Dr. Shishir Kumar Singh
Indian Institute of Technology Bombay, OLA Cell Technologies Pvt. Ltd, Banaras Hindu University Faculty of Science
About
My research is focused on the development of next-generation lithium-ion battery technologies, with a specific emphasis on 4680-format cylindrical cells, dry electrode processing, and advanced electrode materials including NMC, LFP, and Si-based anodes. I specialize in bridging the gap between fundamental materials science and scalable manufacturing processes, contributing to both high energy density and cost-effective cell production.
Key Projects
4680 Cell & 587 BESS Cell Technology
Material Validation and Selection
Dry Coating Technology Scale-Up & Validation
Wet Slurry Coating Process Optimization & Validation
Key Expertise: Li-ion Cell Technologies-EV & BESS; R&D-to-Plotline-to-Production Technology Transfer (TRL 1–8); Dry & Wet Electrode Development; Dry Coating Technologies; Material Validation; Mixing & Electrode Coating Process Development; Electrode Validation in Pouch, Prismatic, Cylindrical (4680/4695) cell formats; Cell Electrochemical Validation; Composite Solid Polymer Electrolytes, Surface Coating of CAM; Si@Gr Anode and LFP Dry Electrode; Li-polymer Batteries
Employment
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Indian Institute of Technology Bombay project scientist-I2022 - Present
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OLA Cell Technologies Pvt. Ltd Lead Research Engineer-NPD2022 - 2026
Education
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Banaras Hindu University Faculty of Science Ph.D2015 - 2022
Projects & Funding
Projects & funding information is unavailable.
Publications (29)
- Preventing chemo-mechanical degradation of high voltage cathode and Li metal anode by amorphous lithium silicon oxide coating and hybrid solid electrolytes Save
- Controlling the Potential of Affordable Quasi‐Solid Composite Gel Polymer Electrolytes for High‐Voltage Lithium‐Ion Batteries Save
- Sustainable and efficient energy storage: A sodium ion battery anode from Aegle marmelos shell biowaste Save
- Mitigating the Capacity Degradation by Ion-Electron-Conducting Dual-Layer Coating on a Layered Oxide Cathode Material for Sodium Ion Batteries Save
- Conducting Carbon Rich Graphitic Carbon Nitride Nanosheets with Attached Nano Sulfur Copolymer as High Capacity Cathode for Long‐Lifespan Lithium‐Sulfur Battery Save
- Electrochemical investigation of double layer surface-functionalized Li-NMC cathode with nano-composite gel polymer electrolyte for Li-battery applications Save
- Molybdenum-Doped Li/Mn-Rich Layered Transition Metal Oxide Cathode Material Li1.2Mn0.6Ni0.1Co0.1O2 with High Specific Capacity and Improved Cyclic Stability for Rechargeable Li-Batteries Save
- Electrochemical Performance of High‐Valence Mo 6+ and Low‐Valence Mn 2+ Doped‐ Na 3 V 2 (PO 4 ) 3 @C Cathode f… Save
- High‐Voltage‐driven Li/Mn‐rich Li1.2Mn0.6Ni0.1Co0.1O2 Cathode with nanocomposite blend gel polymer electrolyte for long cyclic stability of rechargeable Li‐battery Save
- Surface modification of nano Na[Ni0.60Mn0.35Co0.05]O2 cathode material by dextran functionalized RGO via hydrothermal treatment for high performance sodium batteries Save