## Abstract A new ester of Monensin A with ethylene glycol (MON2) has been synthesized by a new method and its ability to form complexes with Li^+^, Na^+^, and K^+^ cations has been studied by ESI MS, ^1^H and ^13^C NMR, FT–IR, and PM5 semiempirical methods. It is demonstrated that MON2 forms stabl
Spectroscopic, mass spectrometry, and semiempirical investigations of a new 2-(2-methoxyethoxy)ethyl ester of Monensin A and its complexes with monovalent cations
✍ Scribed by Adam Huczyński; Daniel Łowicki; Bogumil Brzezinski; Franz Bartl
- Publisher
- Elsevier Science
- Year
- 2008
- Tongue
- English
- Weight
- 941 KB
- Volume
- 879
- Category
- Article
- ISSN
- 0022-2860
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✦ Synopsis
A new 2-(2-methoxyethoxy)ethyl ester of Monensin A (MON7) has been synthesized and its capability of complex formation with Li + , Na + , and K + cations has been studied by ESI MS, 1 H and 13 C NMR, FT-IR, and PM5 semiempirical methods. ESI mass spectrometry indicates that MON7 forms complexes with Li + , Na + , and K + of exclusively 1:1 stoichiometry which are stable up to cv = 70 V. The formation of complexes between MON7 and Na + cations is strongly favored. Starting from about cv = 90 V fragmentation of the respective complexes is observed, primarily characterized by several dehydration steps. The structures of the MON7 complexes with Li + , Na + , and K + cations are stabilized by intramolecular hydrogen bonds in which the OH groups are always involved. The structures are visualized and discussed in detail. It has been proved that the formation of a pseudo crown ring structure formed by MON7 is preferred in complexes with Na + cations.
📜 SIMILAR VOLUMES
Monensin A benzyl ester (MON3) was synthesized and its ability to form complexes with Li + , Na + and K + cations was studied by ESI MS, 1 H and 13 C NMR, FT-IR and PM5 semiempirical methods. MON3 has been found to preferentially form complex with Na + cations. The formation of stable complexes of 1
A new 2-methoxyethyl ester of monensin A (MON5) has been synthesized and its capability of complex formation with Li + , Na + and K + cations has been studied by ESI MS, 1 H and 13 C NMR, FT-IR and PM5 semiempirical methods. ESI mass spectrometry indicates that MON5 forms complexes with Li + , Na +