Zhou Honglei, Qin Weiyang, Yu Qingmin, Cheng Huanyu, Yu Xudong, Wu Huaping
Department of Engineering Mechanics, School of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi'an 710129, China.
State Key Laboratory for Strength and Vibration of Mechanical Structures, Xi'an Jiaotong University, Xi'an 710049, China.
Nanomaterials (Basel). 2019 Feb 18;9(2):283. doi: 10.3390/nano9020283.
Flexible electronic systems have received increasing attention in the past few decades because of their wide-ranging applications that include the flexible display, eyelike digital camera, skin electronics, and intelligent surgical gloves, among many other health monitoring devices. As one of the most widely used technologies to integrate rigid functional devices with elastomeric substrates for the manufacturing of flexible electronic devices, transfer printing technology has been extensively studied. Though primarily relying on reversible interfacial adhesion, a variety of advanced transfer printing methods have been proposed and demonstrated. In this review, we first summarize the characteristics of a few representative methods of transfer printing. Next, we will introduce successful demonstrations of each method in flexible electronic devices. Moreover, the potential challenges and future development opportunities for transfer printing will then be briefly discussed.
在过去几十年中,柔性电子系统因其广泛的应用而受到越来越多的关注,这些应用包括柔性显示器、眼状数码相机、皮肤电子器件和智能手术手套,以及许多其他健康监测设备。作为将刚性功能器件与弹性体基板集成以制造柔性电子器件的最广泛使用的技术之一,转移印刷技术已得到广泛研究。尽管主要依赖可逆界面粘附,但已经提出并展示了多种先进的转移印刷方法。在这篇综述中,我们首先总结了几种代表性转移印刷方法的特点。接下来,我们将介绍每种方法在柔性电子器件中的成功应用实例。此外,还将简要讨论转移印刷面临的潜在挑战和未来发展机遇。