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首页> 外文期刊>Science Advances >Breath figure–derived porous semiconducting films for organic electronics
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Breath figure–derived porous semiconducting films for organic electronics

机译:用于有机电子产品的呼吸图衍生多孔半导体薄膜

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摘要

Porous semiconductor film morphologies facilitate fluid diffusion and mass transport into the charge-carrying layers of diverse electronic devices. Here, we report the nature-inspired fabrication of several porous organic semiconductor-insulator blend films [semiconductor: P3HT (p-type polymer), C8BTBT (p-type small-molecule), and N2200 (n-type polymer); insulator: PS] by a breath figure patterning method and their broad and general applicability in organic thin-film transistors (OTFTs), gas sensors, organic electrochemical transistors (OECTs), and chemically doped conducting films. Detailed morphological analysis of these films demonstrates formation of textured layers with uniform nanopores reaching the bottom substrate with an unchanged solid-state packing structure. Device data gathered with both porous and dense control semiconductor films demonstrate that the former films are efficient TFT semiconductors but with added advantage of enhanced sensitivity to gases (e.g., 48.2%/ppm for NOsub2/sub using P3HT/PS), faster switching speeds (4.7 s for P3HT/PS OECTs), and more efficient molecular doping (conductivity, 0.13 S/m for N2200/PS).
机译:多孔半导体膜形态促进流体扩散和质量传输到多样化电子设备的携带层。在这里,我们报告了几种多孔有机半导体绝缘体共混膜的自然灵感的制作[半导体:P3HT(p型聚合物),C8BTBT(P型小分子)和N2200(n型聚合物);绝缘体:PS]通过呼吸图图案化方法及其在有机薄膜晶体管(OTFTS),气体传感器,有机电化学晶体管(OET)和化学掺杂导电膜中的广泛和一般适用性。这些薄膜的详细形态学分析表明,具有均匀的纳米孔的形成层,其具有未改变的固态包装结构。用多孔和致密控制半导体膜聚集的装置数据表明,前膜是有效的TFT半导体,但是使用P3HT / PS的增强的气体敏感性提高了增强的敏感性的优势(例如,48.2%/ ppm>使用p3ht / ps ),更快的开关速度(4.7秒用于P3HT / PS OET),更高效的分子掺杂(导电性,N2200 / PS的电导率为0.13 s / m)。

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