Urja Daily
No Result
View All Result
  • News
  • Renewable
    • Solar
    • Rooftop
    • Floating Solar
    • Module
    • Wind
    • Hydrogen
    • Biomass
    • Tenders
    • Sustainibility
  • Storage
  • E-Mobility
  • EV Battery
  • Smart City
  • Power
    • Smart Grid
    • Microgrid
    • Off-Grid
  • Editor’s Pick
    • Articles
    • In Talks
    • E-MAG
    • Market Research
  • On-demand Webinars
  • More
    • Events
    • Contact Us
    • Subscribe
  • News
  • Renewable
    • Solar
    • Rooftop
    • Floating Solar
    • Module
    • Wind
    • Hydrogen
    • Biomass
    • Tenders
    • Sustainibility
  • Storage
  • E-Mobility
  • EV Battery
  • Smart City
  • Power
    • Smart Grid
    • Microgrid
    • Off-Grid
  • Editor’s Pick
    • Articles
    • In Talks
    • E-MAG
    • Market Research
  • On-demand Webinars
  • More
    • Events
    • Contact Us
    • Subscribe
No Result
View All Result
Urja Daily
No Result
View All Result
Home Storage

Green Science Alliance Developed Lithium Rich Cathode Material for Next Generation Lithium Ion Battery

Urja Daily by Urja Daily
September 19, 2020
in Storage
Reading Time: 3 mins read
0
Green Science Alliance
Share on FacebookShare on TwitterShare on Linkedin

KAWANISHI-CITY, Japan, Sept. 19, 2020 — Rechargeable batteries are a very important device because they can store electricity produced by sustainable energy sources such as wind power and solar cells. So far, lithium ion batteries are the typical rechargeable battery in modern society. Therefore, the challenge to increase the capacity of lithium ion batteries is an extremely important task.

Green Science Alliance is the company that focuses in researching cutting edge technology in the field of energy and environmental green science. One of their businesses is developing next generation rechargeable batteries. They synthesize electrode, electrolyte material themselves. In addition, they make coating ink, test batteries, measure their electrochemical properties, and analyze technical detail. All procedures can be done within their company, which could be an advantage compared to other competitors. 

RELATED POSTS

NTPC Green Energy Invites Bids for 130 MW Battery Energy Storage Projects

Trina Storage and FlexGen Partner on 371 MWh Battery Storage Project in Texas

For cathode material for lithium ion batteries, necessary properties are high voltage, high capacity, good cycle characteristics with high durability, high charge discharge rate at high current density. In addition, chemical and thermal stability is also important. Not to mention, when one considers about commercialization, low cost, material synthesis outcome stability and efficiency are also critical issue.

Researchers have been challenged to make various type of cathode material for lithium ion batteries. Transition metal oxide with layered rock salt structure, spinel type structure and olivine type structure etc. have been mainly attempted. Some of them are commercialized in the market and those are LiCoO2, LiNi0.33Mn0.33Co0.33O2, LiNi0.5Mn0.2Co0.3O2, LiNi0.6Mn0.2Co0.2O2, LiNi0.8Mn0.1Co0.1O2, LiNi0.8Co0.15Al0.05O2 as layered rock salt structure, and LiFePO4 have been also commercialized as olivine cathode. These cathode materials indicate average voltage as 3 – 4 V and theoretical capacity as 170 – 280 mAhg-1. For practically used battery, they often show 100 – 200 mAhg-1 as capacity. Nowadays, people demand for higher capacity and voltage in order to create stronger lithium ion battery. As high voltage cathode, LiNi0.5Mn1.5O4 as spinel structure and Li2CoPO4F as olivine structured cathode materials, have been under intensive research. These materials present as high as 4.5V as average voltage and that is approximately 1 V higher than normal cathode.

Recently, lithium rich cathode as layered rock salt structure type electrode such as Li2Mn1/2Ti1/2O2F and Li1.2Ti0.4Mn0.4O2 have been the focus as they exhibit high capacity. Molar ratio of lithium compared to transition metal in the lithium rich cathode material, is larger than 1. Its theoretical capacity is 380 – 460mAh/g. Since they have about 100 mAh/g larger cell capacity than conventional cathode material, lithium rich cathode has been gathering much attention in the world. 

This time, Mr. Katsuhiko Konishi and Dr. Ryohei Mori at Green Science Alliance have developed lithium rich cathode with particular chemical composition. They had also prepared printable ink with their lithium rich cathode. Testing batteries was prepared with their lithium rich cathode, lithium metal as counter electrode, and carbonate-based electrolyte was used as an electrolyte. As a result, cell exhibited approximately 265 mAh/g as initial stage and became about 215 mAh/g after 40 charge-discharge cycles. This electrochemical measurement was performed with 0.1 C of charge discharge current at room temperature. They had also confirmed that when graphite was used as an anode, capacity became approximately 240 mAh/g as initial cycle. Since they observed high capacity with actual full cell, they are planning to manufacture actual lithium ion batteries with their lithium rich cathode.

They will keep testing to increase capacity and to obtain good charge/discharge cycles in order to create lithium rich cathode-based lithium ion batteries with high energy. 

ShareTweetShare
Urja Daily

Urja Daily

Related Posts

NTPC Green Energy

NTPC Green Energy Invites Bids for 130 MW Battery Energy Storage Projects

by Palak
May 6, 2025
0

NTPC Green Energy Limited has issued a tender for the engineering, procurement, and construction (EPC) of a 130 MW/520 MWh...

Trina Storage

Trina Storage and FlexGen Partner on 371 MWh Battery Storage Project in Texas

by Palak
April 25, 2025
0

Trina Storage has joined forces with FlexGen Power Systems to deliver a 371 MWh battery energy storage system (BESS) in...

AGEL

AGEL Signs 1.25 GW Pumped Hydro Storage PPA with UPPCL

by Palak
April 24, 2025
0

Adani Green Energy Limited (AGEL) has signed a power purchase agreement (PPA) with Uttar Pradesh Power Corporation Limited (UPPCL) to...

EESL

EESL Rolls Out Solar Micro Cold Storage Units to Reduce Farm-Level Losses

by Palak
April 18, 2025
0

Energy Efficiency Services Limited (EESL), a joint venture of NTPC, REC Limited, Power Finance Corporation Limited and Power Grid Corporation...

KPTCL

KPTCL Awards 700 MWh in 1 GWh Battery Storage Tender

by Palak
April 9, 2025
0

Karnataka Power Transmission Corporation Limited (KPTCL) has announced the results of its 500 MW/1 GWh battery energy storage system (BESS)...

Next Post
Haryana Regulator Asks 50 Captive to Supply Power to DISCOM

Haryana Regulator Asks 50 MW Solar Project to Supply Power to DISCOM

Sterling-and-Wilson-Wins-a-107-MW-Solar-EPC-Project-Worth-

Sterling and Wilson Wins a 107 MW Solar EPC Project Worth $63 Million

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

RECOMMENDED

Physical Security Market

Top 5 Breakthroughs Reshaping the Physical Security Market

May 7, 2025
Uber teams up with Nike for Mumbai After Dark Tour As Official Ride Partner

Uber Partners with Nike as Official Ride for Mumbai After Dark Tour

May 7, 2025
  • 643 Followers
  • 23.9k Followers

MOST VIEWED

  • Hydrom

    Hydrom and Thyssenkrupp Nucera Partner for Green Hydrogen Projects in Oman

    0 shares
    Share 0 Tweet 0
  • SFC India Selected Dassault Systèmes for Indigenization and Digital Transformation of Wastewater Treatment Plants

    0 shares
    Share 0 Tweet 0
  • Juniper Green Energy Secures 1 GW Solar Module Deal with First Solar

    0 shares
    Share 0 Tweet 0
  • PGCIL Wins ISTS Project for Renewable Energy Integration in Karnataka

    0 shares
    Share 0 Tweet 0

Top 5 Breakthroughs Reshaping the Physical Security Market

Uber Partners with Nike as Official Ride for Mumbai After Dark Tour

Honeywell Enhances Hydrogen Safety with Advanced Leak Detection Sensor

Well Intervention Market 2031: Growth Driven by Tech and Subsea Demand

Driving Efficiency: Why Businesses Are Turning to Advanced Parking Management Software Solutions

Wind Turbine Decommissioning Market Outlook 2034: Pioneering the Future of Sustainable Wind Energy Transitions

Latest Magazine

© 2016 – 2025 TechZone Print Media | All Rights Reserved

  • About Us
  • Contact Us
No Result
View All Result
  • News
  • Renewable
    • Solar
    • Rooftop
    • Floating Solar
    • Module
    • Wind
    • Hydrogen
    • Biomass
    • Tenders
    • Sustainibility
  • Storage
  • E-Mobility
  • EV Battery
  • Smart City
  • Power
    • Smart Grid
    • Microgrid
    • Off-Grid
  • Editor’s Pick
    • Articles
    • In Talks
    • E-MAG
    • Market Research
  • On-demand Webinars
  • More
    • Events
    • Contact Us
    • Subscribe

© 2016 - 2025 TechZone Print Media | All Rights Reserved