Molecular Triazine-Heptazine Junctions Promoting Exciton Dissociation For Overall Water Splitting With Visible Light

JOURNAL OF PHYSICAL CHEMISTRY C(2021)

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Abstract
The Frenkel exciton dissociation efficiency and the subsequent free charge carrier migration rate mainly determine the photocatalytic property of polymeric carbon nitride (PCN). Herein, by postcalcination of heptazine-based PCN in molten salts at mild temperature (673 K), we are able to design a series of crystalline PCNs with a promising triazine-heptazine hybrid structure. The molecular triazine-heptazine junctions promote the exciton splitting, while the ordered in-plane packing structure facilitates the hot charge carrier migration. Accordingly, the optimal triazine-heptazine-based PCN exhibits a dramatically enhanced activity toward one-step excitation photocatalytic overall water splitting to generate H-2 and O-2 with visible light over heptazine-based pristine PCN, by a factor of similar to 34 times.
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Water Splitting
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