In this article we use a surface response approach to investigate the effect of iron sulphide as well as the compositions of PTFE in the overall columbic efficiency of a NiFe cell battery. Our results demonstrate that iron sulphide favours the process of charge/discharge of a NiFe cell. Our experimental results indicate iron sulphide improves the performance of a NiFe cell, but more research is still needed in order to achieve a large scale utilisation of such cells
open access articleElectricity systems require energy storage on all time scales to accommodate the ...
AbstractMultiple regression analysis was used to investigate the effect of bismuth sulphide and iron...
The high cost of Pt-based cathode, and its possibility of being poisoned by the presence of buffer i...
AbstractIn this article we use a surface response approach to investigate the effect of iron sulphid...
In this article, we use a surface response approach to investigate the effect of bismuth sulphide as...
NiFe batteries are emerging as an important energy storage technology but suffer from a hydrogen-pro...
Multiple regression analysis was used to investigate the effect of bismuth sulphide and iron sulphid...
AbstractIn this article, we use a surface response approach to investigate the effect of bismuth sul...
Aiming to develop a cost effective means to store large amounts of electric energy, NiFe batteries w...
It is a global challenge to develop green, sustainable power source for modern portable devices, and...
Aqueous electrolyte formulations for NiFe cells were prepared by using lithium hydroxide and potassi...
AbstractIron electrodes were prepared by hot-pressing iron-polyethylene based formulations on nickel...
AbstractAiming to develop a cost effective means to store large amounts of electric energy, NiFe bat...
Iron is one of the most abundant elements in the earth’s crust and its applications are myriad; one ...
7 figures.-- Supporting information available.Iron–air systems are a very promising technology with ...
open access articleElectricity systems require energy storage on all time scales to accommodate the ...
AbstractMultiple regression analysis was used to investigate the effect of bismuth sulphide and iron...
The high cost of Pt-based cathode, and its possibility of being poisoned by the presence of buffer i...
AbstractIn this article we use a surface response approach to investigate the effect of iron sulphid...
In this article, we use a surface response approach to investigate the effect of bismuth sulphide as...
NiFe batteries are emerging as an important energy storage technology but suffer from a hydrogen-pro...
Multiple regression analysis was used to investigate the effect of bismuth sulphide and iron sulphid...
AbstractIn this article, we use a surface response approach to investigate the effect of bismuth sul...
Aiming to develop a cost effective means to store large amounts of electric energy, NiFe batteries w...
It is a global challenge to develop green, sustainable power source for modern portable devices, and...
Aqueous electrolyte formulations for NiFe cells were prepared by using lithium hydroxide and potassi...
AbstractIron electrodes were prepared by hot-pressing iron-polyethylene based formulations on nickel...
AbstractAiming to develop a cost effective means to store large amounts of electric energy, NiFe bat...
Iron is one of the most abundant elements in the earth’s crust and its applications are myriad; one ...
7 figures.-- Supporting information available.Iron–air systems are a very promising technology with ...
open access articleElectricity systems require energy storage on all time scales to accommodate the ...
AbstractMultiple regression analysis was used to investigate the effect of bismuth sulphide and iron...
The high cost of Pt-based cathode, and its possibility of being poisoned by the presence of buffer i...