Shadow enhanced self-charging power system for wave and solar energy harvesting from the ocean

Author:

Zhang Qian,Liang Qijie,Nandakumar Dilip Krishna,Qu Hao,Shi QiongfengORCID,Alzakia Fuad Indra,Tay Darrell Jun JieORCID,Yang Lin,Zhang Xueping,Suresh Lakshmi,Lee ChengkuoORCID,Wee Andrew Thye ShenORCID,Tan Swee Ching

Abstract

AbstractHybrid energy-harvesting systems that capture both wave and solar energy from the oceans using triboelectric nanogenerators and photovoltaic cells are promising renewable energy solutions. However, ubiquitous shadows cast from moving objects in these systems are undesirable as they degrade the performance of the photovoltaic cells. Here we report a shadow-tribo-effect nanogenerator that hybrids tribo-effect and shadow-effect together to overcome this issue. Several fiber-supercapacitors are integrated with the shadow-tribo-effect nanogenerator to form a self-charging power system. To capture and store wave/solar energy from oceans, an energy ball based on the self-charging power system is demonstrated. By harnessing the shadow-effect, i.e. the shadow of the moving object in the energy ball, the charging time shortens to 253.3 s to charge the fiber-supercapacitors to the same voltage (0.3 V) as using pure tribo-effect. This cost-effective method to harvest and store the wave/solar energy from the oceans in this work is expected to inspire next-generation large-scale blue energy harvesting.

Funder

Ministry of Education - Singapore

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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