Metal-free catalysis has demonstrated competitive performance in energy conversion and chemical synthesis, yet scenarios in environmental catalysis are scant. The application of carbocatalysis for preventing secondary contamination by heavy/noble metals is envisaged as benign remediation. In this paper, we report a facile alteration of the surface chemistry of nanodiamond, a biocompatible nanocarbon, for application to environmental catalysis. The modulation is able to improve the redox capability of potassium ferricyanide (III) and to enhance the performance of the nanodiamond for activating peroxymonosulfate (PMS) to produce sulfate and hydroxyl radicals for catalytic oxidation. Cyclic voltammetry analysis, electron paramagnetic resonance...
This research presents novel nanocarbon materials as green and metal-free carbocatalysts for advance...
A variety of dimensional-structured nanocarbons were applied for the first time as metal-free cataly...
To investigate the impact of carbon phase conversion on the catalytic activity of nanodiamonds, in t...
Production of radicals by metal-free catalysis is expected to offer a promising oxidative reaction f...
Nanocarbons in molecular configurations of sp2/sp3 present versatile structural and electronic prope...
© 2017 Elsevier B.V. Nanocarbons in molecular configurations of sp 2 /sp 3 present versatile structu...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Nanodiamonds exhibit great potential as green c...
Nanodiamonds exhibit great potential as green catalysts for remediation of organic contaminants. How...
Diamond nanocrystals in robust sp³ hybridization are appealing carbonaceous materials in the materia...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Changes in surface carbon hybridization through high-temperature annealing (> 1000 degrees C) of ...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Metal-free activation of superoxides provides an efficient and environmentally benign strategy for h...
This study introduces graphited nanodiamond (G-ND) as an environmentally friendly, easy-to-regenerat...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
This research presents novel nanocarbon materials as green and metal-free carbocatalysts for advance...
A variety of dimensional-structured nanocarbons were applied for the first time as metal-free cataly...
To investigate the impact of carbon phase conversion on the catalytic activity of nanodiamonds, in t...
Production of radicals by metal-free catalysis is expected to offer a promising oxidative reaction f...
Nanocarbons in molecular configurations of sp2/sp3 present versatile structural and electronic prope...
© 2017 Elsevier B.V. Nanocarbons in molecular configurations of sp 2 /sp 3 present versatile structu...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Nanodiamonds exhibit great potential as green c...
Nanodiamonds exhibit great potential as green catalysts for remediation of organic contaminants. How...
Diamond nanocrystals in robust sp³ hybridization are appealing carbonaceous materials in the materia...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Changes in surface carbon hybridization through high-temperature annealing (> 1000 degrees C) of ...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Metal-free activation of superoxides provides an efficient and environmentally benign strategy for h...
This study introduces graphited nanodiamond (G-ND) as an environmentally friendly, easy-to-regenerat...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
This research presents novel nanocarbon materials as green and metal-free carbocatalysts for advance...
A variety of dimensional-structured nanocarbons were applied for the first time as metal-free cataly...
To investigate the impact of carbon phase conversion on the catalytic activity of nanodiamonds, in t...