Researcher Portfolio

 
   

Sitti, Metin

Dept. of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA, USA, Dept. Physical Intelligence, Max Planck Institute for Intelligent Systems, Max Planck Society  

 

Researcher Profile

 
Position: Dept. Physical Intelligence, Max Planck Institute for Intelligent Systems, Max Planck Society
Position: Dept. of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA, USA
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons140424

External references

 

Publications

 
  (1 - 25 of 325)
 : Zhang, M., & Sitti, M. (2025). Shape-morphing of metastructures empowering locomotion. Nature Materials, 24(1), 12-13. doi:10.1038/s41563-024-02010-y. [PubMan] : Kim, D. W., Wrede, P., Estrada, H., Yildiz, E., Lazovic, J., Bhargava, A., Razansky, D., & Sitti, M. (2024). Hierarchical Nanostructures as Acoustically Manipulatable Multifunctional Agents in Dynamic Fluid Flow. Advanced Materials, 36(50): 2404514. doi:10.1002/adma.202404514. [PubMan] : Dogan, N. O., Suadiye, E., Wrede, P., Lazovic Zinnanti, J., Dayan, C. B., Soon, R. H., Aghakhani, A., Richter, G., & Sitti, M. (2024). Immune Cell‐Based Microrobots for Remote Magnetic Actuation, Antitumor Activity, and Medical Imaging. Advanced Healthcare Materials, 13(23): 2400711. doi:10.1002/adhm.202400711. [PubMan] : Ersoy, S., Yildiz, E., Ren, Z., Zhang, M., Zhang, H., Karaz, S., Han, M., Shiva, A., Yunusa, M., Kaya, C., Koc, B., & Sitti, M. (2024). Fabrication of Gold Nanoflower-Coated Photosensitive Meta-Structures Using PμSL 3D Printing for Hyperthermia Applications. ACS Applied Polymer Materials, 6(17), 10807-10823. doi:10.1021/acsapm.4c01951. [PubMan] : Demir, S. O., Tiryaki, M. E., Karacakol, A. C., & Sitti, M. (2024). Learning Soft Millirobot Multimodal Locomotion with Sim-to-Real Transfer. Advanced Science, 11(30): 2308881. doi:10.1002/advs.202308881. [PubMan] : Zhang, J., Liao, J., Liu, Z., Zhang, R., & Sitti, M. (2024). Liquid Metal Microdroplet-Initiated Ultra-Fast Polymerization of a Stimuli-Responsive Hydrogel Composite. Advanced Functional Materials, 34(31): 2308238. doi:10.1002/adfm.202308238. [PubMan] : Bozuyuk, U., Wrede, P., Yildiz, E., & Sitti, M. (2024). Roadmap for Clinical Translation of Mobile Microrobotics. Advanced Materials, 36(23): 2311462. doi:10.1002/adma.202311462. [PubMan] : Wang, T., Wu, Y., Yildiz, E., Kanyas, S., & Sitti, M. (2024). Clinical translation of wireless soft robotic medical devices. Nature Reviews Bioengineering, 2, 470-485. doi:10.1038/s44222-024-00156-7. [PubMan] : Leder, S., Kim, H., Sitti, M., & Menges, A. (2024). Enhanced co-design and evaluation of a collective robotic construction system for the assembly of large-scale in-plane timber structures. Automation in Construction, 162: 105390. doi:10.1016/j.autcon.2024.105390. [PubMan] : Ren, Z., Ucak, K., Yan, Y., & Sitti, M. (2024). Undulatory Propulsion at Milliscale on Water Surface. Advanced Science, 11(19): 2309807. doi:10.1002/advs.202309807. [PubMan] : Pena-Francesch, A., Zhang, Z., Marks, L., Cabanach Xifro, P., Richardson, K., Sheehan, D., Mccracken, J., Shahsavan, H., & Sitti, M. (2024). Macromolecular radical networks for organic soft magnets. Matter, 7(4), 1503-1516. doi:10.1016/j.matt.2023.12.015. [PubMan] : Zhang, M., Pal, A., Lyu, X., Wu, Y., & Sitti, M. (2024). Artificial-goosebump-driven microactuation. Nature Materials, 23, 560-569. doi:10.1038/s41563-024-01810-6. [PubMan] : Zhang, M., & Sitti, M. (2024). Perspective on smart materials for empowering small-scale manipulation. Science Bulletin, 69(6), 718-721. doi:10.1016/j.scib.2024.01.017. [PubMan] : Guo, S., De Wolf, S., Sitti, M., Serre, C., & Tan, S. C. (2024). Hygroscopic Materials. Advanced Materials, 36(12): 2311445. doi:10.1002/adma.202311445. [PubMan] : Hong, C., Wu, Y., Wang, C., Ren, Z., Wang, C., Liu, Z., Hu, W., & Sitti, M. (2024). Wireless flow-powered miniature robot capable of traversing tubular structures. Science Robotics, 9(88): eadi5155. doi:10.1126/scirobotics.adi5155. [PubMan] : Han, M., Yildiz, E., Bozuyuk, U., Aydin, A., Yu, Y., Bhargava, A., Karaz, S., & Sitti, M. (2024). Janus microparticles-based targeted and spatially-controlled piezoelectric neural stimulation via low-intensity focused ultrasound. Nature Communications, 15: 2013. doi:10.1038/s41467-024-46245-4. [PubMan] : Ren, Z., & Sitti, M. (2024). Design and build of small-scale magnetic soft-bodied robots with multimodal locomotion. Nature Protocols, 19(2), 441-486. doi:10.1038/s41596-023-00916-6. [PubMan] : Tural, G. A., Bozuyuk, U., Dogan, N. O., Alapan, Y., Akolpoglu, M. B., Aghakhani, A., Lazovic Zinnanti, J., Ozer, O., & Sitti, M. (2024). Magnetic Mesoporous Janus Microrollers for Combined Chemo- and Photothermal Ablation Therapy. Advanced Therapeutics, 7(2): 22300319. doi:10.1002/adtp.202300319. [PubMan] : Dayan, C. B., Son, D., Aghakhani, A., Wu, Y., Demir, S. O., & Sitti, M. (2024). Machine Learning-Based Shear Optimal Adhesive Microstructures with Experimental Validation. Small, 20(2): 2304437. doi:10.1002/smll.202304437. [PubMan] : Liao, J., Majidi, C., & Sitti, M. (2024). Liquid Metal Actuators: A Comparative Analysis of Surface Tension Controlled Actuation. Advanced Materials, 36(1): 2300560. doi:10.1002/adma.202300560. [PubMan] : Byun, J., Pal, A., Ko, J., & Sitti, M. (2024). Integrated mechanical computing for autonomous soft machines. Nature Communications, 15: 2933. doi:10.1038/s41467-024-47201-y. [PubMan] : Lyu, X., Zheng, Z., Shiva, A., Han, M., Dayan, C. B., Zhang, M., & Sitti, M. (2024). Capillary trapping of various nanomaterials on additively manufactured scaffolds for 3D micro-/nanofabrication. Nature Communications, 15: 6693. doi:10.1038/s41467-024-51086-2. [PubMan] : Lazovic Zinnanti, J., Goering, E., Wild, A.-M., Schützendübe, P., Shiva, A., Löffler, J., Winter, G., & Sitti, M. (2024). Nanodiamond-Enhanced Magnetic Resonance Imaging. Advanced Materials, 36(11): 2310109. doi:10.1002/adma.202470085. [PubMan] : Sun, M., Sun, B., Park, M., Yang, S., Wu, Y., Zhang, M., Kang, W., Yoon, J., Zhang, L., & Sitti, M. (2024). Individual and collective manipulation of multifunctional bimodal droplets in three dimensions. Science Advances, 10(29): eadp1439. doi:10.1126/sciadv.adp1439. [PubMan] : Werneck, L., Han, M., Yildiz, E., Keip, M.-A., Sitti, M., & Ortiz, M. (2024). A simple quantitative model of neuromodulation, Part I: Ion flow through neural ion channels. Journal of the Mechanics and Physics of Solids, 182: 105457. doi:10.1016/j.jmps.2023.105457. [PubMan]