331 results on '"Plattner, Dietmar A."'
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2. Mass Spectrometric Analysis of Cucurbitacins and Dihydrocucurbitacins from the Tuber of Citrullus naudinianus
3. Integrated Metabolomic and Transcriptomic Analysis of Modified Nucleosides for Biomarker Discovery in Clear Cell Renal Cell Carcinoma
4. Mass spectrometric analysis of cucurbitacins and dihydrocucurbitacins from the tuber of citrullus naudinianus
5. Mitochondrial Metabolomics of Sym1-Depleted Yeast Cells Revealed Them to Be Lysine Auxotroph
6. Phenol oxidation by DyP-type peroxidases in comparison to fungal and plant peroxidases
7. Metalorganic Chemistry in the Gas Phase: Insight into Catalysis
8. INNSBRUCKER FESTWOCHEN DER ALTEN MUSIK 2024.
9. Metabolic and Lipidomic Assessment of Kidney Cells Exposed to Nephrotoxic Vancomycin Dosages
10. FRAU LUNA.
11. Metabolic and Lipidomic Assessment of Kidney Cells Exposed to Nephrotoxic Vancomycin Dosages
12. Online ESI-MS analysis of reactions under high pressure
13. Gas-phase reactions of an iridium(I) complex with dioxygen – Comparison to solution-phase reactivity
14. Porphyrin isomers: geometry, tautomerism, geometrical isomerism, and stability
15. A combined gas-phase, solution-phase, and computational study of C-H activation by cationic iridium(III) complexes
16. On the Ti-TADDOLate-catalyzed Diels-Alder addition of 3-butenoyl-1,3-oxazolidin-2-one to cyclopentadiene. General features of Ti-BINOLate-and Ti-TADDOLate-mediated reactions
17. PETER PAN-THE DARK SIDE.
18. LA BOHÈME.
19. A combined gas-phase, solution-phase, and computational study of C−H activation by cationic iridium(III) complexes
20. Direct observation of a dissociative mechanism for C-H activation by a cationic iridium(III) complex
21. A comparative structural analysis of the surface properties of asco-laccases
22. Electrospray mass spectrometry beyond analytical chemistry: studies of organometallic catalysis in the gas phase
23. Coordination chemistry of manganese–salen complexes studied by electrospray tandem mass spectrometry: the significance of axial ligands
24. „DES SIMPLICIUS SIMPLICISSIMUS JUGEND“.
25. A comparative structural analysis of the surface properties of asco-laccases
26. Innsbruck: „ELEKTRA“.
27. Defect-induced acceleration of a solid-state chemical reaction in zinc alkoxide single crystals
28. Univalent Gallium Salts of Weakly Coordinating Anions: Effective Initiators/Catalysts for the Synthesis of Highly Reactive Polyisobutylene
29. LA TRAVIATA.
30. Thermodynamic Integration Networks and Their Application to Charge Transfer Reactions within the AauDyPI Fungal Peroxidase
31. Innsbruck: „BORIS GODUNOW“.
32. DANK AN JOHANNES REITMEIER.
33. Different aspects of catalysis in (Bio)organic Chemistry
34. 'Oxidative cleavage of α-Arylaldehydes to the corresponding carbonyl compounds using iodosylbenzene and HBF4'
35. Mechanism of the TiIII-Catalyzed Acyloin-Type Umpolung: A Catalyst-Controlled Radical Reaction
36. The toolbox of Auricularia auricula-judae dye-decolorizing peroxidase – Identification of three new potential substrate-interaction sites
37. Oxidation and nitration of mononitrophenols by a DyP-type peroxidase
38. „COSÌ FAN TUTTE“.
39. Dye-Decolorizing Peroxidase (DyP)
40. ChemInform Abstract: Mechanistic Investigations of the Rhodium Catalyzed Propargylic CH Activation.
41. Mechanistic Investigations of the Rhodium Catalyzed Propargylic CH Activation
42. LE NOZZE DI FIGARO.
43. Ziegler-Natta-like olefin oligomerization by alkylzirconocene cations in an electrospray ionization tandem mass spectrometer
44. Katalytisch beschleunigte Gasphasenreaktionen
45. C(sub 18) is a polyyne
46. Structural Basis of Substrate Conversion in a New Aromatic Peroxygenase
47. Univalent Gallium Salts of Weakly Coordinating Anions: Effective Initiators/Catalysts for the Synthesis of Highly Reactive Polyisobutylene
48. Radical formation on a conserved tyrosine residue is crucial for DyP activity
49. ChemInform Abstract: Oxidative Cleavage and Rearrangement of Aryl Epoxides Using Iodosylbenzene: On Criegee′s Trail.
50. ChemInform Abstract: Oxidative Cleavage of α‐Aryl Aldehydes Using Iodosylbenzene.
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