N掺杂碳基单原子催化剂在电化学生物传感领域的研究与应用

Research and application of single-atom catalysis in electrochemical biosensors based on N doped carbon-based materials

  • 摘要: 基于单原子催化剂(SACs)最大的原子利用率、可调控的电子结构、高活性位点、特殊的催化反应性能以及高度稳定性等特性, 研究者以N掺杂碳基材料为载体, 配体单元材料为模型, 将单原子催化的研究拓展到电化学生物传感材料改性领域, 研究了载体、金属配位单元对SACs催化活性的影响, 总结了N掺杂碳基SACs在电化学生物传感领域中的最新研究进展, 提出并探讨了该多相催化剂在电化学生物传感领域的应用前景以及面临的挑战。

     

    Abstract: Based on single-atom catalysis the greatest atom utilization, the regulation of electronic structure, regulation of highly active sites, special performance of catalytic reaction, and the characteristics of high stability, which will be expanded in the field of electrochemical biosensor materials modification. Researchers further explore single-atom catalyst application in the field of electrochemical biosensing. In this paper, N doped carbon-based materials as a carrier, metal coordination unit as a model, researchers studied the carrier metal coordination unit of single atomic catalytic activity of the catalyst, the influence of metal coordination-N doped carbon-based materials and the latest research progress in the field of electrochemical biosensing applications, summarized the heterogeneous catalyst application prospect and challenges in the field of electrochemical biosensing applications.

     

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