Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High Peroxidase-like Activity and Its Application in Detection of Extracellular Vesicles

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Last updated 21 dezembro 2024
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Figure 1 from Iron metal-organic frameworks MIL-88B and NH2-MIL-88B for the loading and delivery of the gasotransmitter carbon monoxide.
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Zhong Research Group
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Materials, Free Full-Text
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Materials, Free Full-Text
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
A thorough investigation of the utilization of metal-organic framework (MOF) coated titanium dioxide in photocatalytic applications: A review - ScienceDirect
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
A sensitive fluorescence detection strategy for H2O2 and glucose by using aminated Fe–Ni bimetallic MOF as fluorescent nanozyme
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
a) Chemiluminescence emission spectrum of UPC‐2, UPC‐3, and reported
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Recent progress in strategies for preparation of metal-organic frameworks and their hybrids with different dimensions
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Bimetallic Metal–Organic Frameworks: Enhanced Peroxidase-like Activities for the Self-Activated Cascade Reaction
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Multimetallic nanoparticles decorated metal-organic framework for boosting peroxidase-like catalytic activity and its application in point-of-care testing, Journal of Nanobiotechnology
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Three kinds of chemiluminescence strategy: a) solvent system; b)
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Highly Stable Fe/Co-TPY-MIL-88(NH2) Metal–Organic Framework (MOF) in Enzymatic Cascade Reactions for Chemiluminescence-Based Detection of Extracellular Vesicles
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Chemosensors, Free Full-Text
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Zhong Research Group
Bimetallic Metal–Organic Framework Fe/Co-MIL-88(NH2) Exhibiting High  Peroxidase-like Activity and Its Application in Detection of Extracellular  Vesicles
Uncovering the optimal pyrolysis temperature of NH2-MIL-88B-derived FeOX/Fe@porous carbon composites for the ultrasensitive electrochemical detection of baicalin in natural plant samples - ScienceDirect

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