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A Multipurpose 1D/2D Nitrogen-Doped Nanocarbon Hybrid Evolved from an Anthracite-Based Graphene Oxide-Co-Melamine Template

作者:Qianyu Wang, Jun Cheng, Jing Ma, Shaoling Cong, Jiabei Liu, Yang Bai, Hui Zhao, Nana Yang, Xiaoqin Wang, Shanxin Xiong, Bohua Wu, Kanshe Li, Anning Zhou · 发表于:ACS Applied Electronic Materials · 年份:2024 · DOI:10.1021/acsaelm.4c00191 · 被引用次数:7 · 研究领域:Supercapacitor Materials and Fabrication、Graphene research and applications、Advancements in Battery Materials

Anthracite is a coal species with high metamorphism and carbon content, mainly composed of aromatic hydrocarbons possibly graphitized and resultantly viewed as a natural raw material for producing graphene. Here, a series of nitrogen-doped nanocarbon hybrids (NCH) fabricated from 1D carbon nanotubes (CNTs) and 2D graphene layers are successfully constructed by medium-temperature pyrolysis using anthracite-based graphene oxide-Co-melamine as a template. This work discovers that various anthracite macerals have a distinct effect on the NCH architecture and performance. When the vitrinite-rich group (V) is applied to replace anthracite, the obtained NCH-V exhibits higher capacitance performance and more excellent metal loading performance due to abundant graphenized structure, rich mesopores, and preferable nitrogen doping. Hence, NCH-V is a promising electrode material of supercapacitors and also a favorable carrier material for metal catalysts.