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超平坦衬底上的全3D打印柔性氧化锌紫外光电探测器。

All 3D-Printed Flexible ZnO UV Photodetector on an Ultraflat Substrate.

作者信息

Lee Dongil, Seol Myeong-Lok, Motilal Gabrielle, Kim Beomseok, Moon Dong-Il, Han Jin-Woo, Meyyappan M

机构信息

Center for Nanotechnology, NASA Ames Research Center, Moffett Field, California94035, United States.

Universities Space Research Association, NASA Ames Research Center, Moffett Field, California94035, United States.

出版信息

ACS Sens. 2020 Apr 24;5(4):1028-1032. doi: 10.1021/acssensors.9b02544. Epub 2020 Mar 30.

Abstract

An all three-dimensional (3D)-printed flexible ZnO ultraviolet (UV) photodetector is demonstrated, where the 3D-printing method is used not only for the electrode and photosensitive material but also for creating a substrate. An ultraflat and flexible substrate capable of serving as the backbone layer is developed using a water-dissolvable polymer layer for surface planarization. A two-layered printing followed by surface treatment is demonstrated for the substrate preparation. As mechanical support but flexible, a thick and sparse thermoplastic polyurethane layer is printed. On its surface, a thin and dense poly(vinyl alcohol) (PVA) is then printed. A precise control of PVA reflow using a microwater droplet results in a flexible and extremely uniform substrate. A Cu-Ag nanowire network is directly 3D printed on the flexible substrate for the conducting layer, followed by ZnO for the photosensitive material. Unlike the planar two-dimensional printing that provides thin films, 3D printing allows the electrode to have a step height, which can be made like a dam to accommodate a thick film of ZnO. Photosensitivity as a function of various ZnO thickness values was investigated to establish an optimal thickness for UV response. The device was also tested in natural sunlight along with stability and reliability.

摘要

展示了一种全三维(3D)打印的柔性氧化锌(ZnO)紫外(UV)光电探测器,其中3D打印方法不仅用于电极和光敏材料,还用于制造衬底。使用水溶性聚合物层进行表面平坦化,开发出一种能够作为支撑层的超平坦且柔性的衬底。展示了一种用于衬底制备的两层打印及后续表面处理方法。作为机械支撑但具有柔性,打印了一层厚且稀疏的热塑性聚氨酯层。然后在其表面打印一层薄且致密的聚乙烯醇(PVA)。使用微水滴精确控制PVA回流,得到一种柔性且极其均匀的衬底。在柔性衬底上直接3D打印铜-银纳米线网络作为导电层,随后打印ZnO作为光敏材料。与提供薄膜的平面二维打印不同,3D打印允许电极具有台阶高度,可将其制成类似堤坝的形状以容纳厚的ZnO薄膜。研究了作为各种ZnO厚度值函数的光敏性,以确定用于紫外响应的最佳厚度。该器件还在自然阳光下进行了测试,并测试了其稳定性和可靠性。

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