Rajeev Kiron Prabha, Beliatis Michael, Georgakopoulos Stamatis, Stolojan Vlad, Underwood John, Shkunov Maxim
Advanced Technology Institute, Electrical and Electronic Engineering, University of Surrey, Guildford GU2 7XH, United Kingdom.
J Nanosci Nanotechnol. 2019 Aug 1;19(8):4765-4770. doi: 10.1166/jnn.2019.16488.
Fabrication techniques such as laser patterning offer excellent potential for low cost and large area device fabrication. Conductive polymers can be used to replace expensive metallic inks such as silver and gold nanoparticles for printing technology. Electrical conductivity of the polymers can be improved by blending with carbon nanotubes. In this work, formulations of acid functionalized multiwalled carbon nanotubes (f-MWCNTs) and poly(ethylenedioxythiophene) [PEDOT]:polystyrene sulphonate [PSS] were processed, and thin films were prepared on plastic substrates. Conductivity of PEDOT:PSS increased almost four orders of magnitude after adding f-MWCNTs. Work function of PEDOT:PSS/f-MWCNTs films was ∼0.5 eV higher as compared to the work function of pure PEDOT:PSS films, determined by Kelvin probe method. Field-effect transistors source-drain electrodes were prepared on PET plastic substrates where PEDOT:PSS/f-MWCNTs were patterned using laser ablation at 44 mJ/pulse energy to define 36 μm electrode separation. Silicon nanowires were deposited using dielectrophoresis alignment technique to bridge laser patterned electrodes. Top-gated nanowire field effect transistors were completed by depositing parylene C as polymer gate dielectric and gold as the top-gate electrode. Transistor characteristics showed p-type conduction with excellent gate electrode coupling, with an ON/OFF ratio of ∼200. Thereby, we demonstrate the feasibility of using high workfunction, printable PEDOT:PSS/f-MWCNTs composite inks for laser patterned source/drain electrodes for nanowire transistors on flexible substrates.
诸如激光图案化等制造技术在低成本、大面积器件制造方面具有巨大潜力。导电聚合物可用于替代印刷技术中昂贵的金属油墨,如银和金纳米颗粒。通过与碳纳米管混合可以提高聚合物的电导率。在这项工作中,对酸官能化多壁碳纳米管(f-MWCNTs)和聚(3,4-乙撑二氧噻吩)[PEDOT]:聚苯乙烯磺酸盐[PSS]的配方进行了处理,并在塑料基板上制备了薄膜。添加f-MWCNTs后,PEDOT:PSS的电导率提高了近四个数量级。通过开尔文探针法测定,PEDOT:PSS/f-MWCNTs薄膜的功函数比纯PEDOT:PSS薄膜的功函数高约0.5eV。在PET塑料基板上制备场效应晶体管源漏电极,其中PEDOT:PSS/f-MWCNTs使用44mJ/脉冲能量的激光烧蚀进行图案化,以定义36μm的电极间距。使用介电泳对准技术沉积硅纳米线以桥接激光图案化电极。通过沉积聚对二甲苯C作为聚合物栅极电介质和金作为顶栅电极来完成顶栅纳米线场效应晶体管。晶体管特性显示出具有优异栅电极耦合的p型传导,开/关比约为200。因此,我们证明了在柔性基板上用于纳米线晶体管的激光图案化源/漏电极的高功函数、可印刷的PEDOT:PSS/f-MWCNTs复合油墨的可行性。