Daniel Ahmed

ETH Zurich

Papers

16

Total Citations

1,251

H-Index

13

About

Daniel Ahmed is a pioneering researcher at the intersection of microrobotics, acoustics, and magnetic systems, whose work is reshaping how scientists and engineers think about small-scale machines and their biomedical applications. Based on a portfolio of highly cited publications, Ahmed has made landmark contributions to the design and control of micro- and nanorobots driven by external power sources, including acoustic and magnetic fields. His 2020 study on magnetic cilia carpets with programmable metachronal waves (327 citations) demonstrated elegant biomimicry at the microscale, unlocking new possibilities for fluid transport and cell delivery. Complementing this, his influential 2018 review on externally powered small-scale machines (264 citations) has become a foundational reference for researchers entering the field. Ahmed's work extends to bioinspired microswarm robots capable of upstream motility, acoustofluidic laboratory tools, interlocked 3D multi-material micromachines, and most recently, acoustically assisted volumetric 3D printing. His 2024 review on medical microrobots underscores his growing influence in translational medicine. With over 900 cumulative citations across a decade of research, Ahmed represents a leading voice in the future of minimally invasive, wirelessly controlled microscale technologies.

Research Focus

Key Achievements

13
H-Index
16
Papers
1,251
Total Citations
78
Avg Citations/Paper
🏆 Most Cited Paper
Magnetic cilia carpets with programmable metachronal waves
327 citations · 2020
📈 Most Prolific Year: 2024 (4 Papers)
🤝 Key Collaborators: 59
🏛 Institutions: ETH Zurich

Top Papers

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    Medical Microrobots
    59 citations · 2024
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Key Collaborators

Contact & Links

Available for collaboration
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