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A comprehensive review on photo-thermal co-catalytic reduction of CO2 to value-added chemicals
Conversion of carbon dioxide (CO 2) to value-added chemicals via solar energy input
possesses great significance in industry for the synthesis of key chemical feedstocks and …
possesses great significance in industry for the synthesis of key chemical feedstocks and …
The paradox of thermal vs. non-thermal effects in plasmonic photocatalysis
The debate surrounding the roles of thermal and non-thermal pathways in plasmonic
catalysis has captured the attention of researchers and sparked vibrant discussions within …
catalysis has captured the attention of researchers and sparked vibrant discussions within …
Ruthenium single atomic sites surrounding the support pit with exceptional photocatalytic activity
Y Tao, J Guan, J Zhang, S Hu, R Ma… - Angewandte Chemie …, 2024 - Wiley Online Library
Single‐metal atomic sites and vacancies can accelerate the transfer of photogenerated
electrons and enhance photocatalytic performance in photocatalysis. In this study, a series …
electrons and enhance photocatalytic performance in photocatalysis. In this study, a series …
Enhanced photocatalytic CO2 reduction by integrating an iron based metal-organic framework and a photosensitizer
N Liu, K Tang, D Wang, F Fei, H Cui, F Li, J Lei… - Separation and …, 2024 - Elsevier
The conversion of CO 2 into fuels via photoreduction is a promising method to reduce
environmental pollution and alleviate the energy crisis. Herein, we report iron-based metal …
environmental pollution and alleviate the energy crisis. Herein, we report iron-based metal …
A nonmetallic plasmonic catalyst for photothermal CO2 flow conversion with high activity, selectivity and durability
The meticulous design of active sites and light absorbers holds the key to the development
of high-performance photothermal catalysts for CO2 hydrogenation. Here, we report a …
of high-performance photothermal catalysts for CO2 hydrogenation. Here, we report a …
Copper Nanoparticles Anchored on the Metal–Organic Framework as Recyclable Catalyst for CO2 Fixation to High-Value Compounds
The capture and utilization of carbon dioxide (CO2) as a C1 source for valuable compounds
and fuel production are essential in mitigating the escalating atmospheric carbon dioxide. In …
and fuel production are essential in mitigating the escalating atmospheric carbon dioxide. In …
Advances in the design of plasmonic photocatalysts for enhanced photocatalytic CO2 reduction
CO 2 reduction into high chemical value products via photocatalysts is one of the promising
approaches to cope with the growing energy challenges and environmental problems …
approaches to cope with the growing energy challenges and environmental problems …
Pt-doped Ru nanoparticles loaded on 'black gold'plasmonic nanoreactors as air stable reduction catalysts
This study introduces a plasmonic reduction catalyst, stable only in the presence of air,
achieved by integrating Pt-doped Ru nanoparticles on black gold. This innovative black …
achieved by integrating Pt-doped Ru nanoparticles on black gold. This innovative black …
Pyrene-Based Nanoporous Covalent Organic Framework for Carboxylation of C–H Bonds with CO2 and Value-Added 2-Oxazolidinones Synthesis under Ambient …
The selective carbon capture and utilization (CCU) as a one-carbon (C1) feedstock offers
dual advantages for mitigating the rising atmospheric CO2 content and producing fine …
dual advantages for mitigating the rising atmospheric CO2 content and producing fine …
Engineering excitation-independent turn-on fluorescent probe for mercury: Functionalized dendritic silica doped with red-emissive carbon dots towards simultaneous …
The simultaneous detection and remediation of highly toxic mercury-ion are urgently needed
for environmental benefits. However, most of the fluorescence probes for mercury-ion exhibit …
for environmental benefits. However, most of the fluorescence probes for mercury-ion exhibit …