THREE PILLARS, ONE GOAL – The Nanoelectronics and Biosensing Lab develops advanced technologies at the intersection of nanoelectronics, materials science, biology and integrated sensing systems.
Our research is organized into three interconnected research pillars:
Our Vision
Our vision is to bridge fundamental research and real-world impact
We develop innovative biosensors at the intersection of nanoelectronics, materials science, biointerfaces, and integrated systems – for better health and a sustainable future.
More about our research
Bachelor
Enrolling for open entry courses Applications for transferring from another university or to change degree course
Application deadlines
August 31st for the winter semester
February 28th for the summer semester
Note
Please make sure to register for the aptitude test if applying for Architecture, Interior Design or Virtual Desig
Project Flyer
Prof. Dr. Monika Saumer Hochschule Kaiserslautern University of Applied Sciences Amerikastraße 1 66482 Zweibrücken Germany +49 631/3724-5420 Monika.Saumer@hs-kl.de Go to Profile Dr. Anette Britz-Grell Hochschule Kaiserslautern Universi
News
Visit to Nanoscribe
On July 30, 2026, the 3D-Life team visited Nanoscribe GmbH in Eggenstein-Leopoldshafen. The focus of the visit was on printing test structures, which are to be reproduced and compared once the equipment intended for the project is up and running.
In addition to practical insights into the printing process, the softwa
The overarching goal of the research space and the training program is to build subject-specific knowledge and interdisciplinary expertise among early-career researchers in order to develop innovative solutions at the intersections of process engineering, electrical engineering, and life sciences for current and future challenges, particularly
The 3D-Life project focuses on developing innovative three-dimensional microstructures and switchable microfilters for cell filtration for advanced cell research. Two-photon lithography (2PL) is used to produce high-precision, switchable, biocompatible 3D components that enable cultivation in a nature-like environment and gentle handling of cells