微电子
材料科学
记忆电阻器
印刷电子产品
激光器
纳米技术
数码产品
生物电子学
选择性激光烧结
光电子学
计算机科学
墨水池
电气工程
光学
烧结
工程类
生物传感器
复合材料
物理
作者
Liang Yang,Hongrong Hu,Alexander Scholz,Florian Feist,Gabriel Cadilha Marques,Steven J. Kraus,N. Maximilian Bojanowski,Eva Blasco,Christopher Barner‐Kowollik,Jasmin Aghassi‐Hagmann,Martin Wegener
标识
DOI:10.1038/s41467-023-36722-7
摘要
Printed organic and inorganic electronics continue to be of large interest for sensors, bioelectronics, and security applications. Many printing techniques have been investigated, albeit often with typical minimum feature sizes in the tens of micrometer range and requiring post-processing procedures at elevated temperatures to enhance the performance of functional materials. Herein, we introduce laser printing with three different inks, for the semiconductor ZnO and the metals Pt and Ag, as a facile process for fabricating printed functional electronic devices with minimum feature sizes below 1 µm. The ZnO printing is based on laser-induced hydrothermal synthesis. Importantly, no sintering of any sort needs to be performed after laser printing for any of the three materials. To demonstrate the versatility of our approach, we show functional diodes, memristors, and a physically unclonable function based on a 6 × 6 memristor crossbar architecture. In addition, we realize functional transistors by combining laser printing and inkjet printing.
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