• Journal of Semiconductors
  • Vol. 40, Issue 11, 112601 (2019)
Haochuan Wan1, Yunqi Cao2, Li-Wei Lo1、3, Zhihao Xu1, Nelson Sepúlveda2, and Chuan Wang1、3
Author Affiliations
  • 1Electrical and Systems Engineering, Washington University in St. Louis, St Louis, Missouri 63130, United States
  • 2Electrical and Computer Engineering, Michigan State University, East Lansing, Michigan 48824, United States
  • 3Institute of Materials Science and Engineering, Washington University in St. Louis, St. Louis, Missouri 63130, United States
  • show less
    DOI: 10.1088/1674-4926/40/11/112601 Cite this Article
    Haochuan Wan, Yunqi Cao, Li-Wei Lo, Zhihao Xu, Nelson Sepúlveda, Chuan Wang. Screen-printed soft triboelectric nanogenerator with porous PDMS and stretchable PEDOT:PSS electrode[J]. Journal of Semiconductors, 2019, 40(11): 112601 Copy Citation Text show less
    References

    [1] C Wang, D Hwang, Z Yu et al. User-interactive electronic skin for instantaneous pressure visualization. Nat Mater, 12, 899(2013).

    [2] S G R Bade, X Shan, P T Hoang et al. Stretchable light-emitting diodes with organometal-halide-perovskite-polymer composite emitters. Adv Mater, 29, 1607053(2017).

    [3] X Cao, C Lau, Y Liu et al. Fully screen-printed, large-area, and flexible active-matrix electrochromic displays using carbon nanotube thin-film transistors. ACS Nano, 10, 9816(2016).

    [4] W Gao, S Emaminejad, H Y Y Nyein et al. Fully integrated wearable sensor arrays for multiplexed in situ perspiration analysis. Nature, 529, 509(2016).

    [5] L Cai, S Zhang, Y Zhang et al. Direct printing for additive patterning of silver nanowires for stretchable sensor and display applications. Adv Mater Technol, 3, 1700232(2018).

    [6] H Shi, M Al-Rubaiai, C M Holbrook et al. Screen-printed soft capacitive sensors for spatial mapping of both positive and negative pressures. Adv Funct Mater, 29, 1809116(2019).

    [7] C M Boutry, L Beker, Y Kaizawa et al. Biodegradable and flexible arterial-pulse sensor for the wireless monitoring of blood flow. Nat Biomed Eng, 3, 47(2019).

    [8] Y Kim, A Chortos, W Xu et al. A bioinspired flexible organic artificial afferent nerve. Science, 360, 998(2018).

    [9] R Yang, Y Qin, L Dai et al. Power generation with laterally packaged piezoelectric fine wires. Nat Nanotechnol, 4, 34(2009).

    [10] W Li, D Torres, T Wang et al. Flexible and biocompatible polypropylene ferroelectret nanogenerator (FENG): on the path toward wearable devices powered by human motion. Nano Energy, 30, 649(2016).

    [11] Y Cao, J Figueroa, J Pastrana et al. Flexible ferroelectret polymer for self-powering devices and energy storage systems. ACS Appl Mater Interfaces, 11, 17400(2019).

    [12] F R Fan, Z Q Tian, Z L Wang. Flexible triboelectric generator. Nano Energy, 1, 328(2012).

    [13] Y Zi, H Guo, Z Wen et al. Harvesting low-frequency (< 5 Hz) irregular mechanical energy: a possible killer application of triboelectric nanogenerator. ACS Nano, 10, 4797(2016).

    [14] F R Fan, W Tang, Z L Wang. Flexible nanogenerators for energy harvesting and self-powered electronics. Adv Mater, 28, 4283(2016).

    [15] J Chen, H Guo, X He et al. Enhancing performance of triboelectric nanogenerator by filling high dielectric nanoparticles into sponge PDMS film. ACS Appl Mater interfaces, 8, 736(2015).

    [16] Y Zhu, B Yang, J Liu et al. A flexible and biocompatible triboelectric nanogenerator with tunable internal resistance for powering wearable devices. Sci Rep, 6, 22233(2016).

    [17] S Wang, L Lin, Z L Wang. Nanoscale triboelectric-effect-enabled energy conversion for sustainably powering portable electronics. Nano Lett, 12, 6339(2012).

    [18] F R Fan, L Lin, G Zhu et al. Transparent triboelectric nanogenerators and self-powered pressure sensors based on micropatterned plastic films. Nano Lett, 12, 3109(2012).

    [19] K Y Lee, J Chun, J H Lee et al. Hydrophobic sponge structure-based triboelectric nanogenerator. Adv Mater, 26, 5037(2014).

    [20] Y Wang, C Zhu, R Pfattner et al. A highly stretchable, transparent, and conductive polymer. Sci Adv, 3, e1602076(2017).

    [21] X He, X Mu, Q Wen et al. Flexible and transparent triboelectric nanogenerator based on high performance well-ordered porous PDMS dielectric film. Nano Res, 9, 3714(2016).

    [22] X Chen, L Miao, H Guo et al. Waterproof and stretchable triboelectric nanogenerator for biomechanical energy harvesting and self-powered sensing. Appl Phys Lett, 112, 203902(2018).

    [23] C Dagdeviren, B D Yang, Y Su et al. Conformal piezoelectric energy harvesting and storage from motions of the heart, lung, and diaphragm. Proc Natl Acad Sci, 111, 1927(2014).

    Haochuan Wan, Yunqi Cao, Li-Wei Lo, Zhihao Xu, Nelson Sepúlveda, Chuan Wang. Screen-printed soft triboelectric nanogenerator with porous PDMS and stretchable PEDOT:PSS electrode[J]. Journal of Semiconductors, 2019, 40(11): 112601
    Download Citation