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Study of Hydrolysis of Nitrile Derivatives of closo-Dodecaborate Anion (Et4N)[B12H11N≡C–R] (R = Me, Et, nPr, iPr)

The reaction of nitrile derivatives of closo -dodecaborate anion (Et 4 N)[B 12 H 11 N≡C–R] (R = Me, Et, n Pr, i Pr) with water has yielded a series of (Et 4 N)[B 12 H 11 NH=C(OH)–R] iminols. It has been demonstrated that the hydrolysis products are in acid–base iminol–amide equilibrium, which can be...

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Published in:Russian journal of inorganic chemistry 2023-06, Vol.68 (6), p.684-689
Main Authors: Nelyubin, A. V., Klyukvin, I. N., Selivanov, N. A., Bykov, A. Yu, Kubasov, A. S., Zhdanov, A. P., Zhizhin, K. Yu, Kuznetsov, N. T.
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container_title Russian journal of inorganic chemistry
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creator Nelyubin, A. V.
Klyukvin, I. N.
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Kuznetsov, N. T.
description The reaction of nitrile derivatives of closo -dodecaborate anion (Et 4 N)[B 12 H 11 N≡C–R] (R = Me, Et, n Pr, i Pr) with water has yielded a series of (Et 4 N)[B 12 H 11 NH=C(OH)–R] iminols. It has been demonstrated that the hydrolysis products are in acid–base iminol–amide equilibrium, which can be controlled by changing the pH of a medium. The reaction products have been identified by 11 В, 1 Н, 13 С NMR, IR spectroscopy, and ESI mass spectrometry. The structures of the [B 12 H 11 ( Z -NH=C(OH) n C 3 H 7 )] − and [B 12 H 11 ( E -NH–C(O) n C 3 H 7 )] 2− anions have been determined by X-ray single-crystal diffraction.
doi_str_mv 10.1134/S003602362360048X
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subjects Anions
Chemistry
Chemistry and Materials Science
Hydrolysis
Infrared spectroscopy
Inorganic Chemistry
Mass spectrometry
NMR
Nuclear magnetic resonance
Reaction products
Single crystals
Synthesis and Properties of Inorganic Compounds
title Study of Hydrolysis of Nitrile Derivatives of closo-Dodecaborate Anion (Et4N)[B12H11N≡C–R] (R = Me, Et, nPr, iPr)
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