B
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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Recombinant purple acid phosphatase isoform 3 from sweet potato is an enzyme with a diiron metal center
Teerawit Waratrujiwong,Teerawit Waratrujiwong,Bernt Krebs,Friedrich Spener,Pornsawan Visoottiviseth +4 more
TL;DR: Kinetic analysis showed that conversion of Tyr291 to His further optimized the performance of this protein as a diiron enzyme, whereas the Ala mutation weakened the catalytic efficiency regardless of the metal present in the second binding site.
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Die kristallstruktur des synthetischen stutzits, ag5-xte3
TL;DR: In this article, the crystal structure of Ag5−xTe3 was determined by single crystal X-ray structure analysis, and the homogenity region was derived from the structure.
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Alternativ-liganden. xxxi: nickelcarbonylkomplexe mit tripod-liganden des typs xm'(och2pme2)n(ch2ch2pr2)3-n (m'=si, ge; n=0-3)
TL;DR: The coordination properties of the tripod ligands have been investigated in this paper, where the coordination of the Tripod-Ligands of the Type XM′(OCH2PMe2)n(CH2CH2PR2)3−n (M′ = Si, Ge) (1−7), MeSi(O CH2PME2)2 CH2CH 2P(CF3)2
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Molybdenum complexes with O,N,S donor ligands as models for active sites in oxotransferases and hydroxylases
TL;DR: A series of homologous mononuclear dioxomolybdenum complexes were prepared and fully characterized with structurally related thiosemicarbazone ligands supplying a tridentate O,N,S donor set to the central metal atom.
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Reaktive E = C(p—p)π-Systeme, XXXI Erste Vertreter aminosubstituierter 1,2,4-Diazaphosphole
TL;DR: In this article, X-ray diffraction studies on 5a and 5b indicate a delicate charge balance in the bonding system of 1H-1,2,4,σ2-diazaphospholes under the influence of the exocyclic push/pull substituents iPr2N and CF3 or CO2Me, respectively.