Ankur Solanki
Papers
3
Total Citations
31
H-Index
3
About
Ankur Solanki is a rising leader in the field of emerging memory technologies, with a primary focus on hybrid organic-inorganic perovskites for neuromorphic computing. His research centers on engineering novel memristive devices that emulate biological synapses and sensory neurons, aiming to overcome the energy and speed limitations of traditional von Neumann architectures. Solanki’s most influential work, a 2023 study on Dion-Jacobson perovskite-based memristors (22 citations), systematically investigates how interfacial layers control resistive switching, enabling multilevel data storage and low-power in-memory computing. He has further advanced the field by demonstrating the first BDAPbI₄ Dion-Jacobson perovskite artificial nociceptors on biodegradable substrates, a breakthrough for sustainable, bio-inspired electronics. His 2025 study on fluorinated Ruddlesden–Popper perovskites (4 citations) explores diffusive memristors for nociceptor applications, highlighting the role of halogen engineering in tuning device dynamics. Collectively, Solanki’s work bridges materials chemistry and device physics, establishing design rules for next-generation, energy-efficient computing systems that mimic the human nervous system.
Research Focus
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Top Papers
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