2023
DOI: 10.1016/j.apsusc.2022.156141
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Tailoring of bimetallic organic framework-polymeric film composites: Real-time fouling-free electrocatalytic application of hydrogen sulfide releasing from organic donors and live cells

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Cited by 8 publications
(1 citation statement)
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“…In the H 2 S sensing process, Fe 3+ in Fe 0.05 Al 0.95 -MIL after H 2 S treatment was “pulled out” and captured by S 2− , then the quenching effect was lifted and the released BDC-NH 2 ligand acted as a true fluorophore, which contributed to the fluorescence enhancement. Huang group reported a simple and robust strategy based on bimetallic Ni-Co-MOF with poly(3,4-ethylenedioxythiophene) (PEDOTs) and poly(ophenylenediamine) (PoPDA) to fabricate a real-time H 2 S sensor [ 115 ]. The PEDOTs@Ni-CoMOF/GCE H 2 S sensor showed an enhanced catalytic performance with a concentration range of 1 nM to 250 µM, low LOD (0.186 nM), and high sensitivity (7.29 μA μM −1 cm −2 ).…”
Section: Biosensing Applications Of Bimetallic Cpsmentioning
confidence: 99%
“…In the H 2 S sensing process, Fe 3+ in Fe 0.05 Al 0.95 -MIL after H 2 S treatment was “pulled out” and captured by S 2− , then the quenching effect was lifted and the released BDC-NH 2 ligand acted as a true fluorophore, which contributed to the fluorescence enhancement. Huang group reported a simple and robust strategy based on bimetallic Ni-Co-MOF with poly(3,4-ethylenedioxythiophene) (PEDOTs) and poly(ophenylenediamine) (PoPDA) to fabricate a real-time H 2 S sensor [ 115 ]. The PEDOTs@Ni-CoMOF/GCE H 2 S sensor showed an enhanced catalytic performance with a concentration range of 1 nM to 250 µM, low LOD (0.186 nM), and high sensitivity (7.29 μA μM −1 cm −2 ).…”
Section: Biosensing Applications Of Bimetallic Cpsmentioning
confidence: 99%