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中空结构杂原子掺杂碳负载的纳米级铜/钴作为一种增强的磁活化剂用于过氧单磺酸钾降解水中的有毒物质。

Hollow-Architected Heteroatom-Doped Carbon-Supported Nanoscale Cu/Co as an Enhanced Magnetic Activator for Oxone to Degrade Toxicants in Water.

作者信息

Trang Tran Doan, Lin Jia-Yin, Chang Hou-Chien, Huy Nguyen Nhat, Ghotekar Suresh, Lin Kun-Yi Andrew, Munagapati Venkata Subbaiah, Yee Yeoh Fei, Lin Yi-Feng

机构信息

Department of Environmental Engineering & Innovation, Development Center of Sustainable Agriculture, National Chung Hsing University, Taichung 402, Taiwan.

Semiconductor and Green Technology Program, National Chung Hsing University, 250 Kuo-Kuang Road, Taichung 402, Taiwan.

出版信息

Nanomaterials (Basel). 2023 Sep 15;13(18):2565. doi: 10.3390/nano13182565.

Abstract

Even though transition metals can activate Oxone to degrade toxic contaminants, bimetallic materials possess higher catalytic activities because of synergistic effects, making them more attractive for Oxone activation. Herein, nanoscale CuCo-bearing N-doped carbon (CuCoNC) can be designed to afford a hollow structure as well as CuCo species by adopting cobaltic metal organic frameworks as a template. In contrast to Co-bearing N-doped carbon (CoNC), which lacks the Cu dopant, CuCo alloy nanoparticles (NPs) are contained by the Cu dopant within the carbonaceous matrix, giving CuCoNC more prominent electrochemical properties and larger porous structures and highly nitrogen moieties. CuCoNC, as a result, has a significantly higher capability compared to CoNC and CoO NPs, for Oxone activation to degrade a toxic contaminant, Rhodamine B (RDMB). Furthermore, CuCoNC+Oxone has a smaller activation energy for RDMB elimination and maintains its superior effectiveness for removing RDMB in various water conditions. The computational chemistry insights have revealed the RDMB degradation mechanism. This study reveals that CuCoNC is a useful activator for Oxone to eliminate RDMB.

摘要

尽管过渡金属可以激活过一硫酸氢钾复合盐(Oxone)来降解有毒污染物,但双金属材料由于协同效应具有更高的催化活性,这使得它们在过一硫酸氢钾复合盐(Oxone)活化方面更具吸引力。在此,通过采用钴基金属有机框架作为模板,可以设计出纳米级含铜钴的氮掺杂碳(CuCoNC),以提供中空结构以及铜钴物种。与缺乏铜掺杂剂的含钴氮掺杂碳(CoNC)相比,铜掺杂剂在碳质基质中包含铜钴合金纳米颗粒(NPs),使CuCoNC具有更突出的电化学性质、更大的多孔结构和高氮部分。因此,与CoNC和CoO NPs相比,CuCoNC在激活过一硫酸氢钾复合盐(Oxone)以降解有毒污染物罗丹明B(RDMB)方面具有显著更高的能力。此外,CuCoNC + 过一硫酸氢钾复合盐(Oxone)对消除罗丹明B(RDMB)具有较小的活化能,并在各种水条件下保持其去除罗丹明B(RDMB)的卓越效果。计算化学见解揭示了罗丹明B(RDMB)的降解机制。这项研究表明,CuCoNC是过一硫酸氢钾复合盐(Oxone)消除罗丹明B(RDMB)的有效活化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4016/10537558/fc3817b5e4be/nanomaterials-13-02565-g001.jpg

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