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Gruppiert nach: Dokumententyp | Veröffentlichungsdatum
Anzahl der Publikationen: 7

Zeitschriftenartikel

Zeman, Otto E. O.; Hochleitner, Rupert; Schmahl, Wolfgang W.; Karaghiosoff, Konstantin und Braeuniger, Thomas (April 2021): Relationship between Pb-207 NMR chemical shift and the morphology and crystal structure for the apatites Pb-5(AO(4))(3)Cl, vanadinite (A = V), pyromorphite (A = P), and mimetite (A = As). In: American Mineralogist, Bd. 106, Nr. 4: S. 541-548

Zeman, Otto E. O.; Kainz, Viktoria und Braeuniger, Thomas (2020): Single-Crystal P-31 and Li-7 NMR of the Ionic Conductor LiH2PO4. In: Crystals, Bd. 10, Nr. 4, 302

Zeman, Otto E. O.; Moudrakovski, Igor L.; Hartmann, Carsten; Indris, Sylvio und Braeuniger, Thomas (2020): Local Electronic Structure in AlN Studied by Single-Crystal Al-27 and N-14 NMR and DFT Calculations. In: Molecules, Bd. 25, Nr. 3, 469

Zeman, Otto E. O.; Steinadler, Jennifer; Hochleitner, Rupert und Braeuniger, Thomas (2019): Single-crystal Pb-207-NMR of wulfenite, PbMoO4, aided by simultaneous measurement of phosgenite, Pb2Cl2CO3. In: Solid State Nuclear Magnetic Resonance, Bd. 103: S. 17-24

Zeman, Otto E. O.; Steinadler, Jennifer; Hochleitner, Rupert und Braeuniger, Thomas (2019): Determination of the Full Pb-207 Chemical Shift Tensor of Anglesite, PbSO4, and Correlation of the Isotropic Shift to Lead-Oxygen Distance in Natural Minerals. In: Crystals, Bd. 9, Nr. 1, 43

Cordes, Niklas; Braeuniger, Thomas und Schnick, Wolfgang ORCID logoORCID: https://orcid.org/0000-0003-4571-8035 (2018): Ammonothermal Synthesis of EAMO(2)N (EA = Sr, Ba;M = Nb, Ta) Perovskites and N-14 Solid-State NMR Spectroscopic Investigations of AM(O,N)(3) (A = Ca, Sr, Ba, La). In: European Journal of Inorganic Chemistry, Nr. 46: S. 5019-5026

Zeman, Otto E. O.; Hoch, Constantin; Hochleitner, Rupert und Braeuniger, Thomas (2018): NMR interaction tensors of V-51 and Pb-207 in vanadinite, Pb-5(VO4)(3)Cl, determined from DFT calculations and single-crystal NMR measurements, using only one general rotation axis. In: Solid State Nuclear Magnetic Resonance, Bd. 89: S. 11-20

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