Novel Intercalation Approach in MXene Using Modified Silica Nanospheres to Enhance the Surface Charge Density for Superior Triboelectric Performance

This paper proposes a novel intercalation approach to address the challenges of surface triboelectric charge dissipation and self-restacking of MXene layers in triboelectric nanogenerators (TENGs). The proposed strategy significantly improves the performance of TENGs, as it prevents the loss of surface charges and enhances the structural stability of MXene. First, the modified silica nanospheres (MSNs) of specific dimensions are synthesized, followed by their intercalation between MXene layers. This not only resolves the restacking issue but also dramatically increases the interlayer distance and MXene's surface area. The MSNs, acting as effective charge storage sites, significantly enhance surface charge density, whereas their high dielectric permittivity generates a synergistic effect that modulates the dielectric constant via polarization. Ultimately, the proposed MSN-intercalated MXene-based TENG demonstrates outstanding output performance (output voltage of ≈461 V, output current of ≈19 µA, and maximum peak power density of ≈691.2 µW cm−2) at a 2 wt.% MSN-intercalated MXene concentration. This study paves a new pathway for the structural design of tribonegative and charge storage layers in TENGs for energy harvesting.

相关文章

  • Synergetic Modulation of Electronic Properties of Cobalt Oxide via “Tb” Single Atom for Uphill Urea and Water Electrolysis
    [Sara Ajmal, Aamir Rasheed, Wenxiang Sheng, Ghulam Dastgeer, Quynh Anh T. Nguyen, Peihong Wang, Ping Chen, Shoujie Liu, Viet Q. Bui, Manzhou Zhu, Peng Li, Dingsheng Wang]
  • Triboelectric Energy Harvesting from Highly Conjugated Fused Aromatic Ladder Structure Under Extreme Environmental Conditions
    [Qazi Muhammad Saqib, Ishfaq Ahmad, Abdul Mannan, Javeed Mahmood, Shahid Ameen, Chandrashekhar S. Patil, Muhammad Noman, Jungmin Kim]
  • Triboelectric Nanogenerator Based on Reactivated Electrode Materials Derived from Waste Alkaline Battery: Influence of Pyrolysis Temperature and Surface Morphology
    [Chandrashekhar S. Patil, Qazi Muhammad Saqib, Swapnil R. Patil, Muhammad Noman, Mahesh Y. Chougale, Rayyan Ali Shaukat, Jungmin Kim, Yongbin Ko, Tukaram D. Dongle, Jinho Bae]
  • 成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    润滑集