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Scalability of carbon-nanotube-based thin film transistors for flexible electronic devices manufactured using an all roll-to-roll gravure printing system

机译:基于碳纳米管的薄膜晶体管的可扩展性,所述柔性电子器件使用全卷凹版印刷系统制造

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To demonstrate that roll-to-roll (R2R) gravure printing is a suitable advanced manufacturing method for flexible thin film transistor (TFT)-based electronic circuits, three different nanomaterial-based inks (silver nanoparticles, BaTiO3 nanoparticles and single-walled carbon nanotubes (SWNTs)) were selected and optimized to enable the realization of fully printed SWNT-based TFTs (SWNT-TFTs) on 150-m-long rolls of 0.25-m-wide poly(ethylene terephthalate) (PET). SWNT-TFTs with 5 different channel lengths, namely, 30, 80, 130, 180, and 230?μm, were fabricated using a printing speed of 8?m/min. These SWNT-TFTs were characterized, and the obtained electrical parameters were related to major mechanical factors such as web tension, registration accuracy, impression roll pressure and printing speed to determine whether these mechanical factors were the sources of the observed device-to-device variations. By utilizing the electrical parameters from the SWNT-TFTs, a Monte Carlo simulation for a 1-bit adder circuit, as a reference, was conducted to demonstrate that functional circuits with reasonable complexity can indeed be manufactured using R2R gravure printing. The simulation results suggest that circuits with complexity, similar to the full adder circuit, can be printed with a 76% circuit yield if threshold voltage ( V th ) variations of less than 30% can be maintained.
机译:为了证明卷 - 卷(R2R)凹版印刷是一种适用于柔性薄膜晶体管(TFT)的电子电路,三种不同的纳米材料墨水(银纳米粒子,BATIO 3 TH )可以保持小于30%的阈值电压(V th )的变化,则可以将具有76%电路屈服的复杂性的电路。

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