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Surface Modification of C3N4 through Oxygen-Plasma Treatment: A Simple Way toward Excellent Hydrophilicity

机译:通过氧等离子体处理对C3N4进行表面改性:形成优异亲水性的简单方法

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摘要

We developed a universal method to prepare hydrophilic carbon nitrogen (C3N4) nanosheets. By treating C3N4 nanosheets with oxygen plasma, hydroxylamine groups (N-OH) with intense protonation could be introduced on the surface; moreover, the content of N-OH groups increased linearly with the oxygen-plasma treatment time. Thanks to the excellent hydrophilicity, uniformly dispersed C3N4 solution were prepared, which was further translated into C3N4 paper by simple vacuum filtration. Pure C3N4 paper with good stability, excellent hydrophilicity, and biocompatibility were proved to have excellent performance in tissue repair. Further research demonstrated that the oxygen-plasma treatment method can also introduce N-OH groups into other nitrogen-containing carbon materials (NCMs) such as N-doped graphene, N-doped carbon nanotube, and C2N, which offers a new perspective on the surface modification and functionalization of these carbon nanomaterials.
机译:我们开发了一种通用的方法来制备亲水性碳氮(C3N4)纳米片。通过用氧等离子体处理C3N4纳米片,可以在表面引入质子化程度很高的羟胺基(N-OH)。此外,N-OH基团的含量随着氧等离子体处理时间的增加而线性增加。由于优异的亲水性,制备了均匀分散的C3N4溶液,可通过简单的真空过滤将其进一步转化为C3N4纸。事实证明,具有良好稳定性,出色的亲水性和生物相容性的纯C3N4纸在组织修复方面具有出色的性能。进一步的研究表明,氧等离子体处理方法还可以将N-OH基引入其他含氮碳材料(NCM)中,例如N掺杂的石墨烯,N掺杂的碳纳米管和C2N,这为碳纳米管的制备提供了新的视角。这些碳纳米材料的表面改性和功能化。

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