amidophosphoric acid
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2020 ◽  
Vol 235 (3) ◽  
pp. 69-84 ◽  
Author(s):  
Marjan Sadat Bozorgvar ◽  
Atekeh Tarahhomi ◽  
Arie van der Lee

AbstractStructural and packing features of three new amidophosphoric acid esters having a common part XP(O)[OCH2C(CH3)2CH2O], with X = [(CH3)3CNH] (1), [(CH3)2HCNH] (2) and [C6H11(CH3)N] (3), are investigated by single crystal X-ray diffraction. The results illustrate that the compounds 1 and 3 crystallize with one independent molecule in the asymmetric unit; whereas, for 2, the compound crystallizes with three independent molecules in the asymmetric unit. The crystal structures are mostly stabilized via tri-furcated hydrogen bond interactions (C–H · · ·)2(N–H · · ·)O=P in 1 and (C–H · · ·)3O=P in 3, while the stability is given by bi-furcated hydrogen bond interactions (C–H · · ·)(N–H · · ·)O=P in 2. For a better understanding of the nature, strength and energetics associated with the formation of the quoted multi-center hydrogen bond interactions, the Natural Bond Order (NBO) method from Density Functional Theory (DFT) and a topological analysis by means of Atoms In Molecules (AIM) and Hirshfeld surface procedures were performed. These studies reveal that the studied multi-center hydrogen bond interactions of the type O · · · H are favoured in the crystal packing displaying enrichment ratios larger than unity. The detailed nature of the different interactions in these multi-center interactions is studied for the first time in such compounds. It is shown that the N–H · · · O interaction is rather non-covalent closed-shell whereas the C–H · · · O interaction is more van der Waals closed-shell. Stronger hydrogen bond interactions are observed for a lower multiple H-atom acceptor oxygen in three-center hydrogen bond interactions (C–H · · ·)(N–H · · ·)O=P of 2 than for four-center interactions in 1 [i.e. (C–H · · ·)2(N–H · · ·)O=P] and 3 [i.e. (C–H · · ·)3O=P]. The better H-atom acceptability of the O atom of P=O compared with the esteric O atom is explained by the richer s-character of the hybrid orbital of the O atom acceptor of P=O coupled with enhance of the polarization and charge. The obtained results are also confirmed by Molecular Electrostatic Potential (MEP).


ChemInform ◽  
1989 ◽  
Vol 20 (31) ◽  
Author(s):  
N. K. MIKHAILYUCHENKO ◽  
B. N. KOZHUSHKO ◽  
V. A. SHOKOL

1984 ◽  
Vol 39 (1) ◽  
pp. 121-122 ◽  
Author(s):  
Fritz Seel ◽  
Norbert Klein

A nearly saturated solution of amidophosphoric acid in water hydrolyses to yield diammonium diphosphate. This reaction provides a diphosphate synthesis in water starting with a solution of N- methylcarbamoylphosphate which is readily ob­tained through the action of methylisocyanate upon the aqueous solution of a hydrogenphosphate.


1983 ◽  
Vol 38 (7) ◽  
pp. 804-807 ◽  
Author(s):  
Fritz Seel ◽  
N. Klein

Abstract The synthesis of various amidophosphates can be readily accomplished in aqueous solutions by the reaction of amines with solutions of sodium, potassium or ammonium N-methylcarbamoyl phosphate, prepared by the reaction of methylisocyanate with the corresponding hydrogen phosphates. Procedures for the synthesis of NH4[O3PNH3] and Ca[O3PNH2CH3]2 · 4 H2O are described in detail.


1968 ◽  
Vol 2 (2) ◽  
pp. 84-87
Author(s):  
I. E. Mamaeva ◽  
N. V. Sazonov ◽  
A. A. Kropacheva
Keyword(s):  

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