碳纳米管
催化作用
试剂
过氧化氢
选择性
掺杂剂
钴
化学工程
材料科学
化学
纳米技术
光化学
无机化学
兴奋剂
有机化学
光电子学
工程类
作者
Lijun Yang,Ga Sun,Hailiang Fu,Lei Zhang
标识
DOI:10.1016/j.cej.2023.145052
摘要
Single-atom catalysts (SACs) have been at the leading edge of catalytic research, but are still challenging to choose appropriate substrates and single-atom configurations with desirable activity and selectivity. Herein, we propose a nanotube reactor strategy with Co-SACs confined into B,N co-doped defective carbon nanotubes (Co-B,N-CNTs) via a spatial isolation and dopant anchoring strategy. The Co-B,N-CNTs exhibited excellent activity and selectivity for H2O2 production via a two-electron oxygen reduction reaction (ORR) pathway with a high yield of 1508 mmol L−1 gcat−1 in HClO4. The excellent electrocatalytic performance of Co-B,N-CNTs was mainly due to the uniformly dispersed Co-SACs with defect-rich active sites, appropriate regulated electronic structure with different electronegative atoms’ modification and favorable 3D hollow nanotube structure. Moreover, the on-situ H2O2 generation remarkably accelerated various organic pollutants degradation and Cr (IV) detoxification via a reagent-free double-cathode electro-Fenton process. This work sheds light on the design of multi-functional catalysts for the sustainable production of valuable chemicals and the innovation of new-generation wastewater treatment technology.
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