Jing Titao, Wang Shuchang, Yuan Haiyuan, Yang Yujue, Xue Ming, Xu Bingang
School of Chemical Engineering and Technology, Sun Yat-sen University, Zhuhai, 519082, P. R. China.
Nanotechnology Center, School of Fashion and Textiles, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, 999077, P. R. China.
Small. 2023 Mar;19(12):e2206528. doi: 10.1002/smll.202206528. Epub 2023 Jan 1.
Gel-based triboelectric nanogenerator (TENG) has demonstrated promising potentials in stretchable electronics owing to gel electrodes' intrinsic softness, stretchability, and conductivity. However, delamination between gel and elastomer layers in deformations remains a considerable challenge for gel-based TENG, which most often induces structure failure. Herein, gels are regarded as adhesives and further effectively enhances interfacial bonding strength by a rough interface in adhesives' view, which exploits gels' liquid-to-solid transformation. This method just needs surface roughness of elastomer, which avoids chemical modification. Moreover, this method is effective to both organogel with good stickiness and hydrogel with weak stickiness, demonstrating wide applicability to different gels. Owing to the tough gel/elastomer interfacial bonding, TENG-Rough largely solves delamination problem under various deformations and the corresponding output performances of TENG-Rough are also maintained, implying a robust stretchable TENG device for reliable energy harvesting. This work demonstrates a general and facile method to enhance interfacial bonding in an adhesives' way, which provides a view for addressing delamination problem in gel-based TENGs and other kinds of gel-based devices.
基于凝胶的摩擦纳米发电机(TENG)由于凝胶电极固有的柔软性、可拉伸性和导电性,在可拉伸电子学领域展现出了广阔的应用前景。然而,对于基于凝胶的TENG而言,凝胶层与弹性体层在变形过程中发生分层仍然是一个严峻的挑战,这常常会导致结构失效。在此,凝胶被视为粘合剂,并从粘合剂的角度通过粗糙界面进一步有效地增强了界面粘结强度,该方法利用了凝胶的液-固转变。此方法仅需弹性体具有表面粗糙度,避免了化学改性。此外,该方法对粘性良好的有机凝胶和粘性较弱的水凝胶均有效,表明其对不同凝胶具有广泛的适用性。由于凝胶/弹性体界面粘结牢固,TENG-Rough在各种变形下基本解决了分层问题,并且TENG-Rough的相应输出性能也得以保持,这意味着可以构建一种坚固的可拉伸TENG装置用于可靠的能量收集。这项工作展示了一种通用且简便的方法,即以粘合剂的方式增强界面粘结,为解决基于凝胶的TENG及其他各类基于凝胶的器件中的分层问题提供了一种思路。