Volltext-Downloads (blau) und Frontdoor-Views (grau)

Pressing of Functionalized Polymer Composite Materials to Improve Mössbauer Measurement Signals

  • Coordination compounds, like iron(II) triazole complexes, exhibit spin crossover (SCO) behavior at around room temperature. Therefore, they are interesting for a variety of possible applications, and it is convenient to integrate them into polymers. Due to a reduction of the iron content and thus also 57Fe content in the sample through integration in polymers, Mössbauer measurements are only possible with greater difficulty or very long measurement times without expensive enrichment of the samples with 57Fe. So, other ways of improving the Mössbauer signal for these composite materials are necessary. Therefore, we pressed these composite materials to improve the Mössbauer spectra. In this study, we synthesized an iron(II) triazole spin crossover complex and an electrospun polymer complex composite nanofiber material including the same complex. For both products, Mössbauer measurements were performed at room temperature before and after using a press to show that the complex composite is not harmed through pressing. We investigate the influence of the pressing impact on the Mössbauer measurements in the context of measurement statistics and the measured signals. We show that pressing is not connected to any changes in the sample regarding the spin and oxidation state. We present that pressing improves the statistics of the Mössbauer measurements significantly. Furthermore, we use SEM measurements and PXRD to investigate whether or not the obtained fiber mats are destroyed in the pressing process.

Download full text files

Export metadata

Additional Services

Search Google Scholar

Statistics

frontdoor_oas
Metadaten
Author:Justus Pawlak, Jules Brehme, Maximilian Seydi KilicORCiD, Kevin Tran, Justin Koch, Mohammad BeykiORCiD, Ralf SindelarORCiDGND, Robert Patzke, Franz RenzORCiD
URN:urn:nbn:de:bsz:960-opus4-31577
DOI:https://doi.org/10.25968/opus-3157
DOI original:https://doi.org/10.3390/polym16101311
ISSN:2073-4360
Parent Title (English):Polymers
Publisher:MDPI
Document Type:Article
Language:English
Year of Completion:2024
Publishing Institution:Hochschule Hannover
Release Date:2024/07/03
Tag:Mössbauer; composites; coordination chemistry; electrospinning; molecular switch; nanofiber; pellet; triazole complexes
GND Keyword:Nanofaser; Elektrospinnen; Mößbauer-Spektroskopie; Spin Crossover; Verbundwerkstoff; Koordinationslehre
Volume:16
Issue:10
Article Number:1311
Page Number:9
Link to catalogue:1909458023
Institutes:Fakultät I - Elektro- und Informationstechnik
Fakultät II - Maschinenbau und Bioverfahrenstechnik
DDC classes:660 Technische Chemie
Licence (German):License LogoCreative Commons - CC BY - Namensnennung 4.0 International