Investigation in radioactive contaminant removal from aqueous solutions has been considered essential upon unexpected nuclear accidents. In this report, we have successfully prepared Prussian blue analogues (PBAs) with different substituted cations (A2[Fe(CN)6] (A: Cu2+, Co2+, and Ni2+)). The synthesized PBAs were characterized and employed for the removal of Cs+, Sr2+, and Co2+ as sorption models, which are commonly found in radioactive waste. Sorption examinations reveal that Cu2[Fe(CN)6] has the highest sorption capacity towards Cs+, Sr2+, and Co2+ compared with those of Co2[Fe(CN)6] and Ni2[Fe(CN)6]. This is mainly attributed to the cation-exchange ability of substituted metal within the framework of PBAs. The sorption mechanism is qual...
The selective and efficient cesium recovery from natural brines resources is a significant and chall...
Objectives: Among various radioactive contaminants, radioactive cesium is one of the most harmful ra...
Radioactive cesium (137Cs) has inevitably become a human concern due to exposure from nuclear power ...
Prussian blue analogues (PBAs) with tunable compositions and morphologies have demonstrated great po...
Very recently, we have reported preparation of several types of Prussian Blue (PB) particles with va...
Alternative energy sources are currently worldwide under development to contribute to the increasin...
Any release of radioactive cesium-137, due to unintentional accidents in nuclear plants, represents ...
A new nanocomposite, called FPPB, was prepared by the in situ synthesis of a Prussian blue (PB) nano...
Recent reports have demonstrated the practical application of Prussian blue (PB) nanoparticles towar...
The subject of this thesis is the description of the therapeutic aspects of Prussian blue towards he...
Prussian blue (PB) and Prussian blue analogues (PBAs) are compounds with potential applications in a...
Prussian blue was the world's first synthetic dye. Its structural, optical and magnetic properties h...
The addition of ferric ferrocyanide (Prussian blue; PB) to adsorbents could enhance the adsorption p...
The CO2 adsorption on various Prussian blue analogue hexacyanoferrates was evaluated by thermogravim...
A Prussian blue (PB; KFe)-immobilized chitin-coated nylon (KFe/CT/nylon) fiber was successfully synt...
The selective and efficient cesium recovery from natural brines resources is a significant and chall...
Objectives: Among various radioactive contaminants, radioactive cesium is one of the most harmful ra...
Radioactive cesium (137Cs) has inevitably become a human concern due to exposure from nuclear power ...
Prussian blue analogues (PBAs) with tunable compositions and morphologies have demonstrated great po...
Very recently, we have reported preparation of several types of Prussian Blue (PB) particles with va...
Alternative energy sources are currently worldwide under development to contribute to the increasin...
Any release of radioactive cesium-137, due to unintentional accidents in nuclear plants, represents ...
A new nanocomposite, called FPPB, was prepared by the in situ synthesis of a Prussian blue (PB) nano...
Recent reports have demonstrated the practical application of Prussian blue (PB) nanoparticles towar...
The subject of this thesis is the description of the therapeutic aspects of Prussian blue towards he...
Prussian blue (PB) and Prussian blue analogues (PBAs) are compounds with potential applications in a...
Prussian blue was the world's first synthetic dye. Its structural, optical and magnetic properties h...
The addition of ferric ferrocyanide (Prussian blue; PB) to adsorbents could enhance the adsorption p...
The CO2 adsorption on various Prussian blue analogue hexacyanoferrates was evaluated by thermogravim...
A Prussian blue (PB; KFe)-immobilized chitin-coated nylon (KFe/CT/nylon) fiber was successfully synt...
The selective and efficient cesium recovery from natural brines resources is a significant and chall...
Objectives: Among various radioactive contaminants, radioactive cesium is one of the most harmful ra...
Radioactive cesium (137Cs) has inevitably become a human concern due to exposure from nuclear power ...