The evolution development of portable electronic devices and electric vehicles ev is determined by development of better working, more reliable and cheaper accumulators that store electric energy. LiFePO4 is a new generation cathode material which is trying to be up to this challenge.This material is ecological and cheap. It is characterised by very good degree of reversibility in charging/ discharging cycles. The strong covalent bond P-O ensure that the structure of olivine is chemically and thermally stable. The most outstanding limitation of LiFePO4 is its low electric conductivity (~10-9 S/cm) and complicated synthesis of the material. The problem of low electric conductivity can be solved by reducing the grain size of cathode materia...
The method of lithium iron phosphate (LiFePO4) synthesis in a melt mixture of choline chloride and d...
Olivine-structured LiFePO4 faces its intrinsic challenges in terms of poor electrical conductivity a...
The olivine LiFePO4 now stands as a competitive candidate of cathode material for the next generatio...
Do celów niniejszej pracy magisterskiej należało zsyntezowanie oraz charakterystyka nanokompozytoweg...
Niniejsza praca dotyczy materiału katodowego CCL/LiFePO4 stosowanego w bateriach litowo-jonowych. Ma...
SYNTHESIS AND CHARACTERIZATION OF LiFePO4/PPy/CLAY COMPOSITE AS CATHODE MATERIAL FOR Li-ION BATTERY....
The influence of different conductive additives (carbon nanofibers (CNFs), carbon nanoplatelets, and...
[[abstract]]The goal of this research was to study the effect of various polymer-containing precurso...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
In this study, LiFePO4/C is synthesized via a novel two-step method. The first step is the synthesis...
Lithium ion batteries are the power sources of choice for portable electronics, power tools and elec...
LiFePO4-C composite cathode active materials were synthesized by a sol-gel-assisted carbothermal red...
One of the most perspective cathode materials for the application in the Li-ion batteries is LiFePO4...
Carbon coated lithium iron phosphates were prepared by a carbon aerogel synthesis process, through w...
Among the several materials under development for use as a cathodes in lithium-ion batteries olivine...
The method of lithium iron phosphate (LiFePO4) synthesis in a melt mixture of choline chloride and d...
Olivine-structured LiFePO4 faces its intrinsic challenges in terms of poor electrical conductivity a...
The olivine LiFePO4 now stands as a competitive candidate of cathode material for the next generatio...
Do celów niniejszej pracy magisterskiej należało zsyntezowanie oraz charakterystyka nanokompozytoweg...
Niniejsza praca dotyczy materiału katodowego CCL/LiFePO4 stosowanego w bateriach litowo-jonowych. Ma...
SYNTHESIS AND CHARACTERIZATION OF LiFePO4/PPy/CLAY COMPOSITE AS CATHODE MATERIAL FOR Li-ION BATTERY....
The influence of different conductive additives (carbon nanofibers (CNFs), carbon nanoplatelets, and...
[[abstract]]The goal of this research was to study the effect of various polymer-containing precurso...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
In this study, LiFePO4/C is synthesized via a novel two-step method. The first step is the synthesis...
Lithium ion batteries are the power sources of choice for portable electronics, power tools and elec...
LiFePO4-C composite cathode active materials were synthesized by a sol-gel-assisted carbothermal red...
One of the most perspective cathode materials for the application in the Li-ion batteries is LiFePO4...
Carbon coated lithium iron phosphates were prepared by a carbon aerogel synthesis process, through w...
Among the several materials under development for use as a cathodes in lithium-ion batteries olivine...
The method of lithium iron phosphate (LiFePO4) synthesis in a melt mixture of choline chloride and d...
Olivine-structured LiFePO4 faces its intrinsic challenges in terms of poor electrical conductivity a...
The olivine LiFePO4 now stands as a competitive candidate of cathode material for the next generatio...