scholarly journals Nanostructure Engineering via Intramolecular Construction of Carbon Nitride as Efficient Photocatalyst for CO2 Reduction

Nanomaterials ◽  
2021 ◽  
Vol 11 (12) ◽  
pp. 3245
Author(s):  
Muhammad Sohail ◽  
Tariq Altalhi ◽  
Abdullah G. Al-Sehemi ◽  
Taha Abdel Mohaymen Taha ◽  
Karam S. El-Nasser ◽  
...  

Light-driven heterogeneous photocatalysis has gained great significance for generating solar fuel; the challenging charge separation process and sluggish surface catalytic reactions significantly restrict the progress of solar energy conversion using a semiconductor photocatalyst. Herein, we propose a novel and feasible strategy to incorporate dihydroxy benzene (DHB) as a conjugated monomer within the framework of urea containing CN (CNU-DHBx) to tune the electronic conductivity and charge separation due to the aromaticity of the benzene ring, which acts as an electron-donating species. Systematic characterizations such as SPV, PL, XPS, DRS, and TRPL demonstrated that the incorporation of the DHB monomer greatly enhanced the photocatalytic CO2 reduction of CN due to the enhanced charge separation and modulation of the ionic mobility. The significantly enhanced photocatalytic activity of CNU–DHB15.0 in comparison with parental CN was 85 µmol/h for CO and 19.92 µmol/h of the H2 source. It can be attributed to the electron–hole pair separation and enhance the optical adsorption due to the presence of DHB. Furthermore, this remarkable modification affected the chemical composition, bandgap, and surface area, encouraging the controlled detachment of light-produced photons and making it the ideal choice for CO2 photoreduction. Our research findings potentially offer a solution for tuning complex charge separation and catalytic reactions in photocatalysis that could practically lead to the generation of artificial photocatalysts for efficient solar energy into chemical energy conversion.

2017 ◽  
Vol 198 ◽  
pp. 463-472 ◽  
Author(s):  
Rengui Li ◽  
Yue Zhao ◽  
Can Li

The separation of photogenerated charge carries is a challenging issue in artificial photocatalyst systems for solar energy conversion. It has been reported that spatial charge separation can take place between different facets of semiconductor-based crystals with regular morphology and facets, which could be used to rationally deposit cocatalysts on the right facets. However, the spatial separation of photogenerated electrons and holes is still a big challenge for a particulate photocatalyst without regular morphology and specific facets. In this work, we demonstrated that photogenerated electrons and holes can be regularly separated on ferroelectric PbTiO3 photocatalyst even without regular morphology and facets. The reduction cocatalyst and oxidation cocatalyst could be selectively formed on different sites via an in situ photochemical deposition method. It is found that the photoactivity and hydrogen production for PbTiO3 with spatially separated dual-cocatalysts is remarkably enhanced to more than 100 times greater compared to native PbTiO3, which is much higher than that the case of dual-cocatalysts with a random distribution. The intrinsic electric fields and spontaneous electric polarization in the bulk of PbTiO3 are proposed to play important roles in the spatial distribution of active sites on irregular PbTiO3 particles. Our work emphasizes the essential roles of two important factors, efficient charge separation strategy and the location of dual-cocatalysts on the right sites, to construct integrated artificial photocatalyst systems for solar energy conversion.


Nanoscale ◽  
2014 ◽  
Vol 6 (8) ◽  
pp. 4117-4124 ◽  
Author(s):  
P. Tongying ◽  
F. Vietmeyer ◽  
D. Aleksiuk ◽  
G. J. Ferraudi ◽  
G. Krylova ◽  
...  

Charge separation and charge transfer across interfaces are key aspects in the design of efficient photocatalysts for solar energy conversion.


2016 ◽  
Vol 4 (47) ◽  
pp. 18570-18577 ◽  
Author(s):  
Shenyuan Bao ◽  
Zhiqiang Wang ◽  
Xueqing Gong ◽  
Cuiyun Zeng ◽  
Qiangfang Wu ◽  
...  

The solar energy conversion efficiency of semiconductor materials is closely related to the separation rate of photogenerated charge carriers.


2020 ◽  
Vol 49 (14) ◽  
pp. 4230-4243
Author(s):  
James D. Shipp ◽  
Heather Carson ◽  
Steven J. P. Spall ◽  
Simon C. Parker ◽  
Dimitri Chekulaev ◽  
...  

M(NN)(CO)3X (M = Re, Mn) complexes with a bulky diimine ligand catalyse electrochemical reduction of CO2 with high TON. A noble-metal free system of the Mn-complex photosensitised by a Zn-porphyrin photocatalytically reduces CO2 under visible light.


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