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通过将高介电常数纳米颗粒填充到海绵状聚二甲基硅氧烷(PDMS)薄膜中来提高摩擦纳米发电机的性能。

Enhancing Performance of Triboelectric Nanogenerator by Filling High Dielectric Nanoparticles into Sponge PDMS Film.

作者信息

Chen Jie, Guo Hengyu, He Xianming, Liu Guanlin, Xi Yi, Shi Haofei, Hu Chenguo

机构信息

Department of Applied Physics, Chongqing University , Chongqing 400044, People's Republic of China.

Chongqing Engineering Research Center of Graphene Film Manufacturing , Chongqing 401329, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2016 Jan 13;8(1):736-44. doi: 10.1021/acsami.5b09907. Epub 2015 Dec 24.

Abstract

Understanding of the triboelectric charge accumulation from the view of materials plays a critical role in enhancing the output performance of triboelectric nanogenerator (TENG). In this paper, we have designed a feasible approach to modify the tribo-material of TENG by filling it with high permittivity nanoparticles and forming pores. The influence of dielectricity and porosity on the output performance is discussed experimentally and theoretically, which indicates that both the surface charge density and the charge transfer quantity have a close relationship with the relative permittivity and porosity of the tribo-material. A high output performance TENG based on a composite sponge PDMS film (CS-TENG) is fabricated by optimizing both the dielectric properties and the porosity of the tribo-material. With the combination of the enhancement of permittivity and production of pores in the PDMS film, the charge density of ∼19 nC cm(-2), open-circuit voltage of 338 V, and power density of 6.47 W m(-2) are obtained at working frequency of 2.5 Hz with the optimized film consisting of 10% SrTiO3 nanoparticles (∼100 nm in size) and 15% pores in volume, which gives over 5-fold power enhancement compared with the nanogenerator based on the pure PDMS film. This work gives a better understanding of the triboelectricity produced by the TENG from the view of materials and provides a new and effective way to enhance the performance of TENG from the material itself, not just its surface modification.

摘要

从材料角度理解摩擦电荷积累对于提高摩擦纳米发电机(TENG)的输出性能起着关键作用。在本文中,我们设计了一种可行的方法,通过填充高介电常数纳米颗粒并形成孔隙来改性TENG的摩擦材料。通过实验和理论探讨了介电性和孔隙率对输出性能的影响,结果表明表面电荷密度和电荷转移量均与摩擦材料的相对介电常数和孔隙率密切相关。通过优化摩擦材料的介电性能和孔隙率,制备了一种基于复合海绵PDMS薄膜的高输出性能TENG(CS-TENG)。通过提高PDMS薄膜的介电常数和产生孔隙,在工作频率为2.5 Hz时,由10%尺寸约为100 nm的SrTiO3纳米颗粒和15%体积孔隙组成的优化薄膜获得了约19 nC cm(-2)的电荷密度、338 V的开路电压和6.47 W m(-2)的功率密度,与基于纯PDMS薄膜的纳米发电机相比,功率提高了5倍以上。这项工作从材料角度更好地理解了TENG产生的摩擦电,并从材料本身而非仅仅表面改性提供了一种提高TENG性能的新的有效方法。

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