Fakhre Alam Khan
Papers
1
Total Citations
55
H-Index
1
About
Dr. Fakhre Alam Khan is a leading figure in advanced materials science, with a primary focus on the design and fabrication of high-performance nanocomposites for flexible electronics and sensor technologies. His most impactful work centers on developing novel, highly conductive, and elastic graphene oxide (GO)-based sponges. In his seminal 2018 paper, "Silver Nanoflower Decorated Graphene Oxide Sponges for Highly Sensitive Variable Stiffness Stress Sensors," Dr. Khan overcame a critical limitation of GO sponges—their inherently low conductivity and elasticity. By decorating the sponge architecture with silver nanoflowers, he created a material that maintains exceptional electrical performance even under large deformations. This breakthrough, which has garnered 55 citations, demonstrates his ability to engineer materials with tunable stiffness for next-generation stress sensors. Dr. Khan’s contributions are pivotal for the advancement of wearable electronics, soft robotics, and biomedical sensing, establishing him as an innovator in creating smart, responsive materials that bridge the gap between mechanical flexibility and electronic functionality.
Research Focus
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Top Papers
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