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Photocatalytic CO2 reduction coupled with biomass-based amines oxidation over double-shelled CdS nanocages
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DOI:10.1016/j.catcom.2024.106884.png)
Abstract
En 中文
Solar-driven CO2 reduction to CO production is often hampered by the kinetically sluggish water photooxidation and fast recombination of photocarriers. Herein, we report a photoredox system of CO2 reduction coupled with biomass-based amines oxidation. Double-shelled CdS nanocages (CdS DSNC) are synthesized by a successive etching-sulfuration strategy, which delivers impressive CO and difurfurylamine yields of 1226.4 and 5526.5 mu mol.g(-1).h(-1), respectively. Mechanism studies uncover that the double-shelled structure endows CdS DSNC with high accessibility of active sites and short transfer distance for photocarriers. Besides, furfurylamine serves as both the electron donor and the capturer of CO2, thus boosting the photoredox performance.
Keywords:
Photocatalysis
CO2 reduction
Amines oxidation
CdS
Hollow structure
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