activity
20172020
most citedAn NMR-compatible microfluidic platform enabling in situ electrochemistry

19 citations · 37 across the 4 of their papers we have counts for

collaborators

5 papers

physics.ins-det202018 cited

Integrated impedance sensing of liquid sample plug flow enables automated high throughput NMR spectroscopy

Omar Nassar, Mazin Jouda, Michael Rapp +3

A novel approach for automated high throughput NMR spectroscopy with improved mass-sensitivity is accomplished by integrating microfluidic technologies and micro-NMR resonators. A…

physics.app-ph202019 cited

An NMR-compatible microfluidic platform enabling in situ electrochemistry

Hossein Davoodi, Nurdiana Nordin, Lorenzo Bordonali +3

Combining microfluidic devices with nuclear magnetic resonance (NMR) has the potential of unlocking their vast sample handling and processing operation space for use with the power…

physics.app-ph2019

"Small is beautiful" in NMR

Jan G. Korvink, Neil MacKinnon, Vlad Badilita +1

In this prospective paper we consider the opportunities and challenges of miniaturized nuclear magnetic resonance. As the title suggests, (irreverently borrowing from E.F. Schumach…

q-bio.QM2017

Microscale magnetic resonance detectors: a technology roadmap for in vivo metabolomics

Jan G. Korvink, Neil MacKinnon

One of the great challenges in biology is to observe, at sufficient detail, the real-time workings of the cell. Many methods exist to do cell measurements invasively. For example,…

q-bio.QM2017

NMR microscopy for in vivo metabolomics, digitally twinned by computational systems biology, needs a sensitivity boost

Jan G. Korvink, Vlad Badilita, Lorenzo Bordonali +3

The metabolism of an organism is regulated at the cellular level, yet is strongly influenced by its environment. The precise metabolomic study of living organisms is currently hamp…