Tuning the electronic structures of mesocrystals at the atomic level is an effective approach to obtaining unprecedented properties. Here, a lattice-confined strategy to obtain isolated single-site Sn atoms in CuO mesocrystals to improve catalytic performance is reported. The Sn/CuO mesocrystal composite (Sn/CuO MC) has ordered Sn-O-Cu atomic interfaces originated from the long-range ordering of the CuO mesocrystal itself. X-ray absorption fine structure measurements confirm that the positively charged Sn atoms can tune the electronic structure of the Cu atoms to some extent in Sn/CuO MC, quite different from that in the conventional single-atom Sn-modified CuO nanoparticles and nanoparticulate SnO2-modified CuO mesocrystal catalysts. When ...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Tuning the electronic structures of mesocrystals at the atomic level is an effective approach to obt...
As compared with conventional nanocrystal systems, Cu-based mesocrystals have demonstrated distinct ...
Mesocrystals, the non-classical crystals with highly ordered nanoparticle superstructures, have show...
Mesocrystals, the non-classical crystals with highly ordered nanoparticle superstructures, have show...
We report the improved catalytic performance of SnO2-CuO hybrid nanocatalysts synthesized by rationa...
In this work, we report the preparation of novel leaflike Cu-O-Sn nanosheet catalysts for the Rochow...
There is a growing interest in the preparation of catalysts with well-defined and isolated sites, as...
In heterogeneous catalysis, successful design and construction of the desired oxide-metal interface ...
In this work, three types of ZnO/Cu2O heterostructures were synthesized by depositing ZnO nanopartic...
In this work, three types of ZnO/Cu2O heterostructures were synthesized by depositing ZnO nanopartic...
In heterogeneous catalysis, on one hand, people always want to know about reaction details, such as ...
A versatile and novel catalyst, CuO nanoparticles immobilized over functionalized mesoporous silica ...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Tuning the electronic structures of mesocrystals at the atomic level is an effective approach to obt...
As compared with conventional nanocrystal systems, Cu-based mesocrystals have demonstrated distinct ...
Mesocrystals, the non-classical crystals with highly ordered nanoparticle superstructures, have show...
Mesocrystals, the non-classical crystals with highly ordered nanoparticle superstructures, have show...
We report the improved catalytic performance of SnO2-CuO hybrid nanocatalysts synthesized by rationa...
In this work, we report the preparation of novel leaflike Cu-O-Sn nanosheet catalysts for the Rochow...
There is a growing interest in the preparation of catalysts with well-defined and isolated sites, as...
In heterogeneous catalysis, successful design and construction of the desired oxide-metal interface ...
In this work, three types of ZnO/Cu2O heterostructures were synthesized by depositing ZnO nanopartic...
In this work, three types of ZnO/Cu2O heterostructures were synthesized by depositing ZnO nanopartic...
In heterogeneous catalysis, on one hand, people always want to know about reaction details, such as ...
A versatile and novel catalyst, CuO nanoparticles immobilized over functionalized mesoporous silica ...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...
Surface lattice oxygen in metal oxides is a common participant in many chemical reactions. Given thi...