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Fine-Tuning Pyridinic Nitrogen in Nitrogen-Doped Porous Carbon Nanostructures for Boosted Peroxidase-Like Activity and Sensitive Biosensing

机译:氮掺杂多孔碳纳米结构的微调吡啶氮用于增强过氧化物酶样活性和敏感的生物传感

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摘要

Carbon materials have been widely used as nanozymes in bioapplications, attributing to their intrinsic enzyme-like activities. Nitrogen (N)-doping has been explored as a promising way to improve the activity of carbon material-based nanozymes (CMNs). However, hindered by the intricate N dopants, the real active site of N-doped CMNs (N-CMNs) has been rarely investigated, which subsequently retards the further progress of high-performance N-CMNs. Here, a series of porous N-CMNs with well-controlled N dopants were synthesized, of which the intrinsic peroxidase (POD)like activity has a positive correlation with the pyridinic N content. Density functional theory calculations also reveal that pyridinic N boosts the intrinsic POD-like activity of N-CMNs. Pyridinic-N dopant can effectively promote the first H2O desorption process in comparison with the graphitic and pyrrolic N, which is the key endothermic reaction during the catalytic process. Then, utilizing the optimized nanozymes with high pyridinic N content (NP-CMNs) and superior POD-like activity, a facile total antioxidant capacity (TAC) assay was developed, holding great promise in the quality assessment of medicine tablets and antioxidant food for healthcare and healthy diet.
机译:碳材料已被广泛用作生物缺陷中的纳佐,归因于其内在酶样活性。氮气(n) - 掺杂已被探索为改善基于碳材料的纳米酶(CMNS)的活性的有希望的方法。然而,受到复杂的N掺杂剂的阻碍,很少研究了N掺杂CMNS(N-CMN)的真实活性位点,随后延迟了高性能N-CMN的进一步进展。这里,合成了一系列具有良好控制的N掺杂剂的多孔N-CMN,其中固有过氧化物酶(POD)类似活性与吡啶N含量的正相关。密度函数理论计算还揭示吡啶N促进了N-CMN的内在荚类似的活性。与石墨和吡咯n相比,吡啶-N掺杂剂可以有效地促进第一H2O解吸过程,这是催化过程中的关键吸热反应。然后,利用具有高吡啶N含量(NP-CMNS)和优异的荚类似的植入物相同的优化纳释,开发了舒适的总抗氧化能力(TAC)测定,在医药片和医疗保健食品的质量评估中持有巨大的希望和健康的饮食。

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