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In-situ device integration of large-area patterned organic nanowire arrays for high-performance optical sensors

机译:用于高性能光学传感器的大面积图案化有机纳米线阵列的原位设备集成

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摘要

Single-crystalline organic nanowires (NWs) are important building blocks for future low-cost and efficient nano-optoelectronic devices due to their extraordinary properties. However, it remains a critical challenge to achieve large-scale organic NW array assembly and device integration. Herein, we demonstrate a feasible one-step method for large-area patterned growth of cross-aligned single-crystalline organic NW arrays and their in-situ device integration for optical image sensors. The integrated image sensor circuitry contained a 10 × 10 pixel array in an area of 1.3 × 1.3 mm2, showing high spatial resolution, excellent stability and reproducibility. More importantly, 100% of the pixels successfully operated at a high response speed and relatively small pixel-to-pixel variation. The high yield and high spatial resolution of the operational pixels, along with the high integration level of the device, clearly demonstrate the great potential of the one-step organic NW array growth and device construction approach for large-scale optoelectronic device integration.
机译:由于其非凡的性能,单晶有机纳米线(NWs)是未来低成本和高效的纳米光电器件的重要组成部分。但是,实现大规模有机NW阵列组装和设备集成仍然是关键挑战。在这里,我们展示了一种可行的一步法,用于交叉取向的单晶有机NW阵列的大面积图案化生长及其光学图像传感器的原位器件集成。集成的图像传感器电路在1.3×1.3?mm 2 的区域中包含10×10像素阵列,显示出高空间分辨率,出色的稳定性和可重复性。更重要的是,100%的像素成功地以高响应速度和相对较小的像素间差异进行了操作。操作像素的高产量和高空间分辨率,以及器件的高集成度,清楚地证明了一步式有机NW阵列增长和器件构建方法对于大规模光电器件集成的巨大潜力。

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