• High Power Laser and Particle Beams
  • Vol. 33, Issue 6, 065017 (2021)
Yue Zhuang, Feng Liu, Haijing Chu, and Zhi Fang
Author Affiliations
  • College of Electrical Engineering and Control Science, Nanjing Tech University, Nanjing 230026, China
  • show less
    DOI: 10.11884/HPLPB202133.210021 Cite this Article
    Yue Zhuang, Feng Liu, Haijing Chu, Zhi Fang. Comparison study of PP hydrophilic surface modification by Ar/H2O dielectric barrier discharge excited by AC and nanosecond pulse voltage[J]. High Power Laser and Particle Beams, 2021, 33(6): 065017 Copy Citation Text show less
    References

    [1] Zille A, Oliveira F R, Souto A P. Plasma treatment in textile industry[J]. Plasma Processes and Polymers, 12, 98-131(2015).

    [2] Himma N F, Anisah S, Prasetya N, et al. Advances in preparation, modification, and application of polypropylene membrane[J]. Journal of Polymer Engineering, 36, 329-362(2016).

    [8] Wardani A K, Ariono D, Subagjo, et al. Hydrophilic modification of polypropylene ultrafiltration membrane by air-assisted polydopamine coating[J]. Polymers for Advanced Technologies, 30, 1148-1155(2019).

    [13] Van Deynse A, De Geyter N, Leys C, et al. Influence of water vapor addition on the surface modification of polyethylene in an argon dielectric barrier discharge[J]. Plasma Processes and Polymers, 11, 117-125(2014).

    [14] Collette S, Dufour T, Reniers F. Reactivity of water vapor in an atmospheric argon flowing post-discharge plasma torch[J]. Plasma Sources Science and Technology, 25, 025014(2016).

    [15] Liu K, Lei J, Zheng Z, et al. The hydrophilicity improvement of polytetrafluoroethylene by Ar plasma jet: the relationship of hydrophilicity, ambient humidity and plasma parameters[J]. Applied Surface Science, 458, 183-190(2018).

    [16] Kehrer M, Duchoslav J, Hinterreiter A, et al. Surface functionalization of polypropylene using a cold atmospheric pressure plasma jet with gas water mixtures[J]. Surface and Coatings Technology, 384, 125170(2020).

    [21] Shao Tao, Zhang Cheng, Long Kaihua, et al. Surface modification of polyimide films using unipolar nanosecond-pulse DBD in atmospheric air[J]. Applied Surface Science, 256, 3888-3894(2010).

    [22] Liu Yunfei, Su Chunqiang, Ren Xiang, et al. Experimental study on surface modification of PET films under bipolar nanosecond-pulse dielectric barrier discharge in atmospheric air[J]. Applied surface science, 313, 53-59(2014).

    [23] Yang Dezheng, Wang Wenchun, Zhang Shuai, et al. Atmospheric air homogenous DBD plasma excited by bipolar nanosecond pulse used for improving the hydrophilic property of polypropylene[J]. EPL (Europhysics Letters), 102, 65001(2013).

    [24] Yuan Hao, Wang Wenchun, Yang Dezheng, et al. Atmospheric air dielectric barrier discharge excited by nanosecond pulse and AC used for improving the hydrophilicity of aramid fibers[J]. Plasma Science and Technology, 19, 125401(2017).

    [25] Yuan Hao, Wang Wenchun, Yang Dezheng, et al. Hydrophilicity modification of aramid fiber using a linear shape plasma excited by nanosecond pulse[J]. Surface and Coatings Technology, 344, 614-620(2018).

    [27] Dilecce G, De Benedictis S. Laser diagnostics of high-pressure discharges: laser induced fluorescence detection of OH in He/Ar–H2O dielectric barrier discharges[J]. Plasma Physics and Controlled Fusion, 53, 124006(2011).

    [28] Mansuroglu D, Uzun-Kaymak I U. Argon and nitrogen plasma modified polypropylene: surface characterization along with the optical emission results[J]. Surface and Coatings Technology, 358, 551-559(2019).

    Yue Zhuang, Feng Liu, Haijing Chu, Zhi Fang. Comparison study of PP hydrophilic surface modification by Ar/H2O dielectric barrier discharge excited by AC and nanosecond pulse voltage[J]. High Power Laser and Particle Beams, 2021, 33(6): 065017
    Download Citation