An easy, efficient, and scalable synthetic procedure is described to obtain novel amide-functionalized double-decker silsesquioxanes (DDSQs). The use of mild conditions of deprotection of the BOC group, which does not result to the cleavage of the cage-like silsesquioxane structure, is reported. This method leads to the so far undescribed hydrochloride salt of aminoalkyl-DDSQ. Interestingly, the /-isomerization of DDSQ molecules was observed during the reaction. The resulting compounds are characterized using multinuclear NMR (H, C, and Si), MALDI-TOF, FT-IR, and elemental analysis. Moreover, crystal structures are reported for three DDSQs. The chloride salt of aminoalkyl derivative, obtained in one of the steps of the synthetic pathway, shows an intriguing structure of the crystal lattice in which large channels are present, caused by ionic interactions in the lattice. The described approach opens the way to synthesizing new DDSQ derivatives and materials using BOC-blocked amines. We believe our findings would advance investigations about new materials based on little known organic-inorganic DDSQ-based hybrids.
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http://dx.doi.org/10.1021/acs.inorgchem.2c04546 | DOI Listing |
Inorg Chem
November 2023
School of Chemistry & Materials Science, Jiangsu Key Laboratory of Green Synthetic Chemistry for Functional Materials, Jiangsu Normal University, Xuzhou 221116, P. R. China.
A luminescent with excellent stability and dual-emitting properties was constructed with an amide-functionalized tetracarboxylate ligand. s were initially assembled on one-dimensional Tb chains, then formed a two-dimensional double-decker layer through the synergistic linking of organic ligands and bridging formic acid anions, and further fabricated the final three-dimensional structure through the connection of the organic ligands. Powder X-ray diffraction experiments revealed that s not only exhibited excellent stability in water but also maintained structural integrity in the pH range of 2-12.
View Article and Find Full Text PDFInorg Chem
April 2023
Faculty of Chemistry, University of Wrocław, 14 F. Joliot-Curie, 50-383 Wrocław, Poland.
An easy, efficient, and scalable synthetic procedure is described to obtain novel amide-functionalized double-decker silsesquioxanes (DDSQs). The use of mild conditions of deprotection of the BOC group, which does not result to the cleavage of the cage-like silsesquioxane structure, is reported. This method leads to the so far undescribed hydrochloride salt of aminoalkyl-DDSQ.
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