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Achieving Ultrahigh Output Energy Density of Triboelectric Nanogenerators in High‐Pressure Gas Environment

Jingjing Fu, Guoqiang Xu, Chang-Heng Li, Xin Xia, Dong Guan, Jian Li, Zhengyong Huang, Yunlong Zi

2020Advanced Science111 citationsDOIOpen Access PDF

Abstract

Through years of development, the triboelectric nanogenerator (TENG) has been demonstrated as a burgeoning efficient energy harvester. Plenty of efforts have been devoted to further improving the electric output performance through material/surface optimization, ion implantation or the external electric circuit. However, all these methods cannot break through the fundamental limitation brought by the inevitable electrical breakdown effect, and thus the output energy density is restricted. Here, a method for enhancing the threshold output energy density of TENGs is proposed by suppressing the breakdown effects in the high-pressure gas environment. With that, the output energy density of the contact-separation mode TENG can be increased by over 25 times in 10 atm than that in the atmosphere, and that of the freestanding sliding TENG can also achieve over 5 times increase in 6 atm. This research demonstrates the excellent suppression effect of the electric breakdown brought by the high-pressure gas environment, which may provide a practical and effective technological route to promote the output performance of TENGs.

Topics & Concepts

Triboelectric effectNanogeneratorMaterials scienceMechanical energyEnergy (signal processing)Electric potential energyVoltageElectrical engineeringOptoelectronicsEngineering physicsNanotechnologyAutomotive engineeringPower (physics)Composite materialEngineeringPhysicsQuantum mechanicsAdvanced Sensor and Energy Harvesting MaterialsConducting polymers and applicationsTactile and Sensory Interactions