Owing to technological advancements and the ever-increasing population, the search for renewable energy resources has increased. One such attempt at finding effective renewable energy is recycling of lithium-ion batteries and using the recycled material as an electrocatalyst for the oxygen evolution reaction (OER) step in water splitting reactions. In electrocatalysis, the OER plays a crucial role and several electrocatalysts have been investigated to improve the efficiency of O2 gas evolution. Present research involves the use of citric acid coupled with lemon peel extracts for efficient recovery of lithium cobaltate from waste lithium-ion batteries and subsequent use of the recovered cathode material for OER in water splitting. Optimum re...
This thesis aims to design and develop environmentally friendly process by using mineral processing ...
In the present manuscript, a simple hydrometallurgy process for recovering and recycling cobalt from...
This paper presents the study of an innovative process: the reductive dissolution of mixed lithium c...
International audienceThe growing demand for lithium-ion battery technology emphasizes the critical ...
Due to the rising inclusivity of electronic devices in one’s daily life, the demand for lithium-ion ...
Lithium cobalt oxide (LCO) is a common cathode material in lithium ion batteries (LIBs). On the ot...
As the life of electronic products is reducing due to development of new technologies, it resulted i...
With the massive consumption of lithium-ion batteries in portable consumer electronics and electric ...
Rapid growth in the market for batteries is imperative to meet global demand. The lack of economical...
Fruit peel discards from various sources are harnessed as a renewable waste biomass feedstock for li...
Batteries waste is found anywhere in the world because most of the electronic devices use batteries ...
The increasing demand for portable electronic devices and electric vehicles (EVs) has triggered the ...
In view of the stringent environmental regulations, availability of limited natural resources and ev...
a b s t r a c t In this work, a hydrometallurgical process based on leaching is applied to recover c...
Spent lithium-ion batteries (LIBs) contain a large number of valuable metals and will be an importan...
This thesis aims to design and develop environmentally friendly process by using mineral processing ...
In the present manuscript, a simple hydrometallurgy process for recovering and recycling cobalt from...
This paper presents the study of an innovative process: the reductive dissolution of mixed lithium c...
International audienceThe growing demand for lithium-ion battery technology emphasizes the critical ...
Due to the rising inclusivity of electronic devices in one’s daily life, the demand for lithium-ion ...
Lithium cobalt oxide (LCO) is a common cathode material in lithium ion batteries (LIBs). On the ot...
As the life of electronic products is reducing due to development of new technologies, it resulted i...
With the massive consumption of lithium-ion batteries in portable consumer electronics and electric ...
Rapid growth in the market for batteries is imperative to meet global demand. The lack of economical...
Fruit peel discards from various sources are harnessed as a renewable waste biomass feedstock for li...
Batteries waste is found anywhere in the world because most of the electronic devices use batteries ...
The increasing demand for portable electronic devices and electric vehicles (EVs) has triggered the ...
In view of the stringent environmental regulations, availability of limited natural resources and ev...
a b s t r a c t In this work, a hydrometallurgical process based on leaching is applied to recover c...
Spent lithium-ion batteries (LIBs) contain a large number of valuable metals and will be an importan...
This thesis aims to design and develop environmentally friendly process by using mineral processing ...
In the present manuscript, a simple hydrometallurgy process for recovering and recycling cobalt from...
This paper presents the study of an innovative process: the reductive dissolution of mixed lithium c...