Visible Light-Driven Reforming of Lignocellulose into H 2 by Intrinsic Monolayer Carbon Nitride
作者:C.N.R. Rao, Maoliang Xie, Sicong Liu, Runlin Chen, Hang Su, Lan Zhou, Yuxia Pang, Hongming Lou, Xueqing Qiu · 发表于:ACS Applied Materials & Interfaces · 年份:2021 · DOI:10.1021/acsami.1c10842 · 被引用次数:53 · 研究领域:Advanced Photocatalysis Techniques、Copper-based nanomaterials and applications、Caching and Content Delivery
The photoreforming of lignocellulose is a novel method to produce clean and sustainable H 2 energy. However, the catalytic systems usually show low activity under ultraviolet light; thus, this reaction is very limited at present. Visible light-responsive metal-free two-dimensional graphite-phased carbon nitride (g-C 3 N 4 ) is a good candidate for photocatalytic hydrogen production, but its activity is hindered by a bulky architecture. Although reported layered g-C 3 N 4 modified with active functional groups prepared by the chemical exfoliation enhances the photocatalytic activity, it lost the intrinsic structure and thus is not conducive to understand the structure–activity relationship. Herein, we report an intrinsic monolayer g-C 3 N 4 (∼0.32 nm thickness) prepared by nitrogen-protected ball milling in water, which shows good performance of photoreforming lignocellulose to H 2 driven by visible light. The exciton binding energy of g-C 3 N 4 was estimated from the temperature-dependent photoluminescence spectra, which is a key factor for subsequent charge separation and energy transfer. It is found that monolayer g-C 3 N 4 with smaller exciton binding energy increases the free exciton concentrations and promotes the separation efficiency of charge carriers, thereby effectively improving its performance of photocatalytic reforming of lignocellulose, even the virgin lignocellulose and waste lignocellulose. This result could lead to more active catalysts to photoreform the ra...