Institute of Special Materials and Technology, Fudan University, Shanghai200433, P. R. China.
Department of Chemistry, Fudan University, Shanghai200433, P. R. China.
ACS Nano. 2022 Nov 22;16(11):19305-19318. doi: 10.1021/acsnano.2c08760. Epub 2022 Nov 4.
Electric field-based noncontact flexible electronics (EF-NFEs) allow people to communicate with intelligent devices through noncontact human-machine interactions, but current EF-NFEs with limited detections (usually <20 cm) distance often lack a high spatial resolution. Here, we report a versatile material for preparing EF-NFE devices with a high spatial resolution to realize everyday human activity detection. Eutectic gallium-indium alloy (EGaIn) was introduced into poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) chains to fabricate this material, named Ga-PP. The introduction of EGaIn successfully regulates the intra- and interchain interactions of PEDOT chains and thus increases the π-electron accumulation on Ga-PP chains, which facilitates improvement of the electron storage of Ga-PP and its noncontact sensing ability. The water solubility of the obtained Ga-PP can reach approximately 15 mg/mL, comparable to that of commercial PEDOT:PSS, thus making Ga-PP suitable for various design strategies to prepare EF-NFE devices. We demonstrate that a conductive textile with a noncontact sensing ability can be achieved by immersing a commercial silk fabric into a Ga-PP solution for 5 min. With a detection distance exceeding 1 m, the prepared Ga-PP-based conductive textile (Ga-PP-CT) possesses outstanding noncontact sensing sensitivity, showing advantages in tracing the locations of signal sources and distinguishing motion states. Surprisingly, even when placed in water, Ga-PP-CT can be used to monitor the movement signals of athletes in different sporting events and output specific noncontact response signals for different sports. Intriguingly, the Ga-PP solution itself can be used to construct noncontact sensing conductive circuits, displaying the potential to be incorporated into smart electronics.
电场型非接触式柔性电子产品(EF-NFEs)使人们能够通过非接触人机交互与智能设备进行通信,但目前具有有限检测距离(通常<20cm)的 EF-NFEs 往往缺乏高空间分辨率。在这里,我们报告了一种用于制备具有高空间分辨率的 EF-NFE 器件的多功能材料,以实现日常人体活动检测。将共晶镓-铟合金(EGaIn)引入聚(3,4-亚乙基二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)链中,制备了这种材料,命名为 Ga-PP。EGaIn 的引入成功地调节了 PEDOT 链的分子内和分子间相互作用,从而增加了 Ga-PP 链上的π-电子积累,这有助于提高 Ga-PP 的电子存储能力及其非接触式传感能力。所获得的 Ga-PP 的水溶性可达到约 15mg/mL,与商业 PEDOT:PSS 相当,因此使 Ga-PP 适合各种设计策略来制备 EF-NFE 器件。我们证明,通过将商业丝绸织物浸入 Ga-PP 溶液中 5 分钟,可以实现具有非接触式传感能力的导电纺织品。制备的基于 Ga-PP 的导电纺织品(Ga-PP-CT)具有超过 1m 的检测距离,具有出色的非接触式传感灵敏度,在跟踪信号源位置和区分运动状态方面具有优势。令人惊讶的是,即使放置在水中,Ga-PP-CT 也可以用于监测不同运动项目中运动员的运动信号,并为不同运动输出特定的非接触响应信号。有趣的是,Ga-PP 溶液本身可用于构建非接触式传感导电电路,显示出被纳入智能电子设备的潜力。