Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Combined Photoredox Catalysis for Value-Added Conversion of Contaminants at Spatially Separated Dual Active Sites

View through CrossRef
As 2 indispensable counterparts in one catalysis system, the independent reduction and oxidation reactions require synergetic regulation for cooperatively promoting redox efficiency. Despite the current success in promoting the catalytic efficiency of half reduction or oxidation reactions, the lack of redox integration leads to low energy efficiency and unsatisfied catalytic performance. Here, we exploit an emerging photoredox catalysis system by combining the reactions of nitrate reduction for ammonia synthesis and formaldehyde oxidation for formic acid production, in which superior photoredox efficiency is achieved on the spatially separated dual active sites of Ba single atoms and Ti3+. High catalytic redox rates are accomplished for respective ammonia synthesis (31.99 ± 0.79 mmol gcat−1h−1) and formic acid production (54.11 ± 1.12 mmol gcat−1h−1), reaching a photoredox apparent quantum efficiency of 10.3%. Then, the critical roles of the spatially separated dual active sites are revealed, where Ba single atoms as the oxidation site using h+and Ti3+as the reduction site using e−are identified, respectively. The efficient photoredox conversion of contaminants is accomplished with environmental importance and competitive economic value. This study also represents a new opportunity to upgrade the conventional half photocatalysis into the complete paradigm for sustainable solar energy utilization.
Title: Combined Photoredox Catalysis for Value-Added Conversion of Contaminants at Spatially Separated Dual Active Sites
Description:
As 2 indispensable counterparts in one catalysis system, the independent reduction and oxidation reactions require synergetic regulation for cooperatively promoting redox efficiency.
Despite the current success in promoting the catalytic efficiency of half reduction or oxidation reactions, the lack of redox integration leads to low energy efficiency and unsatisfied catalytic performance.
Here, we exploit an emerging photoredox catalysis system by combining the reactions of nitrate reduction for ammonia synthesis and formaldehyde oxidation for formic acid production, in which superior photoredox efficiency is achieved on the spatially separated dual active sites of Ba single atoms and Ti3+.
High catalytic redox rates are accomplished for respective ammonia synthesis (31.
99 ± 0.
79 mmol gcat−1h−1) and formic acid production (54.
11 ± 1.
12 mmol gcat−1h−1), reaching a photoredox apparent quantum efficiency of 10.
3%.
Then, the critical roles of the spatially separated dual active sites are revealed, where Ba single atoms as the oxidation site using h+and Ti3+as the reduction site using e−are identified, respectively.
The efficient photoredox conversion of contaminants is accomplished with environmental importance and competitive economic value.
This study also represents a new opportunity to upgrade the conventional half photocatalysis into the complete paradigm for sustainable solar energy utilization.

Related Results

Dual Catalysis
Dual Catalysis
Dual catalysis is a powerful strategy for developing new organic reactions that used to be challenging to achieve by traditional methods. Whether through relay catalysis or synergi...
First Impact Assessment of Genotoxic Components in the Qatari Marine Environment
First Impact Assessment of Genotoxic Components in the Qatari Marine Environment
The Arabian Gulf is a semi-enclosed sea with very high evaporation and low discharge rates resulting in extreme saline and thermal conditions. Additionally the system is characteri...
Synergistic visible light photoredox catalysis
Synergistic visible light photoredox catalysis
AbstractWithin the last decade the combination of photoredox catalysis and other catalytic modes of activation has become a powerful tool for organic synthesis to enable transforma...
Synergistic Dual Amine/Transition Metal Catalysis: Recent Advances
Synergistic Dual Amine/Transition Metal Catalysis: Recent Advances
AbstractDual Catalysis has enabled a plethora of novel unconventional transformations that would have been unattainable by either catalyst alone. The enormous potential of dual cat...
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Abstract Introduction  Microwave ablation (MWA) has emerged as a minimally invasive treatment for patients with inoperable non-small cell lung cancer (NSCLC). However, whether it i...
Design and analysis of dual-curing systems
Design and analysis of dual-curing systems
Dual-curing processing is a method to prepare thermoset materials through two polymerization reactions carried out simultaneously or sequentially. In these processes, a firm under...
Catalysis in Protein Bioconjugation
Catalysis in Protein Bioconjugation
Advancement of catalytic transformations in traditional synthetic organic chemistry have made significant impacts on development of novel bioconjugation technologies. While a wide ...

Back to Top