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      Figure 5 shows Raman spectra of boron-doped diamond film deposited on the cantilever. Raman spectra present the typical boron-doped nanocrystalline diamond lines (e.g. 1148 cm −1) . Ratio of diamond line and amorphous carbon lines suggest the boron-doped thin film has more defects than undoped diamond film.

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      A systematic investigation of heavily boron-doped diamond (001) surfaces was performed by atomic force microscopy. Heavily boron-doped diamond surfaces produced by chemical vapor deposition with boron/carbon (B/C) ratios of more than 1600 ppm in the gas phase were rough, whereas an unintentionally doped diamond surface was atomically flat.

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      The expts. were performed in a cell contg. a boron-doped diamond (BDD) anode and an air-diffusion cathode to generate H2O2 at const. current. The Fe2+ ion added to the medium increased the soly. of the drug by the formation of a complex of intense orange color and also reacted with electrogenerated H2O2 to form hydroxyl radical from Fenton

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      Electrooxidation is finding its application in wastewater treatment in combination with other technologies. It is effective in degrading the refractory pollutants on the surface of a few electrodes. Titanium-based boron-doped diamond film electrodes (Ti/BDD) show high activity and give reasonable stability.

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      Fabrication and application of boron doped diamond BDD electrode in olive mill wastewater treatment in Jordan In: Journal of Water Reuse and 4th Workshop on Python for High Performance and Scientific Computing (New Orleans, 17. November 2014 17. November International Journal of Cast Metals Research 24 (2011), p. 96-101 ISSN: 1364

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      The expts. were performed in a cell contg. a boron-doped diamond (BDD) anode and an air-diffusion cathode to generate H2O2 at const. current. The Fe2+ ion added to the medium increased the soly. of the drug by the formation of a complex of intense orange color and also reacted with electrogenerated H2O2 to form hydroxyl radical from Fenton

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      Electrooxidation is finding its application in wastewater treatment in combination with other technologies. It is effective in degrading the refractory pollutants on the surface of a few electrodes. Titanium-based boron-doped diamond film electrodes (Ti/BDD) show high activity and give reasonable stability.

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      Fabrication and application of boron doped diamond BDD electrode in olive mill wastewater treatment in Jordan In: Journal of Water Reuse and 4th Workshop on Python for High Performance and Scientific Computing (New Orleans, 17. November 2014 17. November International Journal of Cast Metals Research 24 (2011), p. 96-101 ISSN: 1364

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      Jul 07, 2017· In-between, the boron doped sample was more similar structurally to the intrinsic sample, although merging between bilayers resulted in an extensive silicon nanocrystalline network. Optically, it displayed different effects due to photoluminescence quenching and free carrier absorption.

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      Iron carbide without any graphite was studied under high pressure and high temperature (HPHT); diamond layers were obtained both on diamond and on cubic boron nitride seeds at 5.5 GPa and 1700–1750 K. The results showed that transition-metal carbide was the main intermediate in the course of the transformation from graphite to diamond under HPHT.

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      Dec 28, 2018· Other networked materials with hydrophobic surfaces, such as 3D boron‐doped diamond (BDD) loaded on the mesh titanium substrate, have also demonstrated ORR performance enhancement induced by wettability engineering. 160 For example, in 2014, Manthiram and co‐workers constructed a hybrid Li–air battery with a hydrophobic electrode for the

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      Jul 07, 2017· In-between, the boron doped sample was more similar structurally to the intrinsic sample, although merging between bilayers resulted in an extensive silicon nanocrystalline network. Optically, it displayed different effects due to photoluminescence quenching and free carrier absorption.

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      Iron carbide without any graphite was studied under high pressure and high temperature (HPHT); diamond layers were obtained both on diamond and on cubic boron nitride seeds at 5.5 GPa and 1700–1750 K. The results showed that transition-metal carbide was the main intermediate in the course of the transformation from graphite to diamond under HPHT.

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      Single-Ion Implantation in Diamond with a High Lateral Resolution: A Key Technology for the Fabrication of Quantum Devices

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      Dec 28, 2018· Other networked materials with hydrophobic surfaces, such as 3D boron‐doped diamond (BDD) loaded on the mesh titanium substrate, have also demonstrated ORR performance enhancement induced by wettability engineering. 160 For example, in 2014, Manthiram and co‐workers constructed a hybrid Li–air battery with a hydrophobic electrode for the

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