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Construction of MAPbBr3/La2Ti2O7 organic-inorganic dual perovskite heterojunction for photocatalytic CO2 reduction
Construction of MAPbBr3/La2Ti2O7 organic–inorganic dual perovskite heterojunction for photocatalytic CO2 reduction Considering the wide band gap of La2Ti2O7, and the limited separation efficiency of charge carriers in MAPbBr3, we designed and easily fabricated the MAPbBr3/La2Ti2O7 dual perovskite heterojunction with similar crystal structure for efficiently photocatalytic CO2 reduction.
Toward enhanced photocatalytic activity of NiO-porous NiO homojunction derived from the in-situ templated metal-organic framework
Toward enhanced photocatalytic activity of NiO-porous NiO homojunction derived from the in-situ templated metal-organic framework The design and fabrication of homojunction with similar lattice constant, modulated configuration and morphology was essential for the efficient separation and transport of the photo-generated charge carriers. Herein, the transition metal oxide (NiO) was selected as an example for the fabrication of NiO-porous NiO homojunction.
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