High-performance flexible lead-free nanocomposite piezoelectric nanogenerator for biomechanical energy harvesting and storage

被引:219
作者
Siddiqui, Saqib [1 ]
Kim, Do-Il [1 ]
Le Thai Duy [1 ]
Minh Triet Nguyen [1 ]
Muhammad, Shoaib [2 ]
Yoon, Won-Sub [2 ]
Lee, Nae-Eung [1 ,3 ,4 ]
机构
[1] Sungkyunkwan Univ SKKU, Sch Adv Mat Sci & Engn, Suwon 440746, Kyunggi Do, South Korea
[2] Sungkyunkwan Univ SKKU, Dept Energy Sci, Suwon 440746, Kyunggi Do, South Korea
[3] Sungkyunkwan Univ SKKU, SKKU Adv Inst Nanotechnol, Suwon 440746, Kyunggi Do, South Korea
[4] Sungkyunkwan Univ SKKU, Samsung Adv Inst Hlth Sci & Technol, Suwon 440746, Kyunggi Do, South Korea
基金
新加坡国家研究基金会;
关键词
P(VDF-TrFE); Barium titanate (BaTiO3) nanoparticles; Nanocomposite; Piezoelectric nano-generator; Energy storage; THIN-FILM NANOGENERATOR; TRIBOELECTRIC NANOGENERATORS; MECHANICAL ENERGY; BETA-POLYMORPH; DIRECT-WRITE; SENSOR; NANOWIRES; GENERATOR; CELL;
D O I
10.1016/j.nanoen.2015.04.030
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Environmentally friendly and flexible piezoelectric nanogenerators (PENGs) have attracted considerable interest for use in autonomous micro-/nano-systems, wearable electronics, and implantable biomedical devices. Herein, a flexible, lead-free, solution-processable and efficient PENG is demonstrated, based on a highly piezoelectric nanocomposite thin film of barium titanate nanoparticles (BT NPs) embedded into a highly crystalline polyvinylidene fluoride-trifluoroethylene (P(VDF-TrFE)) polymer for charge storage. The nanocomposite PENG (nc-PENG) with high loading of BT NPs up to 40 wt% in the nanocomposite can produce output voltage as high as 9.8 V and output power density of 13.5 mu W/cm2 under cyclic bending, comparable to the output of conventional inorganic polycrystalline lead zirconate titanate PENGs. The high performance of these nc-PENGs is primarily attributed to the very high effective piezoelectricity of the highly crystalline P(VDF-TrFE), strengthened by the BT NPs. The nc-PENG was also demonstrated to harvest biomechanical energy from simple body movements and store the generated electricity during mechanical and biomechanical motions in a rechargeable microbattery. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:177 / 185
页数:9
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