Alexander Feuerborn
Papers
2
Total Citations
19
H-Index
2
About
Alexander Feuerborn is a researcher whose work focuses on microfluidics, droplet manipulation, and membrane biophysics, with particular emphasis on developing accessible, low-cost experimental techniques using simple laboratory equipment. His most notable contributions center on harnessing the unique properties of Teflon tubing combined with syringe pumps to perform sophisticated fluidic operations without the need for complex microfabrication infrastructure. In his most cited work (2015, 11 citations), Feuerborn demonstrated elegant methods for merging and transferring fluid between droplets within a Teflon tube, showcasing practical applications in protein crystallization and drug screening — fields where precise small-volume manipulation is critically important. Building on this foundation, his 2016 paper (8 citations) extended the approach to the formation of droplet interface bilayers (DIBs), structures with broad relevance across biology and biocomputing. Notably, he emphasized the accessibility of the method, making it viable for researchers without specialized microfluidics expertise. Feuerborn's research is characterized by a philosophy of democratizing advanced experimental techniques, lowering the barrier to entry for cutting-edge droplet-based science and opening these powerful tools to a wider scientific community.
Research Focus
Key Achievements
Top Papers
- 1
- 2Formation of droplet interface bilayers in a Teflon tube8 citations · 2016