Prof. Dr. Erdmann Spiecker



Organisation


Professur für Werkstoffwissenschaften (Elektronenmikroskopie)
Lehrstuhl für Werkstoffwissenschaften (Mikro- und Nanostrukturforschung)



Project lead

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(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B4: Sliding of incommensurate interfaces in layered compounds
Prof. Dr. Sabine Maier; Prof. Dr. Erdmann Spiecker
(01/10/2013 - 30/09/2017)

(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B5: Plasticity at interfaces in complex compounds
Prof. Dr. Mathias Göken; Prof. Dr. Erdmann Spiecker
(01/10/2013 - 30/09/2017)

(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
A1: Structure-property relations of individual nanowires
Prof. Dr.-Ing. Erik Bitzek; Prof. Dr. Erdmann Spiecker
(01/10/2013 - 30/09/2017)

(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
A5: Electrical properties of nanowires and nanowire networks
Prof. Dr. Erdmann Spiecker
(01/10/2013 - 30/09/2017)

GRK 1896: In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes
Prof. Dr. Erdmann Spiecker
(01/10/2013 - 31/03/2018)


Project member


CENEM: CENEM Core Facility
Prof. Dr. Tobias Unruh
(01/03/2012 - 31/03/2019)


Publications (Download BibTeX)

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Kolb, M., Freund, L., Fischer, F., Povstugar, I., Makineni, S.K., Gault, B.,... Göken, M. (2018). On the grain boundary strengthening effect of boron in γ/γ′ Cobalt-base superalloys. Acta Materialia, 247-254. https://dx.doi.org/10.1016/j.actamat.2017.12.020
Makineni, S.K., Lenz, M., Kontis, P., Li, Z., Kumar, A., Felfer, P.,... Gault, B. (2018). Correlative Microscopy—Novel Methods and Their Applications to Explore 3D Chemistry and Structure of Nanoscale Lattice Defects: A Case Study in Superalloys. JOM, 1-8. https://dx.doi.org/10.1007/s11837-018-2802-7
Montenegro Benavides, C., Rechberger, S., Spiecker, E., Berlinghof, M., Unruh, T., Biele, M.,... Tedde, S.F. (2018). Improving spray coated organic photodetectors performance by using 1,8-diiodooctane as processing additive. Organic Electronics, 21-26. https://dx.doi.org/10.1016/j.orgel.2017.12.022
Ramirez Quiroz, C., Shen, Y., Salvador, M.F., Forberich, K., Schrenker, N., Spyropoulos, G.,... Brabec, C. (2018). Balancing electrical and optical losses for efficient 4-terminal Si–perovskite solar cells with solution processed percolation electrodes. Journal of Materials Chemistry A. https://dx.doi.org/10.1039/c7ta10945h
Schirowski, M., Abellan Saez, G., Nuin Pla, N.E., Pampel, J., Dolle, C., Wedler, V.,... Hirsch, A. (2018). Fundamental Insights into the Reductive Covalent Cross-Linking of Single-Walled Carbon Nanotubes. Journal of the American Chemical Society. https://dx.doi.org/10.1021/jacs.7b12910
Schmitt, S.W., Sarau, G., Speich, C., Doehler, G.H., Liu, Z., Hao, X.,... Christiansen, S. (2018). Germanium Template Assisted Integration of Gallium Arsenide Nanocrystals on Silicon: A Versatile Platform for Modern Optoelectronic Materials. Advanced Optical Materials. https://dx.doi.org/10.1002/adom.201701329
Weiser, M., Eggeler, Y., Spiecker, E., & Virtanen, S. (2018). Early stages of scale formation during oxidation of γ/γ' strengthened single crystal ternary Co-base superalloy at 900 °C. Corrosion Science, 135, 78-86. https://dx.doi.org/10.1016/j.corsci.2018.02.020
Wu, Q., Soppa, K., Scherrer, N., Watts, B., Yokosawa, T., Bernard, L.,... Fink, R. (2018). Investigation of the foil structure and corrosion mechanisms of modern Zwischgold using advanced analysis techniques. Journal of Cultural Heritage. https://dx.doi.org/10.1016/j.culher.2017.12.005
Akdas, T., Haderlein, M., Walter, J., Apeleo Zubiri, B., Spiecker, E., & Peukert, W. (2017). Continuous synthesis of CuInS2 quantum dots. RSC Advances, 7(17), 10057-10063. https://dx.doi.org/10.1039/c6ra27052b
Bochmann, S., Fernández-Pacheco, A., Mackovic, M., Neff, A., Siefermann, K.R., Spiecker, E.,... Bachmann, J. (2017). Systematic tuning of segmented magnetic nanowires into three-dimensional arrays of ‘bits’. RSC Advances, 7, 37627-37635. https://dx.doi.org/10.1039/c7ra06734h

Last updated on 2016-05-05 at 05:14