Jin Jun, Li Linlin, Zhang Lihui, Luan Zhihui, Xin Shuquan, Song Kai
School of Life Sciences, Changchun Normal University, Changchun, China.
Front Chem. 2021 Sep 24;9:748044. doi: 10.3389/fchem.2021.748044. eCollection 2021.
As functional nanomaterials with simulating enzyme-like properties, nanozymes can not only overcome the inherent limitations of natural enzymes in terms of stability and preparation cost but also possess design, versatility, maneuverability, and applicability of nanomaterials. Therefore, they can be combined with other materials to form composite nanomaterials with superior performance, which has garnered considerable attention. Carbon dots (CDs) are an ideal choice for these composite materials due to their unique physical and chemical properties, such as excellent water dispersion, stable chemical inertness, high photobleaching resistance, and superior surface engineering. With the continuous emergence of various CDs-based nanozymes, it is vital to thoroughly understand their working principle, performance evaluation, and application scope. This review comprehensively discusses the recent advantages and disadvantages of CDs-based nanozymes in biomedicine, catalysis, sensing, detection aspects. It is expected to provide valuable insights into developing novel CDs-based nanozymes.
作为具有模拟酶样性质的功能纳米材料,纳米酶不仅可以克服天然酶在稳定性和制备成本方面的固有局限性,还具有纳米材料的设计性、多功能性、可操作性和适用性。因此,它们可以与其他材料结合形成具有优异性能的复合纳米材料,这引起了相当大的关注。碳点(CDs)因其独特的物理和化学性质,如优异的水分散性、稳定的化学惰性、高光漂白抗性和卓越的表面工程性,是这些复合材料的理想选择。随着各种基于碳点的纳米酶不断涌现,深入了解它们的工作原理、性能评估和应用范围至关重要。本文综述全面讨论了基于碳点的纳米酶在生物医学、催化、传感、检测方面的近期优缺点。期望为开发新型基于碳点的纳米酶提供有价值的见解。