Andreas Frantzen
Papers
1
Total Citations
22
H-Index
1
About
Andreas Frantzen is a materials scientist whose work bridges synthetic chemistry and sensor technology, with a primary focus on resistive gas sensing. His most cited contribution, "Wet Chemical Synthesis and Screening of Thick Porous Oxide Films for Resistive Gas Sensing Applications" (2006, 22 citations), introduced a pioneering method for high-throughput, combinatorial synthesis of porous metal oxide films. By developing a robot-controlled process to apply unstable oxide suspensions onto 64-electrode arrays, Frantzen enabled rapid screening of thick-film gas sensors—a significant leap from traditional one-by-one fabrication. This approach not only accelerated materials discovery but also improved sensor performance through controlled porosity and film thickness. Though his citation count is modest, his work is foundational for researchers seeking scalable, reproducible routes to functional oxide layers. Frantzen’s contribution stands out for its practical ingenuity: merging wet chemistry with automation to tackle the bottleneck of sensor material optimization. For students and researchers in gas sensing or combinatorial materials science, his method remains a reference point for designing efficient, high-throughput experimental workflows.
Research Focus
Key Achievements
Top Papers
- 1