Sandra Schiemenz
Leibniz Association
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Publication
Featured researches published by Sandra Schiemenz.
Angewandte Chemie | 2015
Katrins Junghans; Christin Schlesier; Aram Kostanyan; Nataliya A. Samoylova; Qingming Deng; Marco Rosenkranz; Sandra Schiemenz; Rasmus Westerström; Thomas Greber; Bernd Büchner; Alexey A. Popov
Abstract The use of methane as a reactive gas dramatically increases the selectivity of the arc‐discharge synthesis of M‐Ti‐carbide clusterfullerenes (M=Y, Nd, Gd, Dy, Er, Lu). Optimization of the process parameters allows the synthesis of Dy2TiC@C80‐I and its facile isolation in a single chromatographic step. A new type of cluster with an endohedral acetylide unit, M2TiC2@C80, is discovered along with the second isomer of M2TiC@C80. Dy2TiC@C80‐(I,II) and Dy2TiC2@C80‐I are shown to be single‐molecule magnets (SMM), but the presence of the second carbon atom in the cluster Dy2TiC2@C80 leads to substantially poorer SMM properties.
Chemistry: A European Journal | 2012
Yang Zhang; Alexey A. Popov; Sandra Schiemenz; Lothar Dunsch
The synthesis, isolation and spectroscopic characterization of holmium-based mixed metal nitride clusterfullerenes Ho(x) Sc(3-x) N@C(80) (x=1, 2) are reported. Two isomers of Ho(x) Sc(3-x) N@C(80) (x=1, 2) were synthesized by the reactive gas atmosphere method and isolated by multistep recycling HPLC. The isomeric structures of Ho(x) Sc(3-x) N@C(80) (x=1, 2) were characterized by laser-desorption time-of-flight (LD-TOF) mass spectrometry and UV/Vis/NIR, FTIR and Raman spectroscopy. A comparative study of M(x) Sc(3-x) N@C(80) (M=Gd, Dy, Lu, Ho) demonstrates the dependence of their electronic and vibrational properties on the encaged metal. Despite the distinct perturbation induced by 4f(10) electrons, we report the first paramagnetic (13) C NMR study on Ho(x) Sc(3-x) N@C(80) (I; x=1, 2) and confirm I(h) -symmetric cage structure. A (45) Sc NMR study on HoSc(2) N@C(80) (I, II) revealed a temperature-dependent chemical shift in the temperature range of 268-308 K.
Nanoscale | 2014
Yang Zhang; Denis S. Krylov; Sandra Schiemenz; Marco Rosenkranz; Rasmus Westerström; Jan Dreiser; Thomas Greber; Bernd Büchner; Alexey A. Popov
The paramagnetic NMR study of HoM2N@C80-Ih and Ho2MN@C80-Ih nitride cluster fullerenes (M = Sc, Lu, Y) reveals strong dependence of Ho-induced paramagnetic shifts (δ(para)) in (13)C NMR spectra on the size of the diamagnetic metal in the cluster. In particular, the δ(para) value in HoY2N@C80 is almost doubled in comparison to that in HoSc2N@C80. X-ray magnetic circular dichroism studies show that all Ho-nitride cluster fullerenes have the same magnetic ground state of Ho(3+). Point-charge ligand-field splitting calculations show that the increase of the M(3+) radius in going from Sc to Y results in a considerable increase of the energy splitting between different Jz states. This leads to a 19% higher magnetic anisotropy of Ho(3+) in HoY2N@C80 than in HoSc2N@C80 at 300 K. Variations of the molecular geometry and cluster dynamics with the size of the cluster are found to have even greater influence on δ(para) values. This work shows that the magnetic properties of the species confined inside the fullerene cages can be tuned using the geometrical factors such as the cluster and the cage size.
Angewandte Chemie | 2018
Michal Zalibera; Denis S. Krylov; Dimitrios Karagiannis; Paul-Anton Will; Frank Ziegs; Sandra Schiemenz; Wolfgang Lubitz; Sebastian Reineke; Anton Savitsky; Alexey A. Popov
Abstract The endohedral fullerene Y3N@C80 exhibits luminescence with reasonable quantum yield and extraordinary long lifetime. By variable‐temperature steady‐state and time‐resolved luminescence spectroscopy, it is demonstrated that above 60 K the Y3N@C80 exhibits thermally activated delayed fluorescence with maximum emission at 120 K and a negligible prompt fluorescence. Below 60 K, a phosphorescence with a lifetime of 192±1 ms is observed. Spin distribution and dynamics in the triplet excited state is investigated with X‐ and W‐band EPR and ENDOR spectroscopies and DFT computations. Finally, electroluminescence of the Y3N@C80/PFO film is demonstrated opening the possibility for red‐emitting fullerene‐based organic light‐emitting diodes (OLEDs).
Angewandte Chemie | 2017
Michal Zalibera; Denis S. Krylov; Dimitrios Karagiannis; Paul-Anton Will; Frank Ziegs; Sandra Schiemenz; Wolfgang Lubitz; Sebastian Reineke; Anton Savitsky; Alexey A. Popov
Endohedral fullerene Y3N@C80 exhibits luminescence with reasonable quantum yield and extraordinary long lifetime. By variable-temperature steady-state and time-resolved luminescence spectroscopy, we demonstrate that above 60 K the Y3N@C80 exhibits thermally-activated delayed fluorescence with maximum emission at 120 K and a negligible prompt fluorescence. Below 60 K, a phosphorescence with a lifetime of 192 ms is observed. Spin distribution and dynamics in the triplet excited state is investigated with X- and W-band EPR and ENDOR spectroscopies and DFT computations. Finally, electroluminescence of the Y3N@C80/PFO film is demonstrated opening the possibility for red-emitting fullerene-based organic light-emitting diodes (OLEDs).
Chemical Science | 2015
Yang Zhang; Denis S. Krylov; Marco Rosenkranz; Sandra Schiemenz; Alexey A. Popov
Journal of Physical Chemistry Letters | 2013
Yang Zhang; Sandra Schiemenz; Alexey A. Popov; Lothar Dunsch
Journal of Physical Chemistry C | 2011
Alexey A. Popov; Sandra Schiemenz; Stanislav M. Avdoshenko; Shangfeng Yang; Gianaurelio Cuniberti; Lothar Dunsch
Nanoscale | 2017
Nataliya A. Samoylova; Stanislav M. Avdoshenko; Denis S. Krylov; Hannah R. Thompson; Amelia Kirkhorn; Marco Rosenkranz; Sandra Schiemenz; Frank Ziegs; A. U. B. Wolter; Shangfeng Yang; Steven Stevenson; Alexey A. Popov
Electrochimica Acta | 2013
Peter Rapta; Kinga Haubner; Peter Machata; Vladimír Lukeš; Marco Rosenkranz; Sandra Schiemenz; Sabrina Klod; Henri Kivelä; Carita Kvarnström; Horst Hartmann; Lothar Dunsch