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Binary and ternary charge-transfer complexes using 1,3,5-trinitrobenzene
Three binary and one ternary charge-transfer complexes have been made using 1,3,5-trinitrobenzene, viz. 1,3,5-trinitrobenzene–2-acetylnaphthalene (1/1), C(6)H(3)N(3)O(6)·C(12)H(10)O, (I), 1,3,5-trinitrobenzene–9-bromoanthracene (1/1), C(14)H(9)Br·C(6)H(3)N(3)O(6), (II), 1,3,5-trinitrobenzen...
Autores principales: | , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
International Union of Crystallography
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5956318/ https://www.ncbi.nlm.nih.gov/pubmed/29850035 http://dx.doi.org/10.1107/S2056989018000245 |
Sumario: | Three binary and one ternary charge-transfer complexes have been made using 1,3,5-trinitrobenzene, viz. 1,3,5-trinitrobenzene–2-acetylnaphthalene (1/1), C(6)H(3)N(3)O(6)·C(12)H(10)O, (I), 1,3,5-trinitrobenzene–9-bromoanthracene (1/1), C(14)H(9)Br·C(6)H(3)N(3)O(6), (II), 1,3,5-trinitrobenzene–methyl red (1/1), C(15)H(15)N(3)O(2)·C(6)H(3)N(3)O(6), (III) (systematic name for methyl red: 2-{(E)-[4-(dimethylamino)phenyl]diazenyl}benzoic acid), and 1,3,5-trinitrobenzene–1-naphthoic acid–2-amino-5-nitropyridine (1/1/1), C(6)H(3)N(3)O(6)·C(11)H(8)O(2)·C(5)H(5)N(3)O(2), (IV). All charge-transfer complexes show alternating donor and acceptor stacks, which have weak C—H⋯O hydrogen bonds perpendicular to the stacking axis. In addition, complex (IV) is a crystal engineering attempt to modify the packing of the stacks by inserting a third molecule into the structure. This third molecule is stabilized by strong hydrogen bonds between the carboxylic acid group of the donor molecule and the pyridine acceptor molecule. |
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