Chen, Yanghui Pu, Xiong Liu, Mengmeng Kuang, Shuangyang Zhang, Panpan Hua, Qilin Cong, Zifeng Guo, Wenbin Hu, Weiguo Wang, Zhong Lin Shape-Adaptive, Self-Healable Triboelectric Nanogenerator with Enhanced Performances by Soft Solid–Solid Contact Electrification The viable application of soft electronics/robotics relies on the development of power devices which are desired to be flexible, deformable, or even self-healable. We report here a shape-adaptive, self-healable triboelectric nanogenerator (SS-TENG) for harvesting biomechanical energies. The use of a viscoelastic polymer, normally known as Silly Putty, as the electrification material and as the matrix of a carbon-nanotube-filled composite (CNT-putty) electrode endows the SS-TENG the capability of adapting to arbitrary irregular surfaces and instantaneous healing from mechanical damage (almost completely recovered in 3 min without extra stimuli). Furthermore, the output performances of the SS-TENG have also been significantly improved because (i) the ideal soft contact is achieved at the solid–solid interfaces for more effective contact electrification and (ii) the introduced cation dopants make the putty even more tribo-negative than polytetrafluoroethylene. The SS-TENG can be adhered to any curvy surface, tailored, and reshaped into arbitrary configurations and utilized as a power supply for small electronics, suggesting promising applications in soft electronics/robotics in the future. contact electrification;cation dopants;power supply;surface;SS-TENG;electronic;power devices;output performances;application;Self-Healable Triboelectric Nanogenerator;self-healable triboelectric nanogenerator;3 min;Enhanced Performances;electrification material;Silly Putty;harvesting biomechanical energies 2019-07-17
    https://acs.figshare.com/articles/media/Shape-Adaptive_Self-Healable_Triboelectric_Nanogenerator_with_Enhanced_Performances_by_Soft_Solid_Solid_Contact_Electrification/8943653
10.1021/acsnano.9b02690.s004