A novel liquid-feed flame spray pyrolysis synthesis with reducing post-heat treatment yielding highly phase pure nano-sized and carbon-coated Li2MnSiO4 is reported. In contrast to most reported Li2MnSiO4 synthesis routes, aerosol combustion methods are highly scalable and not as time consuming as most wet chemical syntheses. Flame spray pyrolysis was performed using solutions with varying ratios of H2O, EtOH and p-Xylene. The importance of solution combustibility to form loosely agglomerated nanoparticles is highlighted. Particles from the p-Xylene-aided flame spray pyrolysis showed a mean particle size of 20 nm and Pmn2 1 structure after annealing and carbon coating. The electrochemical performance as a cathode material was assessed by ga...
This work is an investigation of lithium sulfide carbon (Li2S@C) composites synthesis via Aerosol Sp...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
Inexpensive synthesis of electroceramic materials is required for efficient energy storage. Here the...
Inexpensive synthesis of electroceramic materials is required for efficient energy storage. Here the...
Inexpensive synthesis of electroceramic materials is required for efficient energy storage. Here the...
Li-ion batteries (LIBs) constitute the leading technology within power sources. They are used in hyb...
The scope of the present study was to demonstrate the capability of Flame Spray Pyrolysis (FSP) proc...
Flame spray pyrolysis technology makes use of the high chemical activity of a flame. A metal salt aq...
© 2017 Spray pyrolysis is a scalable process to fabricate functional particles as cathode/anode mate...
Crystalline LiMn2O4 nanoparticles with specific surface areas between 53.9 and 203.4 m2 g-1 (particl...
Flame spray pyrolysis (FSP) was applied to produce nanopowders of Ti1-xMxO2 and Sn1-xMxO2, where x =...
This work is an investigation of lithium sulfide carbon (Li2S@C) composites synthesis via Aerosol Sp...
Flame spray pyrolysis (FSP) was applied to produce nanopowders of Ti1-xMxO2 and Sn1-xMxO2, where x =...
Li2MSiO4 (M = Fe, Mn, Co) compounds have since their discovery gained increased attention as alterna...
This work is an investigation of lithium sulfide carbon (Li2S@C) composites synthesis via Aerosol Sp...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
Inexpensive synthesis of electroceramic materials is required for efficient energy storage. Here the...
Inexpensive synthesis of electroceramic materials is required for efficient energy storage. Here the...
Inexpensive synthesis of electroceramic materials is required for efficient energy storage. Here the...
Li-ion batteries (LIBs) constitute the leading technology within power sources. They are used in hyb...
The scope of the present study was to demonstrate the capability of Flame Spray Pyrolysis (FSP) proc...
Flame spray pyrolysis technology makes use of the high chemical activity of a flame. A metal salt aq...
© 2017 Spray pyrolysis is a scalable process to fabricate functional particles as cathode/anode mate...
Crystalline LiMn2O4 nanoparticles with specific surface areas between 53.9 and 203.4 m2 g-1 (particl...
Flame spray pyrolysis (FSP) was applied to produce nanopowders of Ti1-xMxO2 and Sn1-xMxO2, where x =...
This work is an investigation of lithium sulfide carbon (Li2S@C) composites synthesis via Aerosol Sp...
Flame spray pyrolysis (FSP) was applied to produce nanopowders of Ti1-xMxO2 and Sn1-xMxO2, where x =...
Li2MSiO4 (M = Fe, Mn, Co) compounds have since their discovery gained increased attention as alterna...
This work is an investigation of lithium sulfide carbon (Li2S@C) composites synthesis via Aerosol Sp...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...