转印
光子学
纳米技术
材料科学
纳米光子学
集成电路
计算机科学
集成光学
光子集成电路
半导体
技术转让
3D打印
基质(水族馆)
传输(计算)
制作
印刷电路板
电子线路
数码产品
光开关
数据传输
电子元件
光电子学
作者
Can Yu,Meng Zhang,Lei Liang,Qin Li,Yongyi Chen,Yuxin Lei,Yubing Wang,Yue Song,Cheng Qiu,Peng Jia,Dabing Li,Lijun Wang
标识
DOI:10.1038/s41377-025-02064-w
摘要
Transfer printing is a powerful and versatile integration method that is attracting increasing attention as regards both scientific research and industrial manufacturing. The transfer printing technique utilizes the viscoelastic properties of a stamp to pick devices (ink) from a donor substrate and print them onto a target substrate, exploiting the competition between several interfacial adhesion forces. The overall yield can be improved through the introduction of external stimuli such as light, heat, solution, pressure, and magnetic fields during the transfer printing operation. This review summarizes different transfer printing methods based on their working principles and discusses their detailed applications in photonic integrated circuits, taking lasers, semiconductor optical amplifiers, photodetectors, and other optical electronic elements as examples. Hence, the feasibility and viability of transfer printing are illustrated. Additionally, future challenges and opportunities for innovative development are discussed.
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