Yoon Jinsu, Han Jungmin, Choi Bongsik, Lee Yongwoo, Kim Yeamin, Park Jinhee, Lim Meehyun, Kang Min-Ho, Kim Dae Hwan, Kim Dong Myong, Kim Sungho, Choi Sung-Jin
School of Electrical Engineering , Kookmin University , Seoul 02707 , Korea.
Mechatronics R&D Center , Samsung Electronics , Gyeonggi-do 18448 , Korea.
ACS Nano. 2018 Jun 26;12(6):6006-6012. doi: 10.1021/acsnano.8b02244. Epub 2018 May 25.
Electronics that degrade after stable operation for a desired operating time, called transient electronics, are of great interest in many fields, including biomedical implants, secure memory devices, and environmental sensors. Thus, the development of transient materials is critical for the advancement of transient electronics and their applications. However, previous reports have mostly relied on achieving transience in aqueous solutions, where the transience time is largely predetermined based on the materials initially selected at the beginning of the fabrication. Therefore, accurate control of the transience time is difficult, thereby limiting their application. In this work, we demonstrate transient electronics based on a water-soluble poly(vinyl alcohol) (PVA) substrate on which carbon nanotube (CNT)-based field-effect transistors were fabricated. We regulated the structural parameters of the PVA substrate using a three-dimensional (3D) printer to accurately control and program the transience time of the PVA substrate in water. The 3D printing technology can produce complex objects directly, thus enabling the efficient fabrication of a transient substrate with a prescribed and controlled transience time. In addition, the 3D printer was used to develop a facile method for the selective and partial destruction of electronics.
在经过一段期望的工作时间后性能会退化的电子器件,即瞬态电子器件,在包括生物医学植入物、安全存储设备和环境传感器在内的许多领域都备受关注。因此,瞬态材料的开发对于瞬态电子器件及其应用的发展至关重要。然而,先前的报道大多依赖于在水溶液中实现瞬态特性,在这种情况下,瞬态时间很大程度上是根据制造开始时最初选择的材料预先确定的。因此,精确控制瞬态时间很困难,从而限制了它们的应用。在这项工作中,我们展示了基于水溶性聚乙烯醇(PVA)基板的瞬态电子器件,在该基板上制造了基于碳纳米管(CNT)的场效应晶体管。我们使用三维(3D)打印机调节PVA基板的结构参数,以精确控制和设定PVA基板在水中的瞬态时间。3D打印技术可以直接制造复杂物体,从而能够高效制造具有规定和可控瞬态时间的瞬态基板。此外,3D打印机还被用于开发一种简便的方法,用于对电子器件进行选择性和部分破坏。