Mechanism of NO Photocatalytic Oxidation on g-C3N4 Was Changed by Pd-QDs Modification

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Mechanism of NO Photocatalytic Oxidation on g-C3N4 Was Changed by Pd-QDs Modification

Quantum dot (QD) sensitization can increase the light absorption and electronic transmission of photocatalysts. However, limited studies have been conducted on the photocatalytic activity of photocatalysts after modification by noble metal QDs. In this study, we developed a simple method for fabricating Pd-QD-modified g-C3N4. Results showed that the modification of Pd-QDs can improve the NO pho...

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Erratum: Li, Y., et al. Mechanism of NO Photocatalytic Oxidation on g-C3N4 Was Changed by Pd-QDs Modification. Molecules, 2016, 21, 36.

The Molecules Editorial Office wishes to make the following erratum to this paper [1]. There is a misspelling in the title of “Mechanism of NO Photocatalytic Oxidationon g-C3N4 Was Changed by Pd-QDs Modification.” The correct title should be “Mechanism of NO Photocatalytic Oxidation on g-C3N4 Was Changed by Pd-QDs Modification.” We apologize for any inconvenience caused to the readers by this m...

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Preparation of water-dispersible porous g-C3N4 with improved photocatalytic activity by chemical oxidation.

Hydrophilic treatment of bulk graphene-like carbon nitride (g-C3N4) for future applications has aroused extensive interest, due to its enhanced specific surface area and unusual electronic properties. Herein, water-dispersible g-C3N4 with a porous structure can be obtained by chemical oxidation of bulk g-C3N4 with K2Cr2O7-H2SO4. Acid oxidation results in the production of hydroxyl and carboxyl ...

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Mechanism and site requirements for NO oxidation on Pd catalysts

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ژورنال

عنوان ژورنال: Molecules

سال: 2015

ISSN: 1420-3049

DOI: 10.3390/molecules21010036