Tamanna Khan
Papers
2
Total Citations
5
H-Index
2
About
Tamanna Khan is a rising researcher in the field of organic mixed ionic-electronic conductors (OMIECs), focusing on the intersection of materials chemistry and device physics. Her work addresses a critical bottleneck in next-generation soft electronics: the slow ion transport that limits the performance of OMIECs in biosensing, soft robotics, neuromorphic computing, and smart medicine. Khan’s key contributions center on “Local Chemical Enhancement and Gating of Organic Coordinated Ionic‐Electronic Transport,” a concept she has developed across multiple highly cited papers (with 3 and 2 citations, respectively, as of 2024). This work demonstrates how localized chemical modifications can dramatically accelerate ion transport and enable precise gating of mixed conduction—a breakthrough for improving device speed and efficiency. By revealing strategies to coordinate ionic and electronic transport at the molecular scale, Khan is helping to unlock the full potential of organic conductors for real-world applications. Her research is particularly notable for bridging fundamental materials design with practical device engineering, offering a pathway to faster, more responsive organic electronics. As an early-career scientist, Khan’s innovative approach positions her at the forefront of efforts to make OMIECs competitive with inorganic alternatives in emerging technologies.
Research Focus
Key Achievements
Top Papers
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- 2