Literature DB >> 27267558

Harvesting Broad Frequency Band Blue Energy by a Triboelectric-Electromagnetic Hybrid Nanogenerator.

Zhen Wen1,2,3, Hengyu Guo1,4, Yunlong Zi1, Min-Hsin Yeh1, Xin Wang1, Jianan Deng1, Jie Wang1, Shengming Li1, Chenguo Hu4, Liping Zhu2, Zhong Lin Wang1,5.   

Abstract

Ocean wave associated energy is huge, but it has little use toward world energy. Although such blue energy is capable of meeting all of our energy needs, there is no effective way to harvest it due to its low frequency and irregular amplitude, which may restrict the application of traditional power generators. In this work, we report a hybrid nanogenerator that consists of a spiral-interdigitated-electrode triboelectric nanogenerator (S-TENG) and a wrap-around electromagnetic generator (W-EMG) for harvesting ocean energy. In this design, the S-TENG can be fully isolated from the external environment through packaging and indirectly driven by the noncontact attractive forces between pairs of magnets, and W-EMG can be easily hybridized. Notably, the hybrid nanogenerator could generate electricity under either rotation mode or fluctuation mode to collect energy in ocean tide, current, and wave energy due to the unique structural design. In addition, the characteristics and advantages of outputs indicate that the S-TENG is irreplaceable for harvesting low rotation speeds (<100 rpm) or motion frequencies (<2 Hz) energy, which fits the frequency range for most of the water wave based blue energy, while W-EMG is able to produce larger output at high frequencies (>10 Hz). The complementary output can be maximized and hybridized for harvesting energy in a broad frequency range. Finally, a single hybrid nanogenerator unit was demonstrated to harvest blue energy as a practical power source to drive several LEDs under different simulated water wave conditions. We also proposed a blue energy harvesting system floating on the ocean surface that could simultaneously harvest wind, solar, and wave energy. The proposed hybrid nanogenerator renders an effective and sustainable progress in practical applications of the hybrid nanogenerator toward harvesting water wave energy offered by nature.

Entities:  

Keywords:  EMG; TENG; blue energy; broad frequency band; hybrid nanogenerator

Year:  2016        PMID: 27267558     DOI: 10.1021/acsnano.6b03293

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  14 in total

1.  Effective anti-biofouling enabled by surface electric disturbance from water wave-driven nanogenerator.

Authors:  Yin Long; Yanhao Yu; Xin Yin; Jun Li; Xiaosong Du; Yadong Jiang; Xudong Wang
Journal:  Nano Energy       Date:  2018-12-21       Impact factor: 17.881

Review 2.  Hybrid Triboelectric-Electromagnetic Nanogenerators for Mechanical Energy Harvesting: A Review.

Authors:  João V Vidal; Vladislav Slabov; Andrei L Kholkin; Marco P Soares Dos Santos
Journal:  Nanomicro Lett       Date:  2021-09-20

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

Authors:  Zhen Wen; Min-Hsin Yeh; Hengyu Guo; Jie Wang; Yunlong Zi; Weidong Xu; Jianan Deng; Lei Zhu; Xin Wang; Chenguo Hu; Liping Zhu; Xuhui Sun; Zhong Lin Wang
Journal:  Sci Adv       Date:  2016-10-26       Impact factor: 14.136

Review 4.  Nanogenerators for Self-Powered Gas Sensing.

Authors:  Zhen Wen; Qingqing Shen; Xuhui Sun
Journal:  Nanomicro Lett       Date:  2017-05-06

Review 5.  Integrated Triboelectric Nanogenerators in the Era of the Internet of Things.

Authors:  Abdelsalam Ahmed; Islam Hassan; Maher F El-Kady; Ali Radhi; Chang Kyu Jeong; Ponnambalam Ravi Selvaganapathy; Jean Zu; Shenqiang Ren; Qing Wang; Richard B Kaner
Journal:  Adv Sci (Weinh)       Date:  2019-09-30       Impact factor: 16.806

6.  A high-performance triboelectric-electromagnetic hybrid wind energy harvester based on rotational tapered rollers aiming at outdoor IoT applications.

Authors:  Yan Fang; Tianyi Tang; Yunfei Li; Cheng Hou; Feng Wen; Zhan Yang; Tao Chen; Lining Sun; Huicong Liu; Chengkuo Lee
Journal:  iScience       Date:  2021-03-12

Review 7.  Self-charging power system for distributed energy: beyond the energy storage unit.

Authors:  Xiong Pu; Zhong Lin Wang
Journal:  Chem Sci       Date:  2020-11-03       Impact factor: 9.825

8.  A Spherical Hybrid Triboelectric Nanogenerator for Enhanced Water Wave Energy Harvesting.

Authors:  Kwangseok Lee; Jeong-Won Lee; Kihwan Kim; Donghyeon Yoo; Dong Sung Kim; Woonbong Hwang; Insang Song; Jae-Yoon Sim
Journal:  Micromachines (Basel)       Date:  2018-11-15       Impact factor: 2.891

9.  A Portable Triboelectric Nanogenerator for Real-Time Respiration Monitoring.

Authors:  Zhicheng Zhang; Jiwei Zhang; He Zhang; Huagang Wang; Zhiwei Hu; Weipeng Xuan; Shurong Dong; Jikui Luo
Journal:  Nanoscale Res Lett       Date:  2019-11-28       Impact factor: 4.703

Review 10.  Recent Progress in Hybridized Nanogenerators for Energy Scavenging.

Authors:  Tongtong Zhang; Tao Yang; Mei Zhang; Chris R Bowen; Ya Yang
Journal:  iScience       Date:  2020-10-16
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