The SnPS3 is a future candidate as an anode in lithium ion batteries (LIB). In this 21st century, the demands for highly efficient energy storage are increasing every year as technologies constantly undergoes evolution. For example, there are many researches which focus on how to produce efficient and high-density energy storage for electric cars. By investigating and analysing SnPS3 electrochemical properties, there is a possibility produce higher density battery. The present lithium ion batteries only deliver a capacity of 372 mAh g-1 and less than adequate energy density. There are many interests in researching different type of materials for anode in LIB. One of the materials which has been thoroughly researched are the metal phosphoru...
The research described in this dissertation aims to develop facile synthetic routes to fabricate car...
Sn4P3 is introduced for the first time as an anode material for Na?ion batteries. Sn4P3 delivers a h...
Tin (Sn) as a cheaper and more environment-friendly alternative to lead (Pb) has been widely used in...
In order to keep up with the energy demands of this technologically evolving world, much research ha...
In order to keep up with the energy demands of this technologically evolving world, much research ha...
Nanosizing and nanostructuring from bulk crystal has led to interesting properties that appeal in Li...
Nanosizing and nanostructuring from bulk crystal has led to interesting properties that appeal in Li...
ncreasing the energy density of lithium?ion batteries requires the discovery of new electrode materi...
The investigation of the use of nanomaterials for the development of sustainable energy sources and ...
Improved battery materials are necessary to offset the intermittency of renewable energy sources suc...
Improved battery materials are necessary to offset the intermittency of renewable energy sources suc...
The preparation and electrochemical structural transformation of a fully reversible new lithium inte...
Novel materials with high lithium-storage capacities are indispensable to substantially increase the...
Lithium ion battery (LIB) is one of the most promising forms of rechargeable electrical energy stora...
A novel amorphous phosphorus chalcogenide (a-P4SSe2) compound as anode material delivers excellent e...
The research described in this dissertation aims to develop facile synthetic routes to fabricate car...
Sn4P3 is introduced for the first time as an anode material for Na?ion batteries. Sn4P3 delivers a h...
Tin (Sn) as a cheaper and more environment-friendly alternative to lead (Pb) has been widely used in...
In order to keep up with the energy demands of this technologically evolving world, much research ha...
In order to keep up with the energy demands of this technologically evolving world, much research ha...
Nanosizing and nanostructuring from bulk crystal has led to interesting properties that appeal in Li...
Nanosizing and nanostructuring from bulk crystal has led to interesting properties that appeal in Li...
ncreasing the energy density of lithium?ion batteries requires the discovery of new electrode materi...
The investigation of the use of nanomaterials for the development of sustainable energy sources and ...
Improved battery materials are necessary to offset the intermittency of renewable energy sources suc...
Improved battery materials are necessary to offset the intermittency of renewable energy sources suc...
The preparation and electrochemical structural transformation of a fully reversible new lithium inte...
Novel materials with high lithium-storage capacities are indispensable to substantially increase the...
Lithium ion battery (LIB) is one of the most promising forms of rechargeable electrical energy stora...
A novel amorphous phosphorus chalcogenide (a-P4SSe2) compound as anode material delivers excellent e...
The research described in this dissertation aims to develop facile synthetic routes to fabricate car...
Sn4P3 is introduced for the first time as an anode material for Na?ion batteries. Sn4P3 delivers a h...
Tin (Sn) as a cheaper and more environment-friendly alternative to lead (Pb) has been widely used in...