A cascade sensing platform of glucose oxidase loaded Fe-MOF functionalized via boric acid modification and defect engineering for H2O2 and glucose sensitive detection
摘要
Of tunable porosity, high specific surface area and excellent stability, the metal–organic frameworks (MOFs) as nanozyme capably not only catalyze the bio-substrate but load the natural enzyme, so as for the cascade catalyzation achievement. However, the limited mass transfer rate and natural enzyme abscission of MOFs are still fatal for the practical application. Herein, taking P-aminobenzoic acid (PABA) as a pore-size regulator and boronic acid (BA) as the bio-affinity sorbent, BA-MIL-100(Fe)-PABA of enlarged pores and better affinity was acquired as the peroxidase to ensure the efficient mass transfer and enzyme protection. Via the thorough investigation, the maximum reaction rate of H2O2 catalyzation by BA-MIL-100(Fe)-PABA was up to 2.62 × 10−7 M·s−1 with