Electrical Engineering and Information Systems, The University of Tokyo , 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Exploratory Research for Advanced Technology (ERATO), Japan Science and Technology Agency (JST) , Bunkyo-ku, Tokyo 113-8656, Japan.
ACS Appl Mater Interfaces. 2017 Oct 11;9(40):34744-34750. doi: 10.1021/acsami.7b12802. Epub 2017 Sep 28.
Flexible, transparent electrodes are a crucial component for future implantable and wearable systems. For practical applications, conductivity and flexibility should be further improved to prevent signal attenuation, heat generation, and disconnection. Herein, we fabricate an ultraflexible transparent electrode with low sheet resistance (8.6 Ω/sq) using an indium-tin-oxide/Au/indium-tin-oxide (ITO) multilayer on a 1 μm thick parylene substrate. The electrodes were foldable and when compared to pristine ITO displayed greater mechanical robustness. Applicability for large-area applications was confirmed through electrochemical impedance measurements, and the compatibility of electrode arrays for in vivo applications was demonstrated with an optogenetic experiment. As a result of the ultraflexible transparent electrode's excellent conformity to soft tissue, voltage signals induced by light stimulation directly below the electrode were successfully recorded on the moving muscle.
柔性透明电极是未来可植入和可穿戴系统的关键组成部分。为了实际应用,应进一步提高导电性和灵活性,以防止信号衰减、发热和断开。在此,我们使用 1 μm 厚的聚对二甲苯基板上的氧化铟锡/金/氧化铟锡(ITO)多层结构,制备了一种具有低方阻(8.6 Ω/sq)的超柔性透明电极。这些电极可折叠,与原始的 ITO 相比,具有更好的机械鲁棒性。通过电化学阻抗测量证实了其在大面积应用中的适用性,并通过光遗传学实验证明了电极阵列用于体内应用的兼容性。由于超柔性透明电极与软组织具有极好的一致性,因此成功地在电极正下方的移动肌肉上记录到由光刺激引起的电压信号。