Copper hexacyanoferrate (CuHCF) is a promising Zn2+ insertion material as positive electrode in mild aqueous Zn-ion batteries for power grid applications, due to its excellent power capability, non-toxicity, low cost and easy synthesis route. Here, the effect of the reactants’ concentration and ratio during the synthesis of the CuHCF on the performance of the resulting material has been investigated through morphological, crystallographic and compositional analysis. Despite the different reaction’s conditions, the synthesised CuHCF powders did not show any significant change in their average particle size and morphology. Nevertheless, different structural and compositional characteristics have been observed for the different samples. In par...
Rhombohedral potassium–zinc hexacyanoferrate K1.88Zn2.88[Fe(CN)6]2(H2O)5 (KZnHCF) synthesized using...
Thin films of copper hexacyanoferrate (CuHCF) have been reproducibly electrodeposited on conductive ...
Copper hexacyanoferrate, CuII[FeIII(CN)6]2/3·nH2O, was synthesized, and varied amounts of K+ ions we...
Aqueous rechargeable metal-ion batteries have become potentially advantageous for the integration of...
In this work, we investigate factors affecting the capacity retention of aqueous copper hexacyanofer...
There is a current global need of clean energy sources to replace the non-renewable fossil fuels due...
Copper-hexacyanoferrate (CuHCF) is capable of 28000 cycles in 1 mol dm-3 AlCl3 in a 3-electrode cell...
The storage process of Zn2+ in the Prussian blue analogue (PBA) copper hexacyanoferrate (Cu[Fe(CN)6]...
Sodium ion batteries are considered to be a promising low-cost alternative to common lithium batteri...
In this study, the sodium citrate assisted coprecipitation method was adopted to prepare high-qualit...
The zinc/copper hexacyanoferrate (Zn/CuHCF) cell has gained attention as an aqueous rechargeable zin...
Prussian blue (PB) and Prussian blue analogues (PBAs) are compounds with potential applications in a...
In this article we investigate copper hexacyanoferrate (CuHCF) as a nonaqueous magnesium ion battery...
Manganese hexacyanoferrate (MnHCF) has attracted much attention as promising cathode material for Li...
Prussian blue analogue (PBA)-type metal hexacyanoferrates are considered as significant cathodes for...
Rhombohedral potassium–zinc hexacyanoferrate K1.88Zn2.88[Fe(CN)6]2(H2O)5 (KZnHCF) synthesized using...
Thin films of copper hexacyanoferrate (CuHCF) have been reproducibly electrodeposited on conductive ...
Copper hexacyanoferrate, CuII[FeIII(CN)6]2/3·nH2O, was synthesized, and varied amounts of K+ ions we...
Aqueous rechargeable metal-ion batteries have become potentially advantageous for the integration of...
In this work, we investigate factors affecting the capacity retention of aqueous copper hexacyanofer...
There is a current global need of clean energy sources to replace the non-renewable fossil fuels due...
Copper-hexacyanoferrate (CuHCF) is capable of 28000 cycles in 1 mol dm-3 AlCl3 in a 3-electrode cell...
The storage process of Zn2+ in the Prussian blue analogue (PBA) copper hexacyanoferrate (Cu[Fe(CN)6]...
Sodium ion batteries are considered to be a promising low-cost alternative to common lithium batteri...
In this study, the sodium citrate assisted coprecipitation method was adopted to prepare high-qualit...
The zinc/copper hexacyanoferrate (Zn/CuHCF) cell has gained attention as an aqueous rechargeable zin...
Prussian blue (PB) and Prussian blue analogues (PBAs) are compounds with potential applications in a...
In this article we investigate copper hexacyanoferrate (CuHCF) as a nonaqueous magnesium ion battery...
Manganese hexacyanoferrate (MnHCF) has attracted much attention as promising cathode material for Li...
Prussian blue analogue (PBA)-type metal hexacyanoferrates are considered as significant cathodes for...
Rhombohedral potassium–zinc hexacyanoferrate K1.88Zn2.88[Fe(CN)6]2(H2O)5 (KZnHCF) synthesized using...
Thin films of copper hexacyanoferrate (CuHCF) have been reproducibly electrodeposited on conductive ...
Copper hexacyanoferrate, CuII[FeIII(CN)6]2/3·nH2O, was synthesized, and varied amounts of K+ ions we...