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Understanding of Metal Oxide/Water Systems at the Molecular Scale: Structural Evolution, Interfaces, and Dissolution. Braun, Thomas; Institut für Chemie, HU Berlin. Siloxanes, alumoxanes and alumosiloxanes as models for surface defects in hydrolysis and condensation reactions. A01. Titel.
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Understanding of Metal Oxide/Water Systems at the Molecular Scale: Structural Evolution, Interfaces, and Dissolution Braun, Thomas; Institut für Chemie, HU Berlin Siloxanes, alumoxanes and alumosiloxanes as models for surface defects in hydrolysis and condensation reactions A01 Titel Titel Arial 36pt Arial 36pt Titel Arial 36pt Please choose the template suitable for your research area (A, B, C, D) by clicking the corresponding Template on the left! Insert data of your project (heading etc.) but always keep the format! Main collaborations: A04, C02, D01, D02, D03
Understanding of Metal Oxide/Water Systems at the Molecular Scale: Structural Evolution, Interfaces, and Dissolution Campen, Kramer R.; Fritz-Haber-Institut, Berlin Saalfrank, Peter; Institut für Chemie, U Potsdam Understanding water structure and reactivity at aluminium oxide surfaces using nonlinear vibrational spectroscopy and theory B01 Titel Titel Arial 36pt Arial 36pt Titel Arial 36pt Main collaborations: A04, C02, D01, D02, D03
Understanding of Metal Oxide/Water Systems at the Molecular Scale: Structural Evolution, Interfaces, and Dissolution Kemnitz, Erhard; Scholz, Gudrun; Institut für Chemie, HU Berlin Distorted metal oxides by fluoride doping and/or mechanochemical activation C01 Titel Titel Arial 36pt Arial 36pt Titel Arial 36pt Main collaborations: A04, C02, D01, D02, D03
Understanding of Metal Oxide/Water Systems at the Molecular Scale: Structural Evolution, Interfaces, and Dissolution Asmis, Knut R.; Fritz-Haber-Institut, Berlin Microhydrated metal oxide clusters in the gas phase: structure, stability, reactivity D01 Titel Titel Arial 36pt Arial 36pt Titel Arial 36pt Main collaborations: A04, C02, D01, D02, D03