The design of a suitable electrode is an essential and fundamental research challenge in the field of electrochemical energy storage because the electronic structures and morphologies determine the surface redox reactions. Calcium molybdate (CaMoO4) was synthesized by a combustion route at 300 degrees C and 500 degrees C. We describe new findings on the behaviour of CaMoO4 and evaluate the influence of crystallinity on energy storage performance. A wide range of characterization techniques was used to obtain detailed information about the physical and morphological characteristics of CaMoO4. The characterization results enable the phase evolution as a function of the electrode synthesis temperature to be understood. The crystallinity of the...
Hybrid capacitors can replace or complement batteries, while storing energy through ion adsorption a...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Currently, metal molybdates compounds can be prepa...
Novel battery technology must be capable of providing both increased energy density and power densit...
The design of a suitable electrode is an essential and fundamental research challenge in the field o...
The design of a suitable electrode is an essential and fundamental research challenge in the field o...
The design of a suitable electrode is an essential and fundamental research challenge in the field o...
Pseudocapacitive energy storage is a promising energy storage mechanism which can lead to both high ...
The race for better electrochemical energy storage systems has prompted examination of the stability...
Calcium batteries could be an alternative to lithium analogues, but this technology is still in its ...
International audienceMolybdenum oxides (MoOy) exhibit quite interesting structural, chemical, elect...
Magnesium molybdate (MgMoO4), which possesses synergistic features combining both hierarchical plate...
In this paper, calcium molybdate (CaMoO(4)) crystals (meso- and nanoscale) were synthesized by the c...
A facile hydrothermal method has been successfully developed for the synthesis of cobalt molybdate (...
In this paper, calcium molybdate (CaMoO4) crystals (meso- and nanoscale) were synthesized by the cop...
In this paper, calcium molybdate (CaMoO(4)) crystals (meso- and nanoscale) were synthesized by the c...
Hybrid capacitors can replace or complement batteries, while storing energy through ion adsorption a...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Currently, metal molybdates compounds can be prepa...
Novel battery technology must be capable of providing both increased energy density and power densit...
The design of a suitable electrode is an essential and fundamental research challenge in the field o...
The design of a suitable electrode is an essential and fundamental research challenge in the field o...
The design of a suitable electrode is an essential and fundamental research challenge in the field o...
Pseudocapacitive energy storage is a promising energy storage mechanism which can lead to both high ...
The race for better electrochemical energy storage systems has prompted examination of the stability...
Calcium batteries could be an alternative to lithium analogues, but this technology is still in its ...
International audienceMolybdenum oxides (MoOy) exhibit quite interesting structural, chemical, elect...
Magnesium molybdate (MgMoO4), which possesses synergistic features combining both hierarchical plate...
In this paper, calcium molybdate (CaMoO(4)) crystals (meso- and nanoscale) were synthesized by the c...
A facile hydrothermal method has been successfully developed for the synthesis of cobalt molybdate (...
In this paper, calcium molybdate (CaMoO4) crystals (meso- and nanoscale) were synthesized by the cop...
In this paper, calcium molybdate (CaMoO(4)) crystals (meso- and nanoscale) were synthesized by the c...
Hybrid capacitors can replace or complement batteries, while storing energy through ion adsorption a...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Currently, metal molybdates compounds can be prepa...
Novel battery technology must be capable of providing both increased energy density and power densit...