Uploaded May 2026 | Updated September 2026, 2 weeks ago
Moulie Ghosh’s research at Ahmedabad University addresses the need for next-generation energy storage by developing advanced anode materials to improve lithium-ion battery performance and sustainability.
As she graduates at the 16th Annual Convocation, she reflects on her journey of transforming waste laboratory glass into valuable silicon nanomaterials for battery applications. Her research explored how silicon, despite its high energy storage capacity, faces challenges, including rapid performance degradation during battery cycling.
To address these limitations, Moulie developed a silicon-carbon nanofiber composite that improved the battery’s structural stability, electrochemical performance, and cycling efficiency. Her work also highlighted the potential of sustainable, circular approaches in materials science by repurposing waste materials into advanced energy technologies.
By combining sustainability with innovation in energy storage, Moulie’s research contributes to the development of more efficient lithium-ion batteries for future applications. We wish Moulie the very best on the journey ahead and look forward to seeing her research advance sustainable energy technologies.
Moulie Ghosh’s research at Ahmedabad University addresses the need for next-generation energy storage by developing advanced anode materials to improve lithium-ion battery performance and sustainability.
As she graduates at the 16th Annual Convocation, she reflects on her journey of transforming waste laboratory glass into valuable silicon nanomaterials for battery applications. Her research explored how silicon, despite its high energy storage capacity, faces challenges, including rapid performance degradation during battery cycling.
To address these limitations, Moulie developed a silicon-carbon nanofiber composite that improved the battery’s structural stability, electrochemical performance, and cycling efficiency. Her work also highlighted the potential of sustainable, circular approaches in materials science by repurposing waste materials into advanced energy technologies.
By combining sustainability with innovation in energy storage, Moulie’s research contributes to the development of more efficient lithium-ion batteries for future applications. We wish Moulie the very best on the journey ahead and look forward to seeing her research advance sustainable energy technologies.










