Guo Jiahui, Yu Yunru, Zhang Dagan, Zhang Han, Zhao Yuanjin
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
Department of Rheumatology Immunology, Institute of Translational Medicine, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing 210008, China.
Research (Wash D C). 2021 Mar 3;2021:7065907. doi: 10.34133/2021/7065907. eCollection 2021.
Electronic skins with distinctive features have attracted remarkable attention from researchers because of their promising applications in flexible electronics. Here, we present novel morphologically conductive hydrogel microfibers with MXene encapsulation by using a multi-injection coflow glass capillary microfluidic chip. The coaxial flows in microchannels together with fast gelation between alginate and calcium ions ensure the formation of hollow straight as well as helical microfibers and guarantee the encapsulation of MXene. The resultant hollow straight and helical MXene hydrogel microfibers were with highly controllable morphologies and package features. Benefiting from the easy manipulation of the microfluidics, the structure compositions and the sizes of MXene hydrogel microfibers could be easily tailored by varying different flow rates. It was demonstrated that these morphologically conductive MXene hydrogel microfibers were with outstanding capabilities of sensitive responses to motion and photothermal stimulations, according to their corresponding resistance changes. Thus, we believe that our morphologically conductive MXene hydrogel microfibers with these excellent features will find important applications in smart flexible electronics especially electronic skins.
具有独特特性的电子皮肤因其在柔性电子学中的广阔应用前景而备受研究人员关注。在此,我们通过使用多注射共流玻璃毛细管微流控芯片,展示了一种新型的包裹有MXene的形态导电水凝胶微纤维。微通道中的同轴流以及藻酸盐和钙离子之间的快速凝胶化确保了中空直微纤维和螺旋微纤维的形成,并保证了MXene的包裹。所得的中空直形和螺旋形MXene水凝胶微纤维具有高度可控的形态和封装特性。受益于微流控技术的易操作性,通过改变不同流速可以轻松调整MXene水凝胶微纤维的结构组成和尺寸。结果表明,这些形态导电的MXene水凝胶微纤维根据其相应的电阻变化,对运动和光热刺激具有出色的敏感响应能力。因此,我们相信我们的具有这些优异特性的形态导电MXene水凝胶微纤维将在智能柔性电子学尤其是电子皮肤中找到重要应用。