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Vertical organic permeable dual-base transistors for logic circuits.
Nature Communications ( IF 14.7 ) Pub Date : 2020-09-18 , DOI: 10.1038/s41467-020-18576-5
Erjuan Guo 1 , Zhongbin Wu 1, 2 , Ghader Darbandy 3 , Shen Xing 1 , Shu-Jen Wang 1 , Alexander Tahn 4 , Michael Göbel 5 , Alexander Kloes 3 , Karl Leo 1 , Hans Kleemann 1
Affiliation  

The main advantage of organic transistors with dual gates/bases is that the threshold voltages can be set as a function of the applied second gate/base bias, which is crucial for the application in logic gates and integrated circuits. However, incorporating a dual gate/base structure into an ultra-short channel vertical architecture represents a substantial challenge. Here, we realize a device concept of vertical organic permeable dual-base transistors, where the dual base electrodes can be used to tune the threshold voltages and change the on-currents. The detailed operation mechanisms are investigated by calibrated TCAD simulations. Finally, power-efficient logic circuits, e.g. inverter, NAND/AND computation functions are demonstrated with one single device operating at supply voltages of <2.0 V. We believe that this work offers a compact and technologically simple hardware platform with excellent application potential for vertical-channel organic transistors in complex logic circuits.



中文翻译:

用于逻辑电路的垂直有机可渗透双基极晶体管。

双栅极/基极有机晶体管的主要优点是阈值电压可以设置为施加的第二栅极/基极偏压的函数,这对于逻辑门和集成电路中的应用至关重要。然而,将双栅极/基极结构结合到超短沟道垂直架构中是一个巨大的挑战。在这里,我们实现了垂直有机可渗透双基极晶体管的器件概念,其中双基极可用于调节阈值电压和改变导通电流。通过校准的 TCAD 模拟研究了详细的操作机制。最后,通过在 <2.0 V 的电源电压下运行的单个器件演示了高能效逻辑电路,例如反相器、NAND/AND 计算功能。

更新日期:2020-09-20
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