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Electrically conducting diamond support materials

Conductive sp -bonded diamond is being developed as an advanced catalyst support material. Boron-doped diamond thin-film electrodes possess excellent properties for this application, such as electrical conductivity, chemical inertness, extreme corrosion resistance, and dimensional stability. Compared with more commonly used sp -bonded carbon materials, diamond is highly resistant to electrochemical corrosion. For exam-... [Pg.251]

The support for the metal nano-particles turns out to be as important as the nano-particles for providing their dispersion and stability. Studies on electron transfer are particularly important for carbon-based materials because those materials, such as glassy carbon, graphite, fullerene, and diamond with different electronic and structural properties, have been proved to possess distinctly different electrochemical properties from each other (Ramesh and Sampath, 2003). Carbon supports provide high electronic conductivity, uniform catalyst dispersion, corrosion resistance, and sufficient access of gas reactants to the catalyst (Ismagilov et al, 2005). In addition to electrical conductivity and surface area, hydrophobicity, morphology, porosity, and... [Pg.145]


See other pages where Electrically conducting diamond support materials is mentioned: [Pg.185]    [Pg.447]    [Pg.510]    [Pg.585]    [Pg.716]    [Pg.48]    [Pg.504]    [Pg.285]    [Pg.202]    [Pg.382]    [Pg.744]    [Pg.282]   
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Conductivity materials

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Diamond materials

Diamond-supported

Electrically conducting diamond

Electrically conductive materials

Support material

Supporting material

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