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On-Substrate Joule Effect Heating by Printed Micro-Heater for the Preparation of ZnO Semiconductor Thin Film

机译:印刷微加热器在基板上的焦耳效应加热制备ZnO半导体薄膜

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摘要

Fabrication of printed electronic devices along with other parts such as supporting structures is a major problem in modern additive fabrication. Solution-based inkjet printing of metal oxide semiconductor usually requires a heat treatment step to facilitate the formation of target material. The employment of external furnace introduces additional complexity in the fabrication scheme, which is supposed to be simplified by the additive manufacturing process. This work presents the fabrication and utilization of micro-heater on the same thermal resistive substrate with the printed precursor pattern to facilitate the formation of zinc oxide (ZnO) semiconductor. The ultraviolet (UV) photodetector fabricated by the proposed scheme was successfully demonstrated. The performance characterization of the printed devices shows that increasing input heating power can effectively improve the electrical properties owing to a better formation of ZnO. The proposed approach using the on-substrate heating element could be useful for the additive manufacturing of functional material by eliminating the necessity of external heating equipment, and it allows in-situ annealing for the printed semiconductor. Hence, the integration of the printed electronic device with printing processes of other materials could be made possible.
机译:印刷电子设备以及诸如支撑结构之类的其他部件的制造是现代增材制造中的主要问题。金属氧化物半导体的基于溶液的喷墨印刷通常需要热处理步骤以促进靶材料的形成。使用外部炉子会增加制造方案的复杂性,这可以通过增材制造工艺来简化。这项工作提出了在具有印刷前体图案的同一热阻基板上微加热器的制造和利用,以促进形成氧化锌(ZnO)半导体。通过所提出的方案制造的紫外光电探测器被成功地证明了。印刷器件的性能表征表明,由于更好地形成ZnO,增加输入加热功率可以有效地改善电性能。所提出的使用衬底上加热元件的方法通过消除外部加热设备的必要性,可以用于功能材料的增材制造,并且可以对印刷半导体进行原位退火。因此,可以使印刷电子设备与其他材料的印刷过程集成在一起。

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