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Nanocrystal Inks: Photoelectrochemical Printing of Cu_2O Nanocrystals on Silicon with 2D Control on Polyhedral Shapes

机译:纳米晶体油墨:在硅上以多面体形状进行二维控制的Cu_2O纳米晶体的光电化学印刷

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摘要

Here, a printing technology is reported that enables the functionalization of photoconducting materials with an arbitrary user-defined pattern of nanocrystals. Two sets of information can be encoded into the same unit area; control over the polyhedral shape of individual nanocrystals and high lateral resolution (micrometer scale) for large 2D patterns (millimeter scale) of Cu2O that were grown over unstructured amorphous silicon. The key to this new technology is a parallel modulation of both the electrode kinetics at the silicon/electrolyte interface and the light-assisted control of adsorption of halide ions on the growing Cu2O particles. This is achieved using local pixelation of a visible light stimulus by adapting to the field of photoelectrochemistry spatial light modulation more often used in super resolution microscopy. Any user-defined pattern (i.e., any arbitrary bitmap image file or a sequence of images) is converted within seconds into an array of nanoparticles. The process does not rely on the use of physical masks or chemical templating and it is parallel, meaning, for example, that it is possible to guide the exclusive growth of cubic nanoparticles in an area defined at will by the operator, while the neighboring section(s) are being covered exclusively by octahedrons.
机译:在此,报道了一种印刷技术,该印刷技术能够使具有任意用户定义的纳米晶体图案的光导材料功能化。可以将两组信息编码到相同的单位区域中。控制单个纳米晶体的多面体形状,以及在非结构化非晶硅上生长的大尺寸Cu2O 2D图案(毫米级)的高横向分辨率(微米级)。这项新技术的关键是对硅/电解质界面处的电极动力学进行并行调节,以及对生长的Cu2O颗粒上卤化物离子的吸附进行光辅助控制。这是通过使用可见光刺激的局部像素化来实现的,方法是适应超高分辨率显微镜中更常使用的光电化学空间光调制领域。任何用户定义的模式(即任何任意的位图图像文件或图像序列)都可以在几秒钟内转换为纳米颗粒阵列。该过程不依赖于物理掩模或化学模板的使用,并且是并行的,例如,这意味着可以指导操作员随意定义的区域中立方纳米粒子的排他性生长,而相邻区域(s)只被八面体覆盖。

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