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The good electrochemical performance could be attributed to the hierarchical porous structure of the ZnO architecture.
The excellent performance could be attributed to the long and thin Ag NWs.
The enhanced electrochemical performance could be attributed to the following structural features.
The dramatically improved photocatalytic performance could be attributed to the effective interfacial and interior carriers separation.
The superior electrochemical performance could be attributed to the hollow structure and characteristics of ZTO crystals.
The superior performance could be attributed to the unique enhanced 3D hierarchical double porous architecture.
Such excellent performance could be attributed to the existence of GO.
Thus, the difference in the performance could be attributed only to the difference in the inks rheological parameters.
The excellent electrochemical performance could be attributed to the presence of the porosity and platelet graphitic pore walls.
The impressive electrochemical performance could be attributed to the coated PEDOT layer which can provide a fast electronic connection.
Such excellent electrochemical performance could be attributed to the combined work of carbon shells and electrically conductive graphene networks.
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