Ankit Verma
Engineering · Purdue University West Lafayette
Publications
111
Citations
3,608
Est. group size
—
Recurring co-author estimate
Active years
30
Publishing since 1997
Ankit Verma's research focuses on lithium-ion battery materials, particularly silicon anodes, electrolyte formulations, and the mechanical and chemical degradation processes that affect battery lifespan. The work combines experimental electrochemical analysis with machine learning methods to predict battery performance and guide materials processing, such as recycling graphite anodes. Some publications also touch on unrelated topics like composite materials wear testing and organic chemistry synthesis, suggesting either broad collaboration or a shared author name across fields.
Publication output peaked around 2020 (23 papers) and has since settled into a steadier pattern of roughly 7-10 publications per year through 2024-2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Investigation on dry sliding wear characterisation of (Al7075-fly ash) composite using Taguchi approach
International Journal of Materials Engineering Innovation · 2026
- Hydrazone‐Based Robust Porous Organic Polymer as a Heterogeneous Hydrogen‐Bond Donor Organocatalyst for the Cascade‐Type One‐Pot Synthesis of Tetrahydrobenzo[ <scp>b</scp> ]pyrans
Journal of Applied Polymer Science · 2026
- Trapping the Degradation Cycle: Vinylene Carbonate-Rich Electrolytes for Silicon Anode Enable High Performance with Minimal Electrolyte Degradation in Large-Scale Pouch Cell Formats
ECS Meeting Abstracts · 2026
- Linking the Role of Electrolyte Components to Silicon Surface Passivity and Solvation Structure
ECS Meeting Abstracts · 2026
- Machine Learning Guided Processing and Electrochemical Analysis of Recycled Graphite Anodes for Li-Ion Batteries
ECS Meeting Abstracts · 2026
- Early Calendar Life and State-of-Health Prediction of Silicon Batteries via Machine Learning with Uncertainty Quantification
ECS Meeting Abstracts · 2026
- The Origin of Improved Performance in Boron‐Alloyed Silicon Nanoparticle‐Based Anodes for Lithium‐Ion Batteries
Advanced Energy Materials · 2025
- The effect of nanoparticle size on calendar and cycle lifetimes of silicon anode lithium-ion batteries
EES batteries. · 2025
- Surprising Relationship between Silicon Anode Calendar Aging and Electrolyte Components in a Localized High-Concentration Electrolyte System
ACS Applied Materials & Interfaces · 2025
- Solvent-Free Melt-Processed Cathode Mitigates Li Anode Instability in Polymer-Based Solid-State Batteries
ACS Energy Letters · 2025
- Multi-phase characterization of pitch-carbon coated nano-silicon anodes for lithium-ion batteries
Nano Energy · 2025
- High tensile alloy of copper to mitigate current collector deformation in silicon electrodes for lithium-ion batteries
Journal of Power Sources · 2025
- High Tensile Alloy of Copper to Mitigate Current Collector Deformation in Silicon Electrodes for Lithium-Ion Batteries
SSRN Electronic Journal · 2025
- Silicon Nanoparticle Size and Electrode Mechanical Integrity in Lithium-Ion Batteries
ECS Meeting Abstracts · 2025
- Shear Buckling Strength of Steel Girder with Trapezoidal Corrugated Web
Lecture notes in civil engineering · 2025
- ECS Meeting Abstracts×27
- Journal of The Electrochemical Society×13
- ACS Energy Letters×7
- ChemRxiv×7
- ACS Applied Materials & Interfaces×5
- Susmita Sarkar
Engineering · Purdue University West Lafayette
- Partha P. Mukherjee
Engineering · Purdue University West Lafayette
- Abhinand Ayyaswamy
Engineering · Purdue University West Lafayette
- Soohwan Kim
Engineering · Purdue University West Lafayette
- Bairav S. Vishnugopi
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile