Nanostructured Materials for Photothermal Carbon Dioxide Hydrogenation: Regulating Solar Utilization and Catalytic Performance.
basic_science · Level V
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- Record sourced from PubMed, PMID 36734978.
- Also identified by DOI 10.1021/acsnano.2c09025.
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Abstract
Converting carbon dioxide (CO<sub>2</sub>) into value-added fuels or chemicals through photothermal catalytic CO<sub>2</sub> hydrogenation is a promising approach to alleviate the energy shortage and global warming. Understanding the nanostructured material strategies in the photothermal catalytic CO<sub>2</sub> hydrogenation process is vital for designing photothermal devices and catalysts and maximizing the photothermal CO<sub>2</sub> hydrogenation performance. In this Perspective, we first describe several essential nanomaterial design concepts to enhance sunlight absorption and utilization in photothermal CO<sub>2</sub> hydrogenation. Subsequently, we review the latest progress in photothermal CO<sub>2</sub> hydrogenation into C<sub>1</sub> (e.g., CO, CH<sub>4</sub>, and CH<sub>3</sub>OH) and multicarbon hydrocarbon (C<sub>2+</sub>) products. Finally, the relevant challenges and opportunities in this exciting research realm are discussed. This perspective provides a comprehensive understanding for the light-heat synergy over nanomaterials and instruction for rational photothermal catalyst design for CO<sub>2</sub> utilization.