2020
DOI: 10.1016/j.electacta.2020.135924
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Prussian Blue modified boron-doped diamond interfaces for advanced H2O2 electrochemical sensors

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Cited by 57 publications
(23 citation statements)
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“…The first communications concerning electrochemical reduction of H 2 O 2 on PB-modified glassy carbon electrode were done by Itaya and colleagues [164,165]. Karyakin and colleagues published many reports over the last 25 years on the use of PB as an artificial PO in amperometric biosensors [13,150,162,[176][177][178][179][180][181]. In 2000, this group named PB an "artificial PO" [177].…”
Section: Nanozymes As Peroxidase Mimeticsmentioning
confidence: 99%
“…The first communications concerning electrochemical reduction of H 2 O 2 on PB-modified glassy carbon electrode were done by Itaya and colleagues [164,165]. Karyakin and colleagues published many reports over the last 25 years on the use of PB as an artificial PO in amperometric biosensors [13,150,162,[176][177][178][179][180][181]. In 2000, this group named PB an "artificial PO" [177].…”
Section: Nanozymes As Peroxidase Mimeticsmentioning
confidence: 99%
“…x/4, and represents a cyanometallate vacancy needed to ensure crystal structure, the Fe 2+ and Fe 3+ ions are linked through cyus three-dimensional face-centered cubic (fcc) crystal structure pound was the first in the large series of widely developed on polymers, called Prussian Blue Analogous (PBAs), and M′ are transition metal ions). Due to their exciting magproperties, mechanical robustness, good hydrothermal stabilst properties, PB and PBAs have widely been developed for ding electrochemical sensing [3,4], energy storage [5][6][7], gas 0], biosensor construction, and others [11][12][13]. , PB and its analogues have been the subject of renewed interment of these materials at the nano-scale.…”
Section: Introductionmentioning
confidence: 99%
“…The formation of unusual Prussian blue nanopyramids is distrate, by using experimental techniques and theoretical modeling, that on the gold surface exhibit strong photothermal properties, permitting e up to 90 °C with a conversion of the laser power of almost 50% for anostructures; surface growth; atomic force microscopy; gold surface; s ridged coordination polymer well known under the name Prusered in 1706 by J. C. Dippel and J. J. von Diesbach as a deep blue ructure and fascinating chemical and physical properties have the 300 years after its invention, but it remains an exciting object PB has the chemical formula A1-xFe III [Fe II (CN)6]1 − x/4 x/4, n and represents a cyanometallate vacancy needed to ensure ts crystal structure, the Fe 2+ and Fe 3+ ions are linked through cyous three-dimensional face-centered cubic (fcc) crystal structure mpound was the first in the large series of widely developed tion polymers, called Prussian Blue Analogous (PBAs), M and M′ are transition metal ions). Due to their exciting magic properties, mechanical robustness, good hydrothermal stabiluest properties, PB and PBAs have widely been developed for luding electrochemical sensing[3,4], energy storage[5][6][7], gas -10], biosensor construction, and others[11][12][13]. es, PB and its analogues have been the subject of renewed interlopment of these materials at the nano-scale.…”
mentioning
confidence: 99%
“…Various nanomaterials including binary transition metal oxides [21], metal oxides [22], electroactive polymer film [23], metal coordination complex [24], protein [25], metal nanomaterials [26] have been reported for sensing H 2 O 2 . Prussian blue (PB), which is a porous metal coordination complex [27], is considered as an "artificial peroxidase" owing to its high electrocatalytic activity for H 2 O 2 [28][29][30]. PB with nanostructures is an ideal material for construct-ing H 2 O 2 sensor.…”
Section: Introductionmentioning
confidence: 99%