电催化剂
电合成
阴极保护
钴
纳米纤维素
材料科学
纳米技术
化学工程
电化学
化学
电极
冶金
物理化学
纤维素
工程类
作者
Zhiyun Qian,Di Liu,Detao Liu,Yao Luo,Wenhao Ji,Yan Wang,Yonghao Chen,Rui Hu,Hui Pan,Peilin Wu,Yulong Duan,Peilin Wu,Yulong Duan
出处
期刊:Small
[Wiley]
日期:2024-07-01
卷期号:20 (36): e2403947-e2403947
被引量:1
标识
DOI:10.1002/smll.202403947
摘要
Converting hierarchical biomass structure into cutting-edge architecture of electrocatalysts can effectively relieve the extreme dependency of nonrenewable fossil-fuel-resources typically suffering from low cost-effectiveness, scarce supplies, and adverse environmental impacts. A cost-effective cobalt-coordinated nanocellulose (CNF) strategy is reported for realizing a high-performance 2e-ORR electrocatalysts through molecular engineering of hybrid ZIFs-CNF architecture. By a coordination and pyrolysis process, it generates substantial oxygen-capturing active sites within the typically oxygen-insulating cellulose, promoting O2 mass and electron transfer efficiency along the nanostructured Co3O4 anchored with CNF-based biochar. The Co-CNF electrocatalyst exhibits an exceptional H2O2 electrosynthesis efficiency of ≈510.58 mg L-1 cm-2 h-1 with an exceptional superiority over the existing biochar-, or fossil-fuel-derived electrocatalysts. The combination of the electrocatalysts with stainless steel mesh serving as a dual cathode can strongly decompose regular organic pollutants (up to 99.43% removal efficiency by 30 min), showing to be a desirable approach for clean environmental remediation with sustainability, ecological safety, and high-performance.
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