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Novel tin-based metal–organic frameworks for reducing carbon dioxide to formate

Researchers from Tokyo Tech have developed a tin-based metal–organic framework (MOF) that can photocatalytically reduce carbon dioxide (CO2) into formate under visible light. The tin-based MOF exhibited a high apparent quantum yield of 9.8% and carried out extremely selective photoreduction without needing an additional photosensitizer. This could prove extremely useful,. ....

Kazuhiko Maeda , Angewandte Chemie , Tokyo Institute Of Technology , International Edition , Tokyo Tech , Tokyo Institute ,

New Metal-Organic Frameworks Reduce CO2 to Formate

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Angewandte Chemie , Kazuhiko Maeda , International Edition On , Tokyo Institute Of Technology , International Edition , Tokyo Institute ,

Tin-Based Metal-Organic Framework for CO2 Photoreduction

The constant need for carbon-rich fuels to power the economy increases atmospheric carbon dioxide (CO2). Even if efforts are being made to cut CO2 emissions, this will not be enough to reverse the harmful impacts of the gas that is already in the atmosphere. ....

Kazuhiko Maeda , Skyla Baily , Angewandte Chemie , Tokyo Institute Of Technology , International Edition , Tokyo Institute , Advanced Materials Show , Based Metal , Organic Frameworks Enabling Efficient , Selective Reduction ,

Novel tin-based metal–organic frameworks for

Researchers from Tokyo Tech have developed a tin-based metal–organic framework (MOF) that can photocatalytically reduce carbon dioxide (CO2) into formate under visible light. The tin-based MOF exhibited a high apparent quantum yield of 9.8% and carried out extremely selective photoreduction without needing an additional photosensitizer. This could prove extremely useful, as currently, most metal complexes for reducing CO2 to useful chemicals utilize expensive, rare and precious metals. ....

Kazuhiko Maeda , Angewandte Chemie , International Edition On , Angewandte Chemie International Edition , Tokyo Institute Of Technology , Method Of Research , International Edition , Tokyo Institute , Based Metal , Organic Frameworks Enabling Efficient , Selective Reduction ,