Matthias Bartel
Vienna University of Technology
5 Papers
158 Citations
Matthias Bartel is an academic researcher from Vienna University of Technology. The author has contributed to research in topics: Spin crossover & Spin transition. The author has an hindex of 5, co-authored 5 publications. Previous affiliations of Matthias Bartel include University of Florence.
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Papers
Both Spacer Length and Parity Influence the Thermal and Light‐Induced Properties of Iron(II) α,ω‐Bis(tetrazole‐1‐yl)alkane Coordination Polymers
Alina Absmeier,Alina Absmeier,Matthias Bartel,Matthias Bartel,Chiara Carbonera,Guy N. L. Jameson,Peter Weinberger,Andrea Caneschi,Kurt Mereiter,Jean-François Létard,Wolfgang Linert +10 more
TL;DR: In this paper, a series of [mu-tris-{1,n-bis(tetrazol-1-yl)alkane-N4,N4'}iron(II)] bis(perchlorate) spin-crossover coordination polymers ([Fe(nditz)3](ClO4)2]; n = 4-9] has been synthesised and characterised.
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Modification of spin crossover behavior through solvent assisted formation and solvent inclusion in a triply interpenetrating three-dimensional network.
Matthias Bartel,Alina Absmeier,Guy N. L. Jameson,Franz Werner,Kenichi Kato,Masaki Takata,Roman Boča,Miki Hasegawa,Kurt Mereiter,and Andrea Caneschi,Wolfgang Linert +10 more
TL;DR: The 3D coordination polymer [Fe(4ditz)3](PF6)2.solv], consisting of three interpenetrating infinite networks, consists of cavities between iron atoms of different networks, which are partly filled with solvent molecules.
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Mutual Influence of Spacer Length and Noncoordinating Anions on Thermal and Light-Induced Spin-Crossover Properties of Iron(II)–α,ω-Bis(tetrazol-1-yl)alkane Coordination Polymers
Alina Absmeier,Alina Absmeier,Matthias Bartel,Matthias Bartel,Chiara Carbonera,Guy N. L. Jameson,Franz Werner,Michael Reissner,Andrea Caneschi,Jean-François Létard,Wolfgang Linert +10 more
TL;DR: In this paper, the influence of noncoordinating anions on spin-crossover coordination polymers is analyzed in an extension of the systematic investigation into iron(II) spincrossover polymers.
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Anion, Solvent and Time Dependence of High-Spin-Low-Spin Interactions in a 3D Coordination Polymer
Guy N. L. Jameson,Franz Werner,Matthias Bartel,Alina Absmeier,Michael Reissner,Jonathan A. Kitchen,Sally Brooker,Andrea Caneschi,Chiara Carbonera,Jean-François Létard,Wolfgang Linert +10 more
TL;DR: In this paper, the role of counterion and occluded solvent on the structure and spin-crossover behavior of the threefold interpenetrated network of butane I was investigated.
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Synthesis and characterisation of new ditetrazole-ligands as more rigid building blocks of envisaged iron(II) spin-crossover coordination polymers
TL;DR: In this article, a series of bridging di-tetrazole ligands were synthesized and produced new insights into spacer modifications as well as geometric prerequisites of the ligand and their impact on spin-crossover behavior.
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