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Autori principali: Bräuninger, Sascha Albert, Motz, Damian Alexander, Praetz, Sebastian, Seewald, Felix, Strecker, Katharina, Vogt, Carla, Klauss, Hans-Henning, Kanngießer, Birgit, Seifert, Hermann
Natura: Preprint
Pubblicazione: 2026
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Accesso online:https://arxiv.org/abs/2601.03313
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author Bräuninger, Sascha Albert
Motz, Damian Alexander
Praetz, Sebastian
Seewald, Felix
Strecker, Katharina
Vogt, Carla
Klauss, Hans-Henning
Kanngießer, Birgit
Seifert, Hermann
author_facet Bräuninger, Sascha Albert
Motz, Damian Alexander
Praetz, Sebastian
Seewald, Felix
Strecker, Katharina
Vogt, Carla
Klauss, Hans-Henning
Kanngießer, Birgit
Seifert, Hermann
contents Ammonium ferric hexacyanoferrate is a veterinary-medical milestone and antidote against radiocesium, well-known as Giese-salt after the Chernobyl disaster fed to domestic and wild animals, which shows even a rich interplay of properties in nanostructural chemistry and ferromagnetism. Among the broad analytical techniques, the ambivalence of macroscopic micrometer-sized agglomerates and nanoparticle sizes, a suggested enlarged Fe(II)$-$C$\equiv$N$-$Fe(III) bond length by Fe K-edge XAFS results and multi-level spin relaxation in $^{57}$Fe Mössbauer spectroscopy are highlighted. This sets this underestimated compound in a new light, e.g., for modern biomedicine and biofunctionality, extending its essential importance in addition to hypothetical future nuclear incidents
format Preprint
id arxiv_https___arxiv_org_abs_2601_03313
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Fine and Hyperfine Interactions with Multi-level Spin Relaxation of the purified Giese-Salt in Veterinary Medicine: Prussian Blue Compound Ammonium-Ferric-Hexacyano-Ferrate
Bräuninger, Sascha Albert
Motz, Damian Alexander
Praetz, Sebastian
Seewald, Felix
Strecker, Katharina
Vogt, Carla
Klauss, Hans-Henning
Kanngießer, Birgit
Seifert, Hermann
Materials Science
Medical Physics
Ammonium ferric hexacyanoferrate is a veterinary-medical milestone and antidote against radiocesium, well-known as Giese-salt after the Chernobyl disaster fed to domestic and wild animals, which shows even a rich interplay of properties in nanostructural chemistry and ferromagnetism. Among the broad analytical techniques, the ambivalence of macroscopic micrometer-sized agglomerates and nanoparticle sizes, a suggested enlarged Fe(II)$-$C$\equiv$N$-$Fe(III) bond length by Fe K-edge XAFS results and multi-level spin relaxation in $^{57}$Fe Mössbauer spectroscopy are highlighted. This sets this underestimated compound in a new light, e.g., for modern biomedicine and biofunctionality, extending its essential importance in addition to hypothetical future nuclear incidents
title Fine and Hyperfine Interactions with Multi-level Spin Relaxation of the purified Giese-Salt in Veterinary Medicine: Prussian Blue Compound Ammonium-Ferric-Hexacyano-Ferrate
topic Materials Science
Medical Physics
url https://arxiv.org/abs/2601.03313