2023
DOI: 10.1002/adfm.202303313
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3D Neighborhood Nanostructure Reinforces Biosensing Membrane

Siqing Song,
Hao Zhang,
Yinhua Wan
et al.

Abstract: The electron signals in the cell can be rapidly and accurately transmitted by the spatially confined and adjacently distributed enzyme pairs anchored in the cytomembrane. As inspiration, by leverage of tannic acid‐3‐aminopropyltriethoxysilane‐Fe (TA‐APTES‐Fe) ternary coating, for the first time, a mesoporous biosensing membrane is developed by orderly assembly and targeted confinement of Prussian blue (PB) and glucose oxidase (GOx) with neighborhood nanostructure in the 3D mesoporous carbon nanotubes (CNTs) me… Show more

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Cited by 5 publications
(1 citation statement)
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“…There are two main strategies: (1) synthesizing electrocatalysts to oxidatively reduce H 2 O 2 to reduce the operating potential to the optimal interference-free range. Most of these electrocatalysts are noble metal nanomaterials such as Au 54,59–61 and Pt, 62–64 and transition metal compounds such as PB, 5,65–68 Ti 3 C 2 , 69–73 CeO 2 , 74,75 and MnO 2 . 42,43,76 Among many nanomaterials, PB exhibits excellent electrocatalytic reduction of H 2 O 2 at low potentials (generally between −0.2 and 0.075 V).…”
Section: The Principle Of Bioelectrochemical Glu Sensingmentioning
confidence: 99%
“…There are two main strategies: (1) synthesizing electrocatalysts to oxidatively reduce H 2 O 2 to reduce the operating potential to the optimal interference-free range. Most of these electrocatalysts are noble metal nanomaterials such as Au 54,59–61 and Pt, 62–64 and transition metal compounds such as PB, 5,65–68 Ti 3 C 2 , 69–73 CeO 2 , 74,75 and MnO 2 . 42,43,76 Among many nanomaterials, PB exhibits excellent electrocatalytic reduction of H 2 O 2 at low potentials (generally between −0.2 and 0.075 V).…”
Section: The Principle Of Bioelectrochemical Glu Sensingmentioning
confidence: 99%