Zobrazeno 1 - 7
of 7
pro vyhledávání: '"T. Malsha Suduwella"'
Autor:
Anton S. Perera, T. Malsha Suduwella, N. Harsha Attanayake, Rahul Kant Jha, William L. Eubanks, Ilya A. Shkrob, Chad Risko, Aman Preet Kaur, Susan A. Odom
Publikováno v:
Materials Advances. 3:8705-8715
The advance non-aqueous redox flow batteries require redox-active organic molecules (ROM) with large solubilities in all states of charge (NMR-spectrometer icon by DBCLS and screen and workstation icons by Simon Duerr licensed under creative commons)
Autor:
Matthew S. Sigman, Min Li, T. Malsha Suduwella, Garvit Agarwal, Susan A. Odom, Shelley D. Minteer, Rajeev S. Assary, Lily A. Robertson, Yilin Wang, Lu Zhang, Randy H. Ewoldt, Sambasiva R. Bheemireddy, Hieu A. Doan, Adam R. Pancoast, Thomas P. Vaid
Publikováno v:
ACS Energy Letters. 6:3932-3943
Autor:
Aman Preet Kaur, Yichao Yan, Melanie S. Sanford, Susan A. Odom, N. Harsha Attanayake, Zhiming Liang, T. Malsha Suduwella
Publikováno v:
The Journal of Physical Chemistry C. 125:14170-14179
Autor:
Rajeev S. Assary, Zhou Yu, Hossam Farag, Lei Cheng, Tao Li, T. Malsha Suduwella, Aman Preet Kaur, Randy H. Ewoldt, Xinyi Liu, Erik Sarnello, Lily A. Robertson, Susan A. Odom, Yilin Wang, Lu Zhang, Ilya A. Shkrob
Publikováno v:
Journal of Molecular Liquids. 334:116533
Nonaqueous redox flow batteries use liquid electrolytes containing redox-active organic molecules (redoxmers) as their energy storage medium. To maximize energy density, the redoxmer concentration needs to be maximized while maintaining low viscosity
Autor:
Susan A. Odom, Christopher S. Johnson, Yingjie Li, Zhiming Liang, T. Malsha Suduwella, N. Harsha Attanayake, Aman Preet Kaur
Publikováno v:
ECS Meeting Abstracts. :266-266
Redox-active organic compounds are added to lithium-ion battery electrolytes (i) to serve as redox shuttles to mitigate excess current during overcharge and (ii) to passivate electrode surfaces to stabilize interfaces that would otherwise lead to ele
Publikováno v:
ECS Meeting Abstracts. :508-508
Predicting the solubility and stability of redox-active organics across all states of charge is a challenging task. A trained chemist can often predict trends, but when it comes to numerical values, even the best computer software cannot be counted u
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