| Literature DB >> 24511299 |
Adrián Ochoa-Terán1, Jesús Estrada-Manjarrez2, Marisela Martínez-Quiroz1, Marco A Landey-Álvarez1, Eleazar Alcántar Zavala3, Georgina Pina-Luis1, Hisila Santacruz Ortega4, Luis Enrique Gómez-Pineda1, José-Zeferino Ramírez4, Daniel Chávez1, Julio Montes Ávila3, Victoria Labastida-Galván5, Mario Ordoñez5.
Abstract
A regioselective synthesis has been developed for the preparation of a series of N,N'-disubstituted 4,4'-carbonylbis(carbamoylbenzoic) acids and N,N'-disubstituted bis(carbamoyl) terephthalic acids by treatment of 3,3',4,4'-benzophenonetetracarboxylic dianhydride (1) and 1,2,4,5-benzenetetracarboxylic dianhydride (2) with arylalkyl primary amines (A-N). The carbamoylcarboxylic acid derivatives were synthesized with good yield and high purity. The specific reaction conditions were established to obtain carbamoyl and carboxylic acid functionalities over the thermodynamically most favored imide group. Products derived from both anhydrides 1 and 2 were isolated as pure regioisomeric compounds under innovative experimental conditions. The chemo- and regioselectivity of products derived from dianhydrides were determined by NMR spectroscopy and confirmed by density functional theory (DFT). All products were characterized by NMR, FTIR, and MS.Entities:
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Year: 2014 PMID: 24511299 PMCID: PMC3913102 DOI: 10.1155/2014/725981
Source DB: PubMed Journal: ScientificWorldJournal ISSN: 1537-744X
Figure 1Carbamoybenzoic acids as monotopic ligands in organometallic complexes.
Scheme 1Synthesis of polyimides from aromatic dianhydrides.
Scheme 2Synthesis of diimides from aromatic dianhydrides.
Figure 2Substrates used for the synthesis of bis(carbamoylcarboxylic) acids.
Yields for bis(carbamoylcarboxylic) acids.
| Amine | Products | |
|---|---|---|
|
|
| |
|
| 92 | >98 |
|
| 60 | 68 |
|
| 63 | 89 |
|
| >98 | 82 |
|
| 83 | 63 |
|
| 85 | 90 |
|
| >98 | 80 |
|
| >98 | 86 |
|
| >98 | >98 |
|
| 96 | 82 |
|
| 63 | 86 |
|
| 74 | 71 |
|
| >98 | 84 |
|
| 98 | 98 |
Scheme 3Plausible regioisomers obtained on the synthesis of 4,4′-carbonyl bis(2-carbamoylbenzoic) acids.
Figure 3NMR titration of 3N with Ca2+ ions in DMSO-d 6.
Scheme 4Plausible regioisomers obtained on the synthesis of bis(carbamoyl) terephthalic acids.
Figure 4The Fukui function calculated for atoms involved in the ring-opening of dianhydride 1.
Figure 5Energy diagram for the reaction pathway of dianhydride 1 and benzylamine.
Figure 6The Fukui function calculated for atoms involved in the ring-opening of dianhydride 2.
Figure 7Optimized geometries of a monocarbamoylcarboxylic acid intermediate indicating Fukui function values. (a) No intramolecular hydrogen bond. (b) Intramolecular hydrogen bond.
Figure 8Energy diagram for the reaction pathway of dianhydride 2 and benzylamine.