People
Dr.-Ing. Laura Maria Comella
Responsible Investigator
Research Area A
Professor at the Faculty of Mechanical Engineering and Mechatronics
University of Applied Sciences Karlsruhe
Phone: +49 761 203 7497
Email: laura.comella@h-ka.de
Areas of Expertise
Sensors development and integration | Sensor networks | Embedded system design | Intelligent algorithms
Projects within livMatS
Doctoral Researchers
Publications in livMatS
- A Miniaturised Device with Programmable Excitation Signal for the Inductive Coupling with LC Circuits and Sensors
Lehmann, C., Winnerman Agbozo, S., Woias, P., & Comella, L. (2026). A Miniaturised Device with Programmable Excitation Signal for the Inductive Coupling with LC Circuits and Sensors. Chips, 2026, 5(2), 16. doi: 10.3390/chips5020016 - Soft Mechanical-Electrical Logic Using Liquid Metal-Filled 3D-Printed Architectures*
Lehmann, C., Kalgreen, R., & Comella, L. M. (2026). Soft Mechanical-Electrical Logic Using Liquid Metal-Filled 3D-Printed Architectures. Advanced Engineering Materials, 0, e202600014, doi: 10.1002/adem.202600014. - Pressure sensing and its wireless readout enabled by controlled liquid metal manipulation*
Lehmann, C., Winnerman Agbozo, S., & Comella, L. M. (2026). Pressure sensing and its wireless readout enabled by controlled liquid metal manipulation. Sensors and Actuators A: Physical, Vol. 408, 117982, doi: 10.1016/j.sna.2026.117982. - Pressure Sensing and Multi-Resolution Kinetic Modeling of Oxygen-Releasing Compounds*
Sharma, A., livmats.uni-freiburg.de/en/people/phd-and-postdoc-students/vanessa-barth Barth, V., Jessen, H. J., & Comella, L. M. (2025). Pressure Sensing and Multi-Resolution Kinetic Modeling of Oxygen-Releasing Compounds. 2025 IEEE SENSORS, 1–4. doi: 10.1109/SENSORS59705.2025.11330468 - Pressure Sensing and Kinetic Modeling of Oxygen-Releasing Endoperoxides for Chemically Driven Micro-Actuation*
Sharma, A., Barth, V., Jessen, H. J., & Comella, L. M. (2025). Pressure Sensing and Kinetic Modeling of Oxygen-Releasing Endoperoxides for Chemically Driven Micro-Actuation. ACS Omega. doi: 10.1021/acsomega.5c07255 - Pressure Sensing and Kinetic Modeling of Oxygen-Releasing Endoperoxides for Chemically Driven Micro-Actuation*
Sharma, A., Barth, V., Jessen, H. J., & Comella, L. M. (2025). Pressure Sensing and Kinetic Modeling of Oxygen-Releasing Endoperoxides for Chemically Driven Micro-Actuation. ACS Omega. doi: 10.1021/acsomega.5c07255 - Oxygen sensor system: Real-time absorbance-based monitoring system for tracking oxygen release from tunable anthracene-endoperoxide molecules*
Sharma, A., Barth, V., Jessen, H., & Comella, L. (2025). Oxygen sensor system: Real-time absorbance-based monitoring system for tracking oxygen release from tunable anthracene-endoperoxide molecules. Sensors and Actuators B: Chemical, Vol. 446, 138667. doi: 10.1016/j.snb.2025.138667 - A Pressure-Driven Microfluidic Electrical Switch Array Embedded in a Flexible Matrix*
Lehmann, C., Usama. A., Hou, P., Rapp, B.E., & Comella, L. M. (2025). A Pressure-Driven Microfluidic Electrical Switch Array Embedded in a Flexible Matrix. IEEE International Conference on Flexible and Printable Sensors and Systems (FLEPS), Singapore, pp. 1-4, doi: 10.1109/FLEPS65444.2025.11105621. - Surface roughness in microfluidic device fabrication: limitations of conventional methods and a novel solution for multi-material bonding*
Lehmann, C., Singh, D., Gastearena, M., & Comella, L. M. (2025). Surface roughness in microfluidic device fabrication: limitations of conventional methods and a novel solution for multi-material bonding. RSC Advances, 15, 19254-19262. doi: 10.1039/D5RA02701B - A Portable Optical Sensor for Real-time Absorbance Characterization of Tunable Anthracene-Endoperoxides*
Sharma, A., Barth, V., Jessen, H., & Comella, L. M. (2024). A Portable Optical Sensor for Real-time Absorbance Characterization of Tunable Anthracene-Endoperoxides. EASS – Energieautonome Sensorsysteme 2024; 12. GMM-Tagung, 18-20. - Stretchable printed circuit boards using a silicone substrate of variable stiffness and conventional PCB fabrication methods*
Jamali, A., Lehmann, C., Aditya, R. T., Goldschmidtboeing, F., Woias, P. & Comella, L. M. (2024). Stretchable printed circuit boards using a silicone substrate of variable stiffness and conventional PCB fabrication methods. Flex. Print. Electron., 9, 045005. doi: 10.1088/2058-8585/ad8242 - Exploiting Stiff PDMS Islands to Enhance Stretchable Printed Circuit Boards*
Lehmann, C., Jamali, A., Prakash, K. S., Agbozo, S. W., & Comella, L. M. (2024). Exploiting Stiff PDMS Islands to Enhance Stretchable Printed Circuit Boards. 2024 IEEE International Conference on Flexible and Printable Sensors and Systems (FLEPS), 1–4. doi: 10.1109/FLEPS61194.2024.10603583