Prof. Dr. Vojislav Krstic


Professur für Angewandte Physik

Publications (Download BibTeX)

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Wild, S., Lloret, V., Vega-Mayoral, V., Vella, D., Nuin, E., Siebert, M.,... Hirsch, A. (2019). Monolayer black phosphorus by sequential wet-chemical surface oxidation. RSC Advances, 9(7), 3570-3576.
Meingast, L., Kolesnik-Gray, M., Siebert, M., Abellan Saez, G., Wild, S., Lloret Segura, V.J.,... Krstic, V. (2018). Effect of TCNQ Layer Cover on Oxidation Dynamics of Black Phosphorus. Physica Status Solidi-Rapid Research Letters, 12(8).
Vecera, P., Eigler, S., Kolesnik-Gray, M., Krstic, V., Vierck, A., Maultzsch, J.,... Hirsch, A. (2017). Degree of functionalisation dependence of individual Raman intensities in covalent graphene derivatives. Scientific Reports, 7.
Caridad, J.M., Winters, S., McCloskey, D., Duesberg, G.S., Donegan, J.F., & Krstic, V. (2017). Hot volumes for highly enhanced and reproducible SERS detection in weakly-coupled metallic nanohelices. Scientific Reports, 7.
Caridad, J.M., Connaughton, S., Ott, C., Weber, H.B., & Krstic, V. (2016). An electrical analogy to Mie scattering. Nature Communications, 7.
Gough, J., McCloskey, D., Caridad, J.M., Krstic, V., Müller, M., Gaponik, N., & Bradley, L. (2016). Chiral Ag Nanostructure Arrays as Optical Antennas. In Advanced Electromagnetic Materials in Microwaves and Optics (pp. 88-90). Oxford, GB: Red Hook, NY 12571 USA: Institute of Electrical and Electronics Engineers ( IEEE ), Curran Associates, Inc..
Connaughton, S., Kolesnik-Gray, M., Hobbs, R., Lotty, O., Holmes, J.D., & Krstic, V. (2016). Diameter-driven crossover in resistive behaviour of heavily doped self-seeded germanium nanowires. Beilstein Journal of Nanotechnology, 7, 1284-1288.
Kolesnik-Gray, M., Collins, G., Holmes, J.D., & Krstic, V. (2016). Fingerprints of a size-dependent crossover in the dimensionality of electronic conduction in Au-seeded Ge nanowires. Beilstein Journal of Nanotechnology, 7, 1574–1578.
Schäfer, R., Weber, K., Kolesnik-Gray, M., Hauke, F., Krstic, V., Meyer, B., & Hirsch, A. (2016). Substrate-Modulated Reductive Graphene Functionalization. Angewandte Chemie, 55, 14858-14862.
Schäfer, R., Weber, K., Kolesnik-Gray, M., Hauke, F., Krstic, V., Meyer, B., & Hirsch, A. (2016). Substratmodulierte reduktive Graphenfunktionalisierung. Angewandte Chemie, 128(47), 15080-15084.

Last updated on 2016-05-05 at 05:15