Piezoelectrics & Acoustooptics, Volume. 45, Issue 6, 845(2023)
[in Chinese]
[1] [1] LU Shan,GAO Lingxiao,CHEN Xin,et al.Simultaneous energy harvesting and signal sensing from a single triboelectric nanogenerator for intelligent self-powered wireless sensing systems [J].Nano Energy,2020,75:104813.
[2] [2] TIAN Jingwen,CHEN Xiangyu,WANG Zhonglin,et al.Environmental energy harvesting based on triboelectric nanogenerators[J].Nanotechnology,2020,31:242001.
[3] [3] WU Zhiyi,ZHANG Binbin,ZOU Haiyang,et al.Multifunctional sensor based on translational-rotary triboelectric nanogenerator [J].Adv Energy Mater,2019,9:1901124.
[4] [4] KIM S,GUPTA M K,LEE K Y,et al.Transparent flexible graphene triboelectric nanogenerators [J].Adv Mater,2014,26:3918-3925.
[5] [5] KAUR N,PAL K.Triboelectric nanogenerators for mechanical energy harvesting [J].Energy Technol,2018,6:958-997.
[6] [6] GUO Hengyu,YEN M H,LAI Y C,et al.All-in-one shape-adaptive self-charging power package for wearable electronics [J].ACS Nano,2016,10:10580-10588.
[7] [7] ZHU Huarui,TANG Wei,GAO Caizhen,et al.Self-powered metal surface anti-corrosion protection using energy harvested from rain drops and wind[J].Nano Energy,2015,14:193-200.
[8] [8] FENG Yange,ZHENG Youbing,MA Shuanhong,et al.High output polypropylene nanowire array triboelectric nanogenerator through surface structural control and chemical modification[J].Nano Energy,2016,19:48-57.
[9] [9] KIM W G,TCHO I W,KIM D,et al.Performance-enhanced triboelectric nanogenerator using the glass transition of polystyrene[J].Nano Energy,2016,27:306-312.
[10] [10] CHOI H J,LEE J H,JUN J,et al.High-performance triboelectric nanogenerators with artificially well-tailored interlocked interfaces[J].Nano Energy,2016,27:595-601.
[11] [11] HUANG Ji,FU Xianpeng,LIU Guoxu,et al.Micro/nano-structures-enhanced triboelectric nanogenerators by femtosecond laser direct writing[J].Nano Energy,2019,62:638-644.
[12] [12] CHUN J,KIM J W,JUNG W-s,et al.Mesoporous pores impregnated with au nanoparticles as effective dielectrics for enhancing triboelectric nanogenerator performance under harsh environment[J].Energy Environ Sci,2015,8:3006-3012.
[13] [13] PARK H W,HUYNH N D,KIM W,et al.Effects of embedded TiO2-x nanoparticles on triboelectric nanogenerator performance[J].Micromachines,2018,9:407.
[14] [14] KIM J,RYU H,LEE J H,et al.High permittivity CaCu3Ti4O12 particle-induced internal polarization amplification for high performance triboelectric nanogenerators[J].Adv Energy Mater,2020,10:1903524.
[15] [15] SHIN S H,KWON Y H,KIM Y H,et al.Triboelectric charging sequence induced by surface functionalization as a method to fabricate high performance triboelectric generators[J].ACS Nano,2015,9:4621-4627.
[16] [16] WANG Sihong,ZI Yunlong,ZHOU Yusheng,et al.Molecular surface functionalization to enhance the power output of triboelectric nanogenerators[J].J Mater Chem A,2016,4:3728.
[17] [17] LI Shuyao,FAN Yong,CHEN Huaqiang,et al.Manipulating the triboelectric surface charge density of polymers by low-energy helium ion irradiation/implantation[J].Energy Environ Sci,2020,13:896-907.
[18] [18] LI Shuyao,NIE Jinhui,SHI Yuxiang,et al.Contributions of different functional groups to contact electrification of polymers[J].Adv Mater,2020,32:2001307.
[19] [19] WANG Zhe,CHENG Li,ZHENG Youbin,et al.Enhancing the performance of triboelectric nanogenerator through prior-charge injection and its application on self-powered anticorrosion[J].Nano Energy,2014,10:37-43.
[20] [20] SHAO Jiajia,TANG Wei,JIANG Tao,et al.A multi-dielectric-layered triboelectric nanogenerator as energized by corona discharge[J].Nanoscale,2017,9:9668-9675.
[21] [21] CHEN Baodong,TANG Wei,ZHANG Chi,et al.Au nanocomposite enhanced electret film for triboelectric nanogenerator[J].Nano Res,2018,11:3096-3105.
[22] [22] BAI Yu,XU Liang,LIN Shiquan,et al.Charge pumping strategy for rotation and sliding type triboelectric nanogenerators[J].Adv Energy Mater,2020,10:2000605.
[23] [23] LIN Z H,XIE Yannan,YANG Ya,et al.Enhanced triboelectric nanogenerators and triboelectric nanosensor using chemically modified TiO2 nanomaterials[J].ACS Nano,2013,7:4554-4560.
[24] [24] JIANG Tao,CHEN Xiangyu,YANG Keda,et al.Theoretical study on rotary-sliding disk triboelectric nanogenerators in contact and non-contact modes[J].Nano Res,2016,9:1057-1070.
[25] [25] GAO Lingxiao,CHEN Xin,LU Shan,et al.Enhancing the output performance of triboelectric nanogenerator via grating-electrode enabled surface plasmon excitation [J].Adv Energy Mater,2019,9:1902725.
[26] [26] BAI Peng,ZHU Guang,ZHOU Yusheng,et al.Dipole-moment-induced effect on contact electrification for triboelectric nanogenerators[J].Nano Res,2014,7:990-997.
[27] [27] KIM H S,KIM J H,KIM J.A review of piezoelectric energy harvesting based on vibration[J].Int J Precis Eng Manuf,2011,12:1129-1141.
[28] [28] MATIKO J W,GRABHAM N J,BEEBY S P,et al.Review of the application of energy harvesting in buildings[J].Meas Sci Technol,2014,25:012002.
[29] [29] LIU Fu,HASHIM N A,LIU Y,et al.Progress in the production and modification of PVDF membranes[J].J Membr Sci,2011,375:1-27.
[30] [30] BHAVANASI V,KUSUMA D Y,LEE P S.Polarization orientation,piezoelectricity,and energy harvesting performance of ferroelectric PVDF-TrFE nanotubes synthesized by nanoconfinement[J].Adv Energy Mater,2014,4:1-8.
[31] [31] WU Liangke,YUAN Weifeng,HU Ning,et al.Improved piezoelectricity of PVDF-HFP/carbon black composite films[J].J Phys D,2014,47:135303.
Get Citation
Copy Citation Text
NanogeneratorLI Chunlong, HUANG Hui, JU Dengfeng, LIU Hongjing, LIU Kewen, GAO Lingxiao. [J]. Piezoelectrics & Acoustooptics, 2023, 45(6): 845
Received: Nov. 20, 2023
Accepted: --
Published Online: Jan. 4, 2024
The Author Email: