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CO2 Footprint of Thermal versus Photothermal CO2 Catalysis

CO2 Footprint of Thermal versus Photothermal CO2 Catalysis

利用各種催化手(shǒu)段將CO2轉化為高附加值產物理論上可以有效應對由CO2過量排放帶來的環境問題以及由化石燃料大(dà)量燃燒所帶來的能(néng)源短缺問題(tí)。

2021/03/15查看更多

MOF encapsulated sub-nm Pd skin/Au nanoparticles as antenna-reactor  plasmonic catalyst for light driven CO2 hydrogenation

MOF encapsulated sub-nm Pd skin/Au nanoparticles as antenna-reactor plasmonic catalyst for light driven CO2 hydrogenation

MOF encapsulated sub-nm Pd skin/Au nanoparticles as antenna-reactor plasmonic catalyst for light driven CO2 hydrogenation

2021/03/09查看更多

Kinetics, reaction pathways, and mechanism investigation for improved  environmental remediation by 0D/3D CdTe/Bi2WO6 Z-scheme catalyst

Kinetics, reaction pathways, and mechanism investigation for improved environmental remediation by 0D/3D CdTe/Bi2WO6 Z-scheme catalyst

Kinetics, reaction pathways, and mechanism investigation for improved environmental remediation by 0D/3D CdTe/Bi2WO6 Z-scheme catalyst

2021/03/01查看更多

Ferroelectric polarization effect promoting the bulk charge separation for enhance the efficiency of photocatalytic degradation

Ferroelectric polarization effect promoting the bulk charge separation for enhance the efficiency of photocatalytic degradation

Ferroelectric polarization effect promoting the bulk charge separation for enhance the efficiency of photocatalytic degradation

2021/02/23查看更多

Nanolayered Heterostructures of N‑Doped TiO2 and N‑Doped Carbon for Hydrogen Evolution

Nanolayered Heterostructures of N‑Doped TiO2 and N‑Doped Carbon for Hydrogen Evolution

Nanolayered Heterostructures of N‑Doped TiO2 and N‑Doped Carbon for Hydrogen Evolution

2020/12/25查看更多

Orderly layer-by-layered TiO2/carbon superstructures based on MXene’s defect engineeringfor efficient hydrogen evolution

Orderly layer-by-layered TiO2/carbon superstructures based on MXene’s defect engineeringfor efficient hydrogen evolution

Orderly layer-by-layered TiO2/carbon superstructures based on MXene’s defect engineeringfor efficient hydrogen evolution

2020/12/25查看更多

A direct charger transfer from interface to surface for the highly efficient spatial separation of electrons and holes: The construction of Ti–C bonded interfaces in TiO2-C composite as a touchstone for photocatalytic water splitting

A direct charger transfer from interface to surface for the highly efficient spatial separation of electrons and holes: The construction of Ti–C bonded interfaces in TiO2-C composite as a touchstone for photocatalytic water splitting

A direct charger transfer from interface to surface for the highly efficient spatial separation of electrons and holes: The construction of Ti–C bonded interfaces in TiO2-C composite as a touchstone for photocatalytic water splitting

2020/12/25查看更多

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