| Literature DB >> 29163877 |
Tomohiro Seki1, Taichi Ozaki1, Takuma Okura1, Kiyotaka Asakura2, Aya Sakon3, Hidehiro Uekusa3, Hajime Ito1.
Abstract
In this study, we report the interconvertible tetracolored solid state photoluminescence of gold(i) isocyanide complex 2 upon various external stimuli through solid state structural changes. Soaking complex 2 inEntities:
Year: 2015 PMID: 29163877 PMCID: PMC5644376 DOI: 10.1039/c4sc03960b
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Structures of gold(i) isocyanide complexes 1 and 2.
Fig. 2(a) Photographs and schematic representation of the molecular arrangements of 1 showing different photoluminescence upon applying external stimuli. A molecule of 1 is denoted as a rectangle. (b) Photographs of the powder forms of 2 showing different photoluminescence under UV light at 365 nm. (c) Schematic representation of the solid state molecular arrangements of 2, in which a molecule of 2 is denoted as a rectangle, with the colors of the corresponding emission. Solvent molecules are denoted as red circles. (d) Specific procedures for the interconversion of the four emitting states of 2.
Fig. 3Normalized excitation (dashed lines, monitored at the emission maxima) and emission spectra (solid lines, λem = 365 nm) of 2B (blue lines), 2G (green lines), 2Y (yellow lines), and 2O (orange lines).
Fig. 4PXRD patterns of 2B (blue line), 2G (green line), 2Y (yellow line), and 2O (orange line).
Fig. 5(a) ORTEP representation of the dimer and (b) the space-filling representation of the packing structure of 2B viewed along the direction of the a axis. Acetone molecules are depicted as ball-and-stick models in (b).
Summary of the crystal structure analyses of 2B, 2G, and 2Y
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|
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| |
| CCDC number | 1035806 | 1035808 | 1035810 |
| Specimen | Single crystal | Single crystal | Powder |
| Crystal system | Triclinic | Triclinic | Monoclinic |
| Space group |
|
|
|
|
| 3.5452(4) | 3.5707(3) | 7.79058(18) |
|
| 14.0087(15) | 10.3087(10) | 18.7202(5) |
|
| 14.2490(15) | 14.2742(11) | 6.74157(17) |
|
| 109.292(3) | 107.689(4) | 90 |
|
| 91.673(3) | 92.505(5) | 103.167(3) |
|
| 91.322(2) | 100.205(5) | 90 |
|
| 667.23(13) | 489.99(8) | 957.35(5) |
|
| 1 | 1 | 2 |
|
| 2.335 | 2.786 | — |
|
| 4.73 | 10.08 | — |
| w | 10.55 | 25.46 | — |
| GOF | 1.152 | 1.114 | — |
|
| — | — | 4.62 |
|
| — | — | 3.60 |
|
| — | — | 2.74 |
For data with I > 2.00σ(I).
For all reflection data.
Goodness of fit.
Fig. 6(a) ORTEP representation of the dimer viewed roughly along the direction of the b axis and (b) space-filling representation of the packing structure of 2G viewed along the direction of the a axis.
Fig. 7(a) Ball-and-stick representation of the tetramer viewed along the direction of the a axis, and (b) the space-filling representation of the packing structures of 2Y viewed along the direction of the c axis.
Fig. 8(a) DSC (solid line) and TGA (dashed line) profiles of 2G. The green arrow indicates the endothermic phase transition from 2G to 2Y. (b) DSC profiles of 2Y (yellow line) and 2O (orange line). The yellow arrow indicates the endothermic phase transition from 2Y to 2O. For the DSC and TGA profiles, the heating rate is 10 °C min–1.