论文标题
基于PTSE2和PTTE2的多功能和可重复使用的超薄电子纹身
Multipurpose and Reusable Ultrathin Electronic Tattoos Based on PtSe2 and PtTe2
论文作者
论文摘要
可穿戴的生物电子学,重点放在先进的以人为导向的生物医学设备的研究和开发中,在过去十年中引起了极大的兴趣。科学家和临床医生发现,必须利用戴皮肤肤色的智能纹身来按需和卧床监测个人的生命体征。在这里,我们报告了基于新型的超薄铂金二维二甲化合物(PT-TMDS)的电子纹身的发展,作为未来可穿戴生物电子药物的高级构件。我们从大规模合成铂(PTSE2)和铂二烷硫酸铂(PTTE2)层次材料中制成了这些超薄电子纹身,并将它们用于监测人类生理生命体征,例如心脏和大脑的电气活动,肌肉,肌肉收缩,眼睛运动和温度。我们表明,两种材料都可以用于这些应用;然而,由于其金属结构,发现PTTE2是最合适的选择。在薄板电阻,皮肤接触和电化学阻抗方面,PTTE2优于最先进的黄金和石墨烯电子纹身,并与医用级AG/AGCL凝胶电极相当。与单层石墨烯纹身相比,PTTE2纹身的阻抗降低了四倍,薄板电阻降低了近100倍。这项工作的可能迅速含义之一可能是发展先进的人机界面。为了显示应用程序,我们构建了一个多纹身系统,该系统可以轻松区分眼动并确定个人视力的方向。
Wearable bioelectronics with emphasis on the research and development of advanced person-oriented biomedical devices have attracted immense interest in the last decade. Scientists and clinicians find it essential to utilize skin-worn smart tattoos for on-demand and ambulatory monitoring of an individual's vital signs. Here we report on the development of novel ultrathin platinum-based two-dimensional dichalcogenide (Pt-TMDs) based electronic tattoos as advanced building blocks of future wearable bioelectronics. We made these ultrathin electronic tattoos out of large-scale synthesized platinum diselenide (PtSe2) and platinum ditelluride (PtTe2) layered materials and used them for monitoring human physiological vital signs, such as the electrical activity of the heart and the brain, muscle contractions, eye movements, and temperature. We show that both materials can be used for these applications; yet, PtTe2 was found to be the most suitable choice due to its metallic structure. In terms of sheet resistance, skin-contact, and electrochemical impedance, PtTe2 outperforms state-of-the-art gold and graphene electronic tattoos and performs on par with medical-grade Ag/AgCl gel electrodes. The PtTe2 tattoos show four times lower impedance and almost 100 times lower sheet resistance compared to monolayer graphene tattoos. One of the possible prompt implications of the work is perhaps in the development of advanced human-machine interfaces. To display the application, we built a multi-tattoo system that can easily distinguish eye movement and identify the direction of an individual's sight.