A dual Z-scheme heterojunction Cu-CuTCPP/Cu2O/CoAl-LDH for photocatalytic CO2 reduction to C1 and C2 products
Cheng Xia,
Rui-tang Guo,
Zhe-xu Bi
et al.
Abstract:In this research, ternary Cu-CuTCPP/Cu2O/CoAl-LDH composite with dual Z-scheme heterostructure was fabricated based on Cu2O photocatalyst and applied in photocatalytic CO2 reduction. The physicochemical properties of the prepared catalysts and...
“…53,55 Weaker satellite peaks in Cu 2p spectra are attributed to Cu 2+ ions. 56 Notably, the peak corresponding to Cu + experiences a marked reduction and a shift towards higher binding energies in CTN-0.5. This may be attributed to the covering effect of Ni species.…”
Effectively harnessing solar energy for the conversion of CO2 into valuable chemical energy presents a viable solution to address energy scarcity and climate change concerns. Nonetheless, the limited light absorption...
“…53,55 Weaker satellite peaks in Cu 2p spectra are attributed to Cu 2+ ions. 56 Notably, the peak corresponding to Cu + experiences a marked reduction and a shift towards higher binding energies in CTN-0.5. This may be attributed to the covering effect of Ni species.…”
Effectively harnessing solar energy for the conversion of CO2 into valuable chemical energy presents a viable solution to address energy scarcity and climate change concerns. Nonetheless, the limited light absorption...
“…93,94 The design and modification of 3D porous materials are significant breakthroughs owing to the widespread application of the materials for guest molecule adsorption. 95–97 Pillar-layer engineering is a straightforward and efficient way to transform the 2D structure of porphyrinic MOFs into a 3D structure. Zhou et al synthesized mixed-linker zirconium-based metal–organic frameworks (Zr-MOFs) with a layer-pillar structure.…”
Section: Synthesis and Design Of Porphyrin-based Mofsmentioning
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