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Organic transistors based on oxidized single-walled carbon nanotube electrodes patterned via simple spray coating

机译:基于氧化单壁碳纳米管电极的有机晶体管通过简单喷涂图案化

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摘要

We developed a facile spray-printing method to fabricate oxidized single-walled carbon nanotube (Oxy-SWCNT) source-drain electrodes for use in organic field-effect transistors (OFETs). Surface oxidized SWCNT bundles enables the solution processability of Oxy-SWCNT without dispersant. The spray printing of an Oxy-SWCNT solution via a shadow mask led to electrode patterns with excellent transparency and electrical conductivity. Pattern resolution was optimized by adjusting printing volume and substrate temperature. The performance of the pentacene FETs with Oxy-SWCNT electrodes was compared with that of conventional Au electrodes. The FETs with Oxy-SWCNT electrodes exhibited higher charge carrier mobilities, on/off current ratios, and optical transmittances than those of FETs with Au electrodes. The increased device performance of the FETs with OxySWCNT electrodes is due to the low contact resistance resulting from the efficient charge injection and transport across the electrode-channel interface. High work function (- 5.1 eV) of the Oxy-SWCNT facilitated the charge injection. Our study demonstrates that Oxy-SWCNTs exhibit exceptional potential as a printable electrode material for OFETs and promise a better replacement for electrodes in transparent and flexible electronics.
机译:我们开发了一种嵌合喷涂方法,用于制造氧化的单壁碳纳米管(氧-WCNT)源 - 漏电极,用于有机场效应晶体管(OFET)。表面氧化的SWCNT束使得氧-WCNT的溶液加工性能够无分散剂。通过阴影掩模喷射氧-WCNT溶液的喷射印刷,导致具有优异透明度和电导率的电极图案。通过调节印刷体积和衬底温度来优化图案分辨率。将五烯FET与氧-WCNT电极的性能与常规Au电极的性能进行比较。具有氧 - SWCNT电极的FET表现出比具有Au电极的FET的电荷载流量,开/关电流比和光学透射率更高。具有oxyswnt电极的FET的装置性能增加是由于由高效电荷注入和通过电极通道接口运输产生的低接触电阻。氧 - SWCNT的高功函数( - 5.1eV)促进了电荷注入。我们的研究表明,氧 - SWCNTS作为OFETS的可打印电极材料表现出卓越的潜能,并承诺在透明和柔性电子器件中更好地更换电极。

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