Journal
MOLECULAR CATALYSIS
Volume 518, Issue -, Pages -Publisher
ELSEVIER
DOI: 10.1016/j.mcat.2021.112058
Keywords
H-2 generation; Covalent organic polymers (COPs); Bimetallic Au-Pd nanoalloy; Formic acid
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Funding
- Isfahan University of Technology (IUT)
- Iran University of Science and Technology (IUST)
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Highly reactive nanocomposites composed of two-dimensional triazine-based covalent organic polymers (COPs), Pd, and Au nanocomponents were reported. Photocatalytic hydrogen production was achieved under visible light illumination, and it exhibited high catalytic performance.
Photocatalytic H-2 generation has been considered as an effective method for H-2 generation, in which the cocatalysts play a critical role. Here, we report highly reactive nanocomposites composed of two-dimensional triazine-based covalent organic Polymers (COPs), Pd and Au nanocomponents which is designed to benefit from the alloying and visible light illumination effects as well as LSPR effect. Photocatalytic hydrogen production was achieved under low-cost visible light-driven. The COP/Pd-Au exhibited higher photocatalytic outstanding turnover frequency of 260.5 h(-1), which was 1.47 times of that under no light (177.3 h(-1)). Additionally, it exhibits much advanced catalytic performance, which is 2.83-fold that of COP/Pd (91.98 h(-1)) and 434.17-fold that of COP/Au (0.60 h(-1)), under the similar reaction conditions. The great photocatalytic activity for COP/PdAu was also ascribed to the strong interface between Pd-Au NPs and COPs, and the preparation of single hollow construction of Pd-Au alloy with porous nature that presented active sites for hydrogen production.
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