首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Printable carbon nanotube-based elastic conductors for fully-printed sub-1 V stretchable electrolyte-gated transistors and inverters
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Printable carbon nanotube-based elastic conductors for fully-printed sub-1 V stretchable electrolyte-gated transistors and inverters

机译:可印刷的碳纳米管基弹性导体,用于全印刷的Sub-1 V可拉伸电解质门控晶体管和逆变器

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Single-walled carbon nanotube (SWCNT)-based hybrid gel electrodes were fabricated for fully printed stretchable thin-film transistors and inverters operating at very small voltages (below 1 V). Printable and stretchable electrodes were fabricated by supplementing electrically conductive SWCNTs in rubbery polymer electrolytes, known as ionic gels. To fabricate stretchable electronic circuits, SWCNT-based stretchable source and drain electrodes as well as semiconductors, gate dielectrics, gate electrodes (either conducting polymer or SWCNT-based hybrid electrode) and load resistors were directly deposited by spray printing at low temperatures (<= 130 degrees C). Fully printed electrolyte-gated transistors (EGTs) based on SWCNT hybrid electrodes turned on and off at low operation voltages below 1 V and the devices showed low hysteresis with reasonably high on/off current ratios on polymer and paper substrates. In addition, stretchable side-gated coplanar transistors were successfully demonstrated on a rubber substrate, which exhibited reliable electrical characteristics even at a strain of 100%. An array of resistor-loaded stretchable inverters was also fabricated by spray-printing EGTs and CNT-based resistors. The resulting inverters exhibited appropriate voltage-inverting characteristics at different tensile strains and the shift in inversion voltage was in a very small Vin range of 0.1 V. These results demonstrate that the hybrid gel-type electrodes are promising for the fabrication of low-voltage stretchable all-printed transistors and electronic circuits.
机译:制造单壁碳纳米管(SWCNT)的混合凝胶电极,用于全印刷的可拉伸薄膜晶体管和在非常小的电压下操作的逆变器(低于1V)。通过在橡胶状聚合物电解质中补充导电的SWCNTS来制造可印刷和可拉伸电极,称为离子凝胶。为了制造可拉伸的电子电路,基于SWCNT的可拉伸源和漏极以及半导体,栅极电介质,栅电极(导电聚合物或SWCNT基混合电极)和负载电阻被直接通过喷射印刷在低温下沉积(<= 130 c)。基于SWCNT混合电极的完全印刷的电解质门控晶体管(eGTS)在低于1V的低操作电压下打开和关闭,并且该器件在聚合物和纸质基板上具有合理的高开/关电流比率的低滞后。另外,在橡胶基材上成功地证明了可拉伸的侧面镶边共面晶体管,即使在100%的菌株中也表现出可靠的电特性。还通过喷射印刷ENT和基于CNT基电阻制造了一系列电阻器可拉伸逆变器。所得反相器在不同拉伸菌株处表现出适当的电压反相特性,反转电压的偏移处于0.1V的非常小的VIN范围内。这些结果表明,混合凝胶型电极对于制造低压伸展的制造是有希望的全印刷晶体管和电子电路。

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