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Beilstein J. Nanotechnol. 2016, 7, 995–1009, doi:10.3762/bjnano.7.92
Scheme 1: Synthesis of complexes 1–3. (a) NaH, 1/3DyCl3·6H2O, EtOH, reflux then stirring at RT overnight. (b)...
Scheme 2: Synthesis of complex 4 under anhydrous conditions. The proposed structure of the complex is based o...
Figure 1: Molecular structure of complex 1 obtained by single crystal X-ray diffraction. Hydrogen atoms are o...
Figure 2: Molecular structure of complex 2 obtained by single crystal X-ray diffraction. Hydrogen atoms are o...
Figure 3: Molecular structure of complex 3 obtained by single crystal X-ray diffraction. Hydrogen atoms are o...
Figure 4: Absorption spectra of the three dysprosium complexes in diluted (2 × 10−6 M) DMSO solutions of 1–4 ...
Figure 5: (Top) Temperature dependence of out-of-phase component of ac magnetic susceptibility under zero dc ...
Figure 6: Orientation of the main anisotropy axis in complexes 1–3 indicated as blue arrows (a, b and c) calc...
Figure 7: Cole–Cole plots under zero or different dc fields in the given temperature ranges. Sample codes are...
Beilstein J. Nanotechnol. 2015, 6, 1107–1115, doi:10.3762/bjnano.6.112
Figure 1: Tris(1-oxo-1H-phenalen-9-olate)aluminum(III) (Al(Op)3) structure. H atoms are omitted for clarity.
Figure 2: Cyclic voltammogram for Al(Op)3 recorded at room temperature in CH2Cl2 solution using TBAPF6 as the...
Figure 3: Absorption (dotted line) and emission spectra (solid line) of Al(Op)3 in CH2Cl2 solution (black) an...
Figure 4: Luminescence decay in CH2Cl2 solution (black) and as a thin film on quartz (red). In solution, a mo...
Figure 5: Transfer curve of the Al(Op)3-based TFT with a channel length of 100 μm. In this figure, IDS and VDS...
Figure 6: Comparison of the source–drain current (IDS) and the leakage gate current (IG) from the transfer ch...
Figure 7: a) HOMO (left) and LUMO (right) orbitals of Al(Op)3 calculated with TURBOMOLE [36] on a B3-LYP [37]/SV(P) [38] ...
Figure 8: Energy levels of Al(Op)3 calculated with different conditions, namely, HOMO and LUMO in vacuum (vac...