Publikationen der AG Heitjans

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Kumar, P. J., Nishimura, K., Senna, M., Düvel, A., Heitjans, P., Kawaguchi, T., Sakamoto, N., Wakiya, N., & Suzuki, H. (2016). A novel low-temperature solid-state route for nanostructured cubic garnet Li7La3Zr2O12 and its application to Li-ion battery. RSC Advances, 6(67), 62656-62667.
Vinod Chandran, C., & Heitjans, P. (2016). Solid-State NMR Studies of Lithium Ion Dynamics Across Materials Classes. Annual Reports on NMR Spectroscopy, 89, 1-102.
Robben, L., Merzlyakova, E., Heitjans, P., & Gesing, T. M. (2016). Symmetry reduction due to gallium substitution in the garnet Li6.43(2)Ga0.52(3)La2.67(4)Zr2O12. Acta Crystallographica Section E: Crystallographic Communications, 72, 287-289.


Scholz, G., Breitfeld, S., Krahl, T., Düvel, A., Heitjans, P., & Kemnitz, E. (2015). Mechanochemical synthesis of MgF2 - MF2 composite systems (M Combining double low line Ca, Sr, Ba). Solid state sciences, 50, 32-41.
Volgmann, K., Schulz, A., Welsch, A. M., Bredow, T., Nakhal, S., Lerch, M., & Heitjans, P. (2015). Lattice Vibrations to Identify the Li/Na Ratio in LixNa2-xTi6O13 (x = 0 ... 2). Zeitschrift fur Physikalische Chemie, 229(9), 1351-1362.
Rahn, J., Witt, E., Heitjans, P., & Schmidt, H. (2015). Lithium Diffusion in Ion-Beam Sputtered Amorphous LiAlO2. Zeitschrift fur Physikalische Chemie, 229(9), 1341-1350.
Heitjans, P. (2015). Lithium Ions in Solids - Between Basics and Better Batteries. Zeitschrift fur Physikalische Chemie, 229(9), 1263-1264.
Witt, E., Nakhal, S., Chandran, C. V., Lerch, M., & Heitjans, P. (2015). NMR and Impedance Spectroscopy Studies on Lithium Ion Diffusion in Microcrystalline γ-LiAlO2. Zeitschrift fur Physikalische Chemie, 229(9), 1327-1339.
Licht, B. K., Homeyer, F., Bösebeck, K., Binnewies, M., & Heitjans, P. (2015). Synthesis and Electrochemical Behavior of Nanostructured Copper Particles on Graphite for Application in Lithium Ion Batteries. Zeitschrift fur Physikalische Chemie, 229(9), 1415-1427.
Rahn, J., Heitjans, P., & Schmidt, H. (2015). Li Self-Diffusivities in Lithium Niobate Single Crystals as a Function of Li2O Content. Journal of Physical Chemistry C, 119(27), 15557-15561.