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Self-powered textile for wearable electronics by hybridizing fiber-shaped nanogenerators, solar cells, and supercapacitors

Science Advances · 2016 · Vol. 2(10) · pp. e1600097–e1600097
Zhen WenMin‐Hsin YehHengyu GuoJie WangYunlong ZiWeidong XuJianan DengLei ZhuXin WangChenguo HuLi ZhuXuhui SunZhong Lin Wang

Abstract

Wearable electronics fabricated on lightweight and flexible substrate are believed to have great potential for portable devices, but their applications are limited by the life span of their batteries. We propose a hybridized self-charging power textile system with the aim of simultaneously collecting outdoor sunshine and random body motion energies and then storing them in an energy storage unit. Both of the harvested energies can be easily converted into electricity by using fiber-shaped dye-sensitized solar cells (for solar energy) and fiber-shaped triboelectric nanogenerators (for random body motion energy) and then further stored as chemical energy in fiber-shaped supercapacitors. Because of the all-fiber-shaped structure of the entire system, our proposed hybridized self-charging textile system can be easily woven into electronic textiles to fabricate smart clothes to sustainably operate mobile or wearable electronics.

Advanced Sensor and Energy Harvesting MaterialsSupercapacitor Materials and FabricationAdvanced Materials and MechanicsSupercapacitorWearable technologyElectronicsWearable computerNanotechnologyMaterials scienceTextileFiberElectrical engineeringComputer science
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Self-powered textile for wearable electronics by hybridizing fiber-shaped nanogenerators, solar cells, and supercapacitors · Scinovex