2026
article
OpenAlex
Aakriti Aggarwal, Siddhartha Dan, Mahesh Kumar Sah
The need for efficient biomaterials that can promote bone regeneration is driven by the fact that bone defects incurred by illness, trauma, or ageing continue to be a significant clinical challenge. Recently, the avian eggshell membrane (ESM) has drawn interest as a …
in
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Accès ouvert
2026
conference-abstract
OpenAlex
Aakriti Aggarwal, Wenrui Chai, Graeme Henkelman, Jingxu Kent Zheng
Growth of classical dendrites in metal anodes represents a far-from-equilibrium, diffusion-limited crystallization process that critically impacts the safety and performance of energy storage systems. Zn—a promising aqueous anode material—exhibits two distinct modes: continuous growth (CG), where a few crystallographically guided dendrites propagate …
us, ru
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2026
conference-abstract
OpenAlex
Lubhani Mishra, Tushar Khemraj Telmasre, Wen‐Yang Jao, Aakriti Aggarwal et autres
The formation and evolution of metal anode–electrolyte interfaces play a critical role in the performance and safety of next-generation batteries, particularly those utilizing metal anodes such as alkali metals. In this study, we present a two-dimensional moving boundary model to simulate the …
us, tw, ru
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Accès ouvert
2026
article
OpenAlex
Wen‐Yang Jao, Dina Sheyfer, Jean‐Sébastien Micha, Aakriti Aggarwal et autres
Abstract Dendritic growth is a major cause of battery failure, occurring under diffusion-limited conditions regardless of material crystallinity. We developed an operando visualization setup─complemented by post-mortem analysis using microscopy and synchrotron scattering─to study electrochemical dendrite growth of metals with spatiotemporal resolution. Using …
tw, us, fr
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Accès ouvert
2026
article
OpenAlex
Chetna Khokhar, J Mohitha Reddy, B. S. Ravishankar, Mahesh Pathak et autres
As the global agricultural sector navigates the year 2026, the shift toward sustainable, chemical-free production has moved from a peripheral movement to a central scientific priority. Conventional entomology is currently undergoing a transformative phase, driven by the limitations of broad-spectrum synthetic pesticides …
in
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Accès ouvert
2026
article
OpenAlex
Aakriti Aggarwal, Wenrui Chai, Graeme Henkelman, Kent J. X. Zheng
Growth of classical dendrites in metal anodes represents a far-from-equilibrium, diffusion-limited crystallization process that critically impacts the safety and performance of energy storage systems.
us
(code pays fourni par la source)
2025
article
OpenAlex
Wen‐Yang Jao, Aakriti Aggarwal, Tushar Khemraj Telmasre, Lubhani Mishra et autres
Developing resilient aqueous energy storage systems, such as Zn batteries, is essential for advancing energy sustainability. A key challenge in these systems is the dendritic growth of metals, which causes poor rechargeability in battery electrodes. Classical diffusion-limited dendritic growth is predicted to …
tw, us
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Accès ouvert
2025
article
OpenAlex
Tushar Khemraj Telmasre, Lubhani Mishra, Wen‐Yang Jao, Aakriti Aggarwal et autres
The evolution of metal anode–electrolyte interfaces critically impacts the safety and performance of metal anode batteries. We present a two-dimensional moving boundary model that simulates zinc anode morphology under high discharge–low charge (HD–LC) and low discharge–low charge (LD–LC) protocols. The model predicts …
us, tw
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Accès ouvert
2025
preprint
OpenAlex
Wen‐Yang Jao, Dina Sheyfer, Jean‐Sébastien Micha, Aakriti Aggarwal et autres
Dendritic growth is a major cause of battery failure, occurring under diffusion-limited conditions regardless of material crystallinity. We developed an operando visualization setup—complemented by post-mortem analysis using microscopy and synchrotron scattering—to study electrochemical dendrite growth of metals with spatiotemporal resolution. Using Zn …
tw, us, fr
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Wen‐Yang Jao, Aakriti Aggarwal, Tushar Telmasre, Lubhani Mishra et autres
Abstract: Developing resilient aqueous energy storage systems, such as Zn batteries, is essential for advancing energy sustainability powered by renewable sources. A key challenge in these systems is the dendritic growth of metals, which causes internal short circuits and poor rechargeability in …
tw, us
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Wen‐Yang Jao, Aakriti Aggarwal, Tushar Telmasre, Lubhani Mishra et autres
Abstract: Developing resilient aqueous energy storage systems, such as Zn batteries, is essential for advancing energy sustainability powered by renewable sources. A key challenge in these systems is the dendritic growth of metals, which causes internal short circuits and poor rechargeability in …
tw, us
(code pays fourni par la source)
2025
article
OpenAlex
Aakriti Aggarwal, Lajpreet Kaur, Debasish Nath, Himanshu Ojha et autres
Tissue engineering has emerged as a promising alternative for bone repair. Avian eggshell membrane stands out among potential biomaterials due to its low immunogenicity, similarity to the extracellular matrix, and widespread availability. This study focuses on developing a bone ingrowth support system …
in
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