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      Polyoxometalate-based nanostructures for electrocatalytic and photocatalytic CO 2 reduction

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      Polyoxometalates
      Tsinghua University Press

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          Opportunities and challenges for a sustainable energy future.

          Access to clean, affordable and reliable energy has been a cornerstone of the world's increasing prosperity and economic growth since the beginning of the industrial revolution. Our use of energy in the twenty-first century must also be sustainable. Solar and water-based energy generation, and engineering of microbes to produce biofuels are a few examples of the alternatives. This Perspective puts these opportunities into a larger context by relating them to a number of aspects in the transportation and electricity generation sectors. It also provides a snapshot of the current energy landscape and discusses several research and development opportunities and pathways that could lead to a prosperous, sustainable and secure energy future for the world.
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            Advances and challenges in understanding the electrocatalytic conversion of carbon dioxide to fuels

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              Catalysts and Reaction Pathways for the Electrochemical Reduction of Carbon Dioxide.

              The electrochemical reduction of CO2 has gained significant interest recently as it has the potential to trigger a sustainable solar-fuel-based economy. In this Perspective, we highlight several heterogeneous and molecular electrocatalysts for the reduction of CO2 and discuss the reaction pathways through which they form various products. Among those, copper is a unique catalyst as it yields hydrocarbon products, mostly methane, ethylene, and ethanol, with acceptable efficiencies. As a result, substantial effort has been invested to determine the special catalytic properties of copper and to elucidate the mechanism through which hydrocarbons are formed. These mechanistic insights, together with mechanistic insights of CO2 reduction on other metals and molecular complexes, can provide crucial guidelines for the design of future catalyst materials able to efficiently and selectively reduce CO2 to useful products.
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                Author and article information

                Journal
                Polyoxometalates
                Tsinghua University Press
                2957-9821
                September 2022
                September 2022
                : 1
                : 1
                : 9140006
                Article
                10.26599/POM.2022.9140006
                c5e9f842-f041-4f4f-9e9c-7fe3e007a3d1
                © 2022
                History

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