Boron-doped diamond (BDD) electrochemical electrode
conductivityniobium-based

Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based - image - 2
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based - image - 3
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based - image - 4
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based - image - 5
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based - image - 6
Boron-doped diamond (BDD) electrochemical electrode - Beijing Worldia Diamond Tools Co., Ltd - conductivity / niobium-based - image - 7
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Characteristics

Type
conductivity
Material
boron-doped diamond (BDD)
Other characteristics
niobium-based

Description

BDD is the abbreviation of Boron-Doped Diamond. BDD electrodes are made of diamond doped with a small amount of boron and have many excellent properties. The niobium-based BDD electrode plate has good chemical stability, high electrochemical activity, high conductivity, high mechanical strength and long service life, making it an ideal electrochemical electrode material. Product Advantages *High Chemical Stability: The diamond electrode surface has an inactive sp3 structure, which is very stable and can work stably for a long time in strong corrosive media. *Wide Electrochemical Potential Window: The diamond surface lacks the necessary sites for adsorption reaction intermediates, which is very important for the reaction. The adsorption capacity of the intermediate is weak, which is not conducive to the realization of multi-step electron transfer. The wider potential window of the doped diamond film, especially the higher oxygen evolution potential, can produce strong oxidizing substances such as hydroxyl radicals with higher efficiency. , hydroxyl free radicals have very high activity and can effectively "catalytically incinerate" organic matter;

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