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Beilstein J. Org. Chem. 2016, 12, 2771–2775, doi:10.3762/bjoc.12.275
Graphical Abstract
Scheme 1: Scope of the catalytic enantioselective Cr-mediated arylation of ketones.
Beilstein J. Org. Chem. 2015, 11, 1043–1051, doi:10.3762/bjoc.11.117
Scheme 1: Chemical structures of Ar-S-TTFs 1–8.
Figure 1: Crystal structure of 5·C70. a) Unit cell contents viewed along the short axis of 5; b) Interactions...
Figure 2: Crystal structure of 1·(C60)2·(CS2)2. a) Interactions of C60 molecule A with 1, where the blue and ...
Figure 3: Packing motifs of C60 molecules A (a) and B (b) of 1·(C60)2·(CS2)2 in the crystallographic ab-plane...
Figure 4: Crystal structure of 2·(C70)4·(PhCl)2. a) Interactions between C70 molecule A and 2; b) Interaction...
Beilstein J. Org. Chem. 2015, 11, 850–859, doi:10.3762/bjoc.11.95
Scheme 1: Chemical structures of arylthio-substituted tetrathiafulvalenes (1–7).
Figure 1: Crystal structure of 1·CuBr4: a) unit cell contents with the typical bond lengths shown (in Å); b) ...
Figure 2: Crystal structure of 3·(CuBr4)0.5·CuBr3·THF: a) unit cell contents with the typical bond lengths sh...
Figure 3: Crystal structure of 4·CuBr4: a) unit cell contents with the typical bond lengths shown (Å); b) vie...
Figure 4: Crystal structure of 5·Cu2Br6: a) unit cell contents with the numeric data indicate the angles and ...
Figure 5: Crystal structure of 6·CuBr2·CH3CN: a) unit cell contents with the typical bond lengths shown (Å); ...
Figure 6: Temperature dependent magnetic susceptibility for the typical salts: a) 1·CuBr4 with the insert pan...