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Updated: Aug 20, 2026

A Microfluidic Platform to Investigate Microbial Precipitation of Metal Oxides in Porous Media
Published on: June 12, 2026
A novel BioXAS technique with sub-millisecond time resolution to track oxidation state and structural changes at
Michael Haumann1, Claudia Müller, Peter Liebisch
1Freie Universität Berlin, FB Physik, Arnimallee 14, D-14195 Berlin, Germany. haumann@physik.fu-berlin.de
Abstract:
Oxidation-state and structural changes at the metal center are crucial for the catalytic reactions of most metalloenzymes. The characterization of reaction intermediates is a prerequisite for understanding the catalytic mechanism. Frequently, intermediates are formed on the microsecond to millisecond timescale. To follow these reactions in real time represents a major challenge in structural biology. Time-resolved BioXAS is a particularly promising tool for resolving such intermediates. A novel approach for BioXAS, termed 'sampling-XAS', is presented. First room-temperature sampling-XAS results have been obtained for the manganese complex of oxygenic photosynthesis. Oxidation-state changes are monitored with a time resolution as good as 200 micros. The current prospects and limitations as well as future perspectives of time-resolved BioXAS are discussed.

