Year : 2022
Challenges and Benchmarking in Scale-Up of Ni-Rich Cathodes for Sodium-Ion Batteries
Cite this Research Publication : P. Venkatachalam, S. Kalluri* et. al., Challenges and Benchmarking in Scale-Up of Ni-Rich Cathodes for Sodium-Ion Batteries, Journal of The Electrochemical Society, 2022, 169 (7), 070536. (I.F.=4.316)
Year : 2021
Building High-Rate Nickel-Rich Cathodes by Self-Organization of Structurally Stable Macrovoid
Cite this Research Publication : S. Kalluri et. al., Building high-rate nickel-rich cathodes by self-organization of structurally stable macrovoid, Advanced Science, 2020, 7, 1902844. (I.F. = 16.806)
Year : 2021
Critical Insights Into Fast Charging Techniques for Lithium-Ion Batteries in Electric Vehicles
Cite this Research Publication :
K.K. Duru, S. Kalluri* et. al., Critical insights into fast charging techniques for lithium-ion batteries in electric vehicles, IEEE Transactions on Device and Materials Reliability, 2021, 1, 137. (I.F. = 1.761)
Publisher : IEEE Transactions on Device and Materials Reliability
Year : 2021
Application-driven industrial-scale manufacturing of Li/Na-ion battery cathodes
Cite this Research Publication :
C. Karra, S. Kalluri* et. al., Application-driven industrial-scale manufacturing of Li/Na-ion battery cathodes: Current status and future perspective, Journal of The Electrochemical Society, 2021, 168, 050509. (I.F. = 4.316)
Year : 2021
Lithium-ion Battery Model Parameters Estimation Using Equivalent Circuit Model for E-mobility Applications
Cite this Research Publication :
K.K. Duru, S. Kalluri* et. al., Lithium-ion Battery Model Parameters Estimation Using Equivalent Circuit Model for E-mobility Applications, ECS Transactions, 2022, Accepted.
Year : 2017
Surface engineering strategies of layered LiCoO2 cathode material to realize high energy and high-voltage Li-ion cells
Cite this Research Publication : S. Kalluri, M. Yoon, M. Jo, S. Park, S. Myeong, J. Kim, S.X. Dou, Z. Guo, J. Cho, Surface engineering strategies of layered LiCoO2 cathode material to realize high energy and high-voltage Li-ion cells, Advanced Energy Materials, 2017, 7, 1601507. (I.F. = 29.368) ‘Selected as Journal back cover’
Year : 2017
Feasibility of Cathode Surface Coating Technology for High-Energy Lithium-ion and Beyond-Lithium-ion Batteries
Cite this Research Publication :
S. Kalluri, M. Yoon, M. Jo, H.K. Liu, S.X. Dou, J. Cho, Z. Guo, Feasibility of cathode surface coating technology for high-energy lithium-ion and beyond-lithiumion batteries. Advanced Materials, 2017, 29, 1605807. (I.F. = 30.849)
Year : 2015
Better battery materials for balancing future energy demands
Cite this Research Publication : S. Kalluri, W.K. Pang, V.K. Peterson, Z. Guo, H.K. Liu, S.X. Dou, Better battery materials for balancing future energy demands, The Vehicle Technology Engineer Magazine (SAE - Australasia Magazine), Issue 7 - October 2015, Page No. 22.
Year : 2015
Sodium and Lithium Storage Properties of Spray-Dried Molybdenum Disulfide-Graphene Hierarchical Microspheres
Cite this Research Publication : S. Kalluri, K.H. Seng, Z. Guo, A. Du, K. Konstantinov, H.K. Liu, S.X. Dou, Sodium and lithium storage properties of spray-dried molybdenum disulfide-graphene hierarchical microspheres, Scientific Reports 5, 11989, 2015; DOI: 10.1038/srep11989. (I.F. = 4.379)
Year : 2014
Electrospun P2-type Na2/3(Fe1/2Mn1/2)O2 hierarchical nanofibers as cathode material for sodium-Ion Batteries
Cite this Research Publication :
S. Kalluri, K.H. Seng, W.K. Pang, Z. Guo, Z. Chen, H.K. Liu, S.X. Dou, Electrospun P2-type Na2/3(Fe1/2Mn1/2)O2 hierarchical nanofibers as cathode material for sodium - ion batteries, ACS Applied Materials & Interfaces 2014, 6 (12), 8953. (I.F. = 9.229)