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1,3,7-trimethyl-3,7-dihydro-1H-purine-2,6-dione 2-hydroxypropane-1,2,3-tricarboxylate (1:1) is a complex organic compound with the chemical formula C15H19N4O9. 1,3,7-trimethyl-3,7-dihydro-1H-purine-2,6-dione 2-hydroxypropane-1,2,3-tricarboxylate (1:1) is a derivative of the purine family, which is a group of organic compounds that are a fundamental component of nucleic acids, such as DNA and RNA. The specific compound in question features a 1H-purine-2,6-dione core, which is a key structure in many biologically active molecules. The trimethyl groups and the dihydro functionality indicate modifications to the basic purine structure, potentially altering its chemical properties and interactions. The 2-hydroxypropane-1,2,3-tricarboxylate part of the name suggests the presence of a hydroxypropane moiety with three carboxylate groups, which can participate in various chemical reactions due to its acidic nature. 1,3,7-trimethyl-3,7-dihydro-1H-purine-2,6-dione 2-hydroxypropane-1,2,3-tricarboxylate (1:1) is likely to be found in the context of pharmaceuticals or biochemistry, where such complex structures can have specific biological activities or serve as intermediates in the synthesis of other compounds.

2406-91-9

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2406-91-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2406-91-9 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,4,0 and 6 respectively; the second part has 2 digits, 9 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 2406-91:
(6*2)+(5*4)+(4*0)+(3*6)+(2*9)+(1*1)=69
69 % 10 = 9
So 2406-91-9 is a valid CAS Registry Number.

2406-91-9Downstream Products

2406-91-9Relevant academic research and scientific papers

Stability order of caffeine co-crystals determined by co-crystal former exchange reaction and its application for the validation of in Silico models

Mukaida, Makoto,Sugano, Kiyohiko,Terada, Katsuhide

, p. 18 - 24 (2015)

The purpose of the present study was to determine the thermodynamic stability orders of co-crystals by co-crystal former (CCF) exchange reactions. Caffeine (CA) was employed as a model drug. The CCF exchange reaction was performed by liquid-assisted grind

Testing the limits of NMR crystallography: The case of caffeine-citric acid hydrate

Kerr, Hannah E.,Mason, Helen E.,Sparkes, Hazel A.,Hodgkinson, Paul

, p. 6700 - 6707 (2016/09/09)

The crystal structure of a new 1:2 caffeine-citric acid hydrate cocrystal is presented. The caffeine molecules are disordered over two positions, with the nature of the disorder confirmed to be static by 13C solid-state NMR. NMR linewidths in statically disordered systems reflect the distribution of local chemical environments, and this study investigates whether the disorder contribution to 13C linewidths can be predicted computationally. The limits of NMR crystallography calculations using density functional theory are tested by investigating how geometry optimisation conditions affect calculated NMR parameters. Careful optimisation is shown to reduce differences between 13C constants of symmetry-related sites to about 0.1 ppm. This is just sufficient to observe a correlation between calculated and experimental linewidths, and also show that systematic errors associated with geometry optimisation do not compromise other applications of "NMR crystallography". In addition, the unit cell enthalpies calculated after careful optimisations provide insight into why the disordered structure is adopted.

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