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具有丰富电子吡咯氮的诺氟沙星衍生碳点用于铜腐蚀抑制和抗菌功能。

Norfloxacin-Derived Carbon Dots with Rich Electron Pyrrolic Nitrogen for Copper Corrosion Inhibition and Antibacterial Functions.

作者信息

Miao Caiqin, Shi Xinyue, Li Zhijian, Zhang Xiaoyong, Wang Xinzhi, Yang Depeng, Wang Qun

机构信息

School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150001, China.

School of Life Science and Technology, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Langmuir. 2025 Apr 8;41(13):8951-8964. doi: 10.1021/acs.langmuir.5c00336. Epub 2025 Mar 25.

DOI:10.1021/acs.langmuir.5c00336
PMID:40132165
Abstract

The coexisting anticorrosion and antibacterial functions are of great significance for the marine industry. Controllable surface negative charge and wettability of pyrrolic nitrogen-doped carbon dots (NCDs) derived from the single antibiotic norfloxacin precursor with a special nitrogen heterocyclic structure were successfully fabricated through the hydrothermal route. The incorporated functional groups and chemical bonds, surface charge, mechanism of pyrrole nitrogen ring formation at the molecular level, and antibacterial properties of NCDs were revealed by FTIR, XPS, zeta potential, LC-MS, and electrochemical techniques. The present corrosion efficiency (96.1%) in 3.5 wt % NaCl saline solution in the presence of air and N or UO is higher than most previously reported values. The proposed electron transfer corrosion mechanism suggests that the negative charge domains of NCDs were strengthened by the saltwater electron sink effect to repel chlorine and simultaneously a large number of electrons of NCDs were injected into copper as the electron reservoir based on energy-level matching, thereby avoiding Cu oxidization. Current works provide a guideline for exploring novel eco-friendly and highly efficient NCD corrosion inhibitor materials with antibacterial properties for safeguarding metals in seawater.

摘要

同时具备的防腐和抗菌功能对海洋工业具有重要意义。通过水热法成功制备了由具有特殊氮杂环结构的单一抗生素诺氟沙星前体衍生的吡咯氮掺杂碳点(NCDs),其具有可控的表面负电荷和润湿性。通过傅里叶变换红外光谱(FTIR)、X射线光电子能谱(XPS)、zeta电位、液相色谱-质谱联用(LC-MS)和电化学技术揭示了NCDs中所含的官能团和化学键、表面电荷、分子水平上吡咯氮环的形成机制以及抗菌性能。在空气和N或UO存在下,在3.5 wt% NaCl盐溶液中的当前腐蚀效率(96.1%)高于大多数先前报道的值。所提出的电子转移腐蚀机制表明,盐水电子 sink 效应增强了NCDs的负电荷域以排斥氯,同时基于能级匹配,大量NCDs的电子作为电子库注入铜中,从而避免了Cu的氧化。当前的工作为探索具有抗菌性能的新型环保高效NCD缓蚀剂材料以保护海水中的金属提供了指导。

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