Materials & Energyarticle2026-08-03

Synchrotron‐Based X‐Ray Tomography of Strontium Phosphate Chemical Gardens

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Abstract

ABSTRACT While self‐organized precipitation processes result in alluring, complex structures, such as chemical gardens, many questions about the mechanism of growth remain unanswered. One of the reasons for this is the limitations in characterization techniques. Traditional techniques either cannot enable in situ observations or cannot achieve high spatial resolution. Therefore, we propose a new method, herein referred to as synchrotron‐based X‐ray tomography, to address both challenges. Indeed, the results demonstrate sub‐micron‐resolution details of strontium phosphate gardens grown from a gel/liquid interface, reflecting a buoyancy‐linked growth mechanism and the mineralization of the tubes, leading to the thickening of the tube walls.

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View paper (DOI)Open access versionOpenAlexChemSystemsChemPublished 2026-08-03

Authors: Tan‐Phat Huynh, Emilia Ares, Parastoo Vahdatiyekta, Anne Marie Møller Faaborg, Henrik Birkedal, Thorbjørn Erik Køppen Christensen

Institutions: Lund University, Aarhus University, Åbo Akademi University, Danish Technological Institute, MAX IV Laboratory, Danish Geotechnical Society, Danish Academy of Technical Sciences