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Immobilizing Ultrafine PtNi Nanoparticles within Graphitic Carbon Nanosheets toward High-Performance Hydrogenation Reaction

机译:将超细PtNi纳米颗粒固定在石墨碳纳米片中,以实现高性能的加氢反应

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Immobilization of Pt-based nanoparticles on carbon support is of great significance in catalysis for their superior activity and enhanced durability. Herein, we report for the first time a feasible NaCl template-engaged approach to firmly immobilize PtNi nanoparticles into two-dimensional (2D) graphitic carbon nanosheets (denoted as PtNi@GCNs hereafter). The elaborate employment of the NaCl template regulates the formation of 2D graphitic carbon nanosheets, which tightly immobilize the in situ-generated PtNi nanoparticles. The smart integration of catalytically active PtNi nanoparticles with carbon nanosheets endows the as-prepared PtNi@GCNs with superior catalytic activity and outstanding stability toward the hydrogenation of 4-nitrophenol, making them a promising catalyst for environmental remediation. We believe that the present work can inspire the future design of carbon nanosheet-based nanohybrids with unique functionalities for diverse applications.
机译:Pt基纳米颗粒在碳载体上的固定化具有出色的活性和增强的耐久性,对催化具有重要意义。在本文中,我们首次报道了可行的NaCl模板接合方法,可将PtNi纳米颗粒牢固地固定在二维(2D)石墨碳纳米片中(以下称为PtNi @ GCNs)。精心设计的NaCl模板可调节2D石墨碳纳米片的形成,从而紧密固定原位生成的PtNi纳米粒子。催化活性的PtNi纳米颗粒与碳纳米片的智能整合使所制备的PtNi @ GCN具有优异的催化活性和对4-硝基苯酚氢化的出色稳定性,使其成为有希望的环境修复催化剂。我们相信,当前的工作可以激发具有独特功能的碳纳米片基纳米混合材料的未来设计,以用于各种应用。

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