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Research Article

Triboelectric nanogenerator enhanced multilayered antibacterial nanofiber air filters for efficient removal of ultrafine particulate matter

Guang Qin Gu1,2,§Chang Bao Han1,2,§Jing Jing Tian1,2,§Tao Jiang1,2Chuan He1,2Cun Xin Lu1,2Yu Bai1,2Jin Hui Nie1,2Zhou Li1,2( )Zhong Lin Wang1,2,3 ( )
Beijing Institute of Nanoenergy and NanosystemsChinese Academy of SciencesBeijing100083China
School of Nanoscience and TechnologyUniversity of Chinese Academy of SciencesBeijing100049China
School of Materials Science and EngineeringGeorgia Institute of TechnologyAtlanta, GA30332-0245USA

§ Guang Qin Gu, Chang Bao Han, and Jing Jing Tian contributed equally to this work.

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Abstract

We developed a high-efficiency rotating triboelectric nanogenerator (R-TENG)-enhanced multilayered antibacterial polyimide (PI) nanofiber air filters for removing ultrafine particulate matter (PM) from ambient atmosphere. Compared to single-layered PI nanofiber filters, the multilayered nanofiber filter can completely remove all of the particles with diameters larger than 0.54 μm and shows enhanced removal efficiency for smaller PM particles. After connecting with aR-TENG, the removal efficiency of the filer for ultrafine particles is further enhanced. The highest removal efficiency for ultrafine particulate matter is 94.1% at the diameter of 53.3 nm and the average removal efficiency reached 89.9%. Despite an increase in the layer number, the thickness of each individual layer of the film decreased, and hence, the total pressure drop of the filter decreased instead of increasing. Moreover, the nanofiber film exhibited high antibacterial activity because of the addition of a small amount of silver nanoparticles. This technology with zero ozone release and low pressure drop is appropriate for cleaning air, haze treatment, and bacterial control.

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Nano Research
Pages 4090-4101

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Cite this article:
Gu GQ, Han CB, Tian JJ, et al. Triboelectric nanogenerator enhanced multilayered antibacterial nanofiber air filters for efficient removal of ultrafine particulate matter. Nano Research, 2018, 11(8): 4090-4101. https://doi.org/10.1007/s12274-018-1992-1

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Received: 01 December 2017
Revised: 04 January 2018
Accepted: 07 January 2018
Published: 09 February 2018
© Tsinghua University Press and Springer-Verlag GmbH Germany, part of Springer Nature 2018