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Winfried Plass

Researcher at Bielefeld University

Publications -  29
Citations -  779

Winfried Plass is an academic researcher from Bielefeld University. The author has contributed to research in topics: Pseudopotential & X-ray photoelectron spectroscopy. The author has an hindex of 17, co-authored 29 publications receiving 754 citations. Previous affiliations of Winfried Plass include University of Florence & University of Göttingen.

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New Perspectives in Polyoxometalate Chemistry by isolation of compounds containing very large moieties as transferable building blocks: (NMe4)5[As2Mo8V4AsO40] · 3H2O, (NH4)21[H3Mo57V6(NO)6O183(H2O)18] · 65 H2O, (NH2Me2)18(NH4)6[Mo57V6(NO)6O183(H2O)18] · 14 H2O, and (NH4)12[Mo36(NO)4O108(H2O)16] · 33 H2O

TL;DR: In this paper, the synthesis of extremely large nanoscaled anionic species is discussed, together with the occurrence of a large transferable {Mo17} building block in the compounds 3a, 3b and 4a which also exists in the corresponding iron compound Na3(NH4)12[H15Mo57Fe6(NO)6O183(H2O)18].
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N-Salicylidenehydrazides as versatile tridentate ligands for dioxovanadium(V) complexes.

TL;DR: The Schiff base ligand derived from salicylaldehyde and benzoic acid hydrazide reacts with potassium metavanadate in methanol solution to yield the potassium salt of the corresponding cis-dioxovanadium(V) complex K[VO2(salhyph)] (1).
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Giant clusters with unusual electronic and magnetic structures due to open shell metal centers embedded far apart from each other: Spin frustration and antisymmetric exchange

TL;DR: In this paper, the magnetic properties of vanadium(IV) compounds have been investigated using photoelectron spectroscopy and extended Huckel calculations, and the results reveal an efficient exchange pathway between the centers located within the trigonal face of this prism mediated by the large and electronically unusual Mo-17 ligands.
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Synthese und Struktur eines zweikernigen Gadolinium(III)-Komplexes: Magnetische Austauschwechselwirkungen in alkoxyverbrückten Komplexen der Lanthanoiden

TL;DR: In this paper, the authors present the synthesis and structure of a binuclear gadolinium(III) complex, where the Schiff base ligand N-salicylidene-2-(bis-(2-hydroxyethyl)amino)ethylamine (H3sabhea) reacts with Gd(NO3)3 · 6 H2O in methanol solution.