Kumar Rudra, Shafique Muhammad Sajid, Chapa Sergio O Martínez, Madou Marc J
School of Engineering and Sciences, Tecnologico de Monterrey, Av. Eugenio Garza Sada, NL, 2501, Sur, Monterrey 64849, Mexico.
Department of Mechanical and Aerospace Engineering, University of California Irvine, Irvine, CA 92697, USA.
Sensors (Basel). 2025 Apr 14;25(8):2473. doi: 10.3390/s25082473.
Metal-organic frameworks (MOFs) or coordination polymers have gained enormous interest in recent years due to their extraordinary properties, including their high surface area, tunable pore size, and ability to form nanocomposites with various functional materials. MOF materials possess redox-active properties that are beneficial for electrochemical sensing applications. Furthermore, the tunable pore size and high surface area improve the adsorption or immobilization of enzymes, which can enhance the sensitivity and selectivity for specific analytes. Additionally, MOF-derived metal sulfides, phosphides, and nitrides demonstrate superior electrical conductivity and structural stability, ideal for electrochemical sensing. Moreover, the functionalization of MOFs further increases sensitivity by enhancing electrode-analyte interactions. The inclusion of carbon materials within MOFs enhances their electrical conductivity and reduces background current through optimized loading, preventing agglomeration and ensuring uniform distribution. Noble metals immobilized on MOFs offer improved stability and catalytic performance, providing larger surface areas and uniform nanoparticle dispersion. This review focuses on recent developments in MOF-based biosensors specifically for glucose, dopamine, HO, ascorbic acid, and uric acid sensing.
金属有机框架材料(MOFs)或配位聚合物近年来因其非凡的性能而备受关注,这些性能包括高比表面积、可调节的孔径以及与各种功能材料形成纳米复合材料的能力。MOF材料具有氧化还原活性特性,这对电化学传感应用有益。此外,可调节的孔径和高比表面积改善了酶的吸附或固定,这可以提高对特定分析物的灵敏度和选择性。此外,MOF衍生的金属硫化物、磷化物和氮化物表现出优异的导电性和结构稳定性,是电化学传感的理想材料。此外,MOF的功能化通过增强电极与分析物之间的相互作用进一步提高了灵敏度。MOF中碳材料的加入通过优化负载提高了其导电性并降低了背景电流,防止团聚并确保均匀分布。固定在MOF上的贵金属具有更高的稳定性和催化性能,提供更大的表面积和均匀的纳米颗粒分散。本综述重点关注基于MOF的生物传感器在葡萄糖、多巴胺、过氧化氢、抗坏血酸和尿酸传感方面的最新进展。