Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Darren Huan Shen Tan"'
Autor:
Ying Shirley Meng, Minghao Zhang, Yixuan Li, Sabrina Richardson, Hayley Hirsh, Darren Huan Shen Tan, Thomas A. Wynn
Publikováno v:
ECS Meeting Abstracts, vol MA2020-01, iss 2
Sodium ion batteries (NIBs) are a promising technology for grid storage due to the natural abundance, low cost, and suitable redox potential (-2.71 V vs. SHE) of Na. Exploration of NIB cathode materials that include abundant and inexpensive elements,
Autor:
Xuefeng Wang, Abhik Banerjee, Han Nguyen, Shirley Meng, Hedi Yang, Zheng Chen, Panpan Xu, Jean-Marie Doux, Darren Huan Shen Tan, Erik A. Wu
Publikováno v:
ECS Meeting Abstracts. :75-75
With rapidly increased lithium ion batteries (LIBs) adoption, the need for sustainable battery recycling is a matter of utmost importance. Spent LIBs contain lithium, cobalt, nickel and other transition metals that are not only economically valuable
Autor:
Jean-Marie Doux, Abhik Banerjee, Xuefeng Wang, Darren Huan Shen Tan, Erik Wu, Han Nguyen, Shirley Meng
Publikováno v:
ECS Meeting Abstracts. :694-694
All solid-state batteries (ASSBs) are predicted to be the next generation of lithium ion batteries with their wider operating temperature range, higher energy density, and improved safety compared to conventional liquid electrolyte-based batteries. F
Autor:
Darren Huan Shen Tan, Abhik Banerjee, Zhi Deng, Erik Wu, Han Nguyen, Jean-Marie Doux, Xuefeng Wang, Ju-hsiang Cheng, Shyue Ping Ong, Shirley Meng, Zheng Chen
Publikováno v:
ECS Meeting Abstracts. :1772-1772
All solid-state batteries (ASSBs) have the potential to deliver higher energy densities, wider operating temperature range and improved safety compared with today’s liquid electrolyte-based batteries. However, they still face challenges that limit
Autor:
Darren Huan Shen Tan, Ahbik Banerjee, Zhi Deng, Erik Wu, Han Nguyen, Jean-Marie Doux, Xuefeng Wang, Ju-hsiang Cheng, Shyue Ping Ong, Shirley Meng, Zheng Chen
Publikováno v:
ECS Meeting Abstracts. :243-243
All solid-state batteries (ASSBs) have the potential to deliver higher energy densities, wider operating temperature range and improved safety compared with today’s liquid electrolyte-based batteries. However, they still face challenges that limit