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Bernt Krebs

Researcher at University of Münster

Publications -  730
Citations -  16948

Bernt Krebs is an academic researcher from University of Münster. The author has contributed to research in topics: Crystal structure & Ligand. The author has an hindex of 56, co-authored 729 publications receiving 16336 citations. Previous affiliations of Bernt Krebs include Leiden University & Clariant.

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Reaktionen und Strukturen von [(C2H5)4N][OsCl6] und [(n-C4H9)4N]2[Os2Cl10] / Reactions and Structures of [(C2H5)4N][OsCl6] and [(n-C4H9)4N]2[Os2Cl10]

TL;DR: In this article, the crystal structures of salts of both an ions were determined from single crystal X-ray diffraction analyses, and the mean terminal and bridging Os -Cl bond lengths were 2307 and 2411 A, respectively.
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Thio-hydroxoanionen des Germaniums: Darstellung, Struktur und Eigenschaften von Na2GeS2(OH)2 · 5 H2O / Thio-hydroxo Anions of Germanium: Preparation, Structure and Properties of Na2GeS2(OH)2 · 5 H2O

TL;DR: In this paper, a single-crystal X-ray structure analysis of a colourless crystalline Na₂GeS₆(OH) ₆ · 5 H₁O was performed and the structure contained monomeric anions with Ge-S bond distances of 2.150 (1) and 2.145(1) A.
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Elektronenabsorptions-Spektren von MoSe42⊖ und WSe42⊖ in wäßriger Lösung

TL;DR: In this article, a lineare Beziehung zwischen the charge-transfer-Übergangsenergie t1 → 2 e (1A1 → 1T2) der Chalkogenomolybdate and -wolframate MoL42⊖ and WL42 ⊖ (L== O, S, Se) and der Ionisierungsspannung von L.
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Alkoxohalogenotellurate(IV): Darstellung und Struktur von Tetraphenylphosphonium-trichloro(dioxo-ethylen-O.O')tellurat(rV) / Alkoxohalogenotellurates(IV): Preparation and Structure of Tetraphenylphosphonium Trichloro(dioxo-ethylene-O,O')tellurate(IV)

TL;DR: In this article, the deprotonated glycolate dianion (OCH2CH2O)2- reacts as a bidentate chelating ligand towards chalcogen(IV) halides.
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Spin-forbidden transitions in the molecular nanomagnet V 15

TL;DR: In this article, the authors performed electron spin-resonance measurements on single crystals of the molecular nanomagnet and observed spin-forbidden transitions from the zero-field ground state to the excited state in parallel mode spectra.