)的增加和电流(SCM)的降低。具体地,柱电流低于周围孔的柱电流。一种基于有限元方法(FEM)的模型证实了SCM发现的电力行为。

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