## Abstract The oxidation of symmetrical disulfides [D,L‐cystine (**1**) and 3,3′‐dithiobis(propionic acid) (**2**)] with hydrogen peroxide in D~2~O–NaOH solution (pH 10–11) was studied by NMR spectroscopy. Assignments of the proton and carbon NMR signals of starting materials (**1** and **2**) and
Low-Barrier Hydrogen Bonding in Aqueous and Aprotic Solutions of Dicarboxylic Acids: Spectroscopic Characterization
✍ Scribed by Constance S. Cassidy; Jing Lin; John B. Tobin; Perry A. Frey
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 143 KB
- Volume
- 26
- Category
- Article
- ISSN
- 0045-2068
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✦ Synopsis
We present additional spectroscopic evidence for the formation of low-barrier hydrogen bonds (LBHBs) within vicinal and geminal dicarboxylic acid monoanions. Hydrogen ciscyclohexane 1,2-dicarboxylate, displays low-field 1 H NMR signals in aprotic solvents at 19.3 to 19.7 ppm, depending on the solvent. The LBHB in hydrogen 2,2-dimethylmalonate is further characterized by the observation of a positive value for the deuterium isotope effect on the chemical shift, ⌬[ͳ H Ϫ ͳ D ], of 0.8 Ϯ 0.3 ppm. Low-field 1 H NMR signals are not observed for hydrogen trans-cyclohexane 1,2-dicarboxylate, hydrogen succinate, or hydrogen malonate under the same conditions. These compounds lack internal structural constraints forcing close contact between the caboxylic acids, although close contacts are possible, confirming that compression of carboxylic acid groups facilitates LBHB formation. Internally strained dicarboxylic acid monoanions also display low field 1 H NMR signals in aqueous solutions (90/10, acetone-d 6 /H 2 O) at low temperatures, at which proton exchange is slowed. The low field signals at Ϫ50ЊC are centered at 20.2 ppm for hydrogen maleate, 19.0 ppm for hydrogen 2,2-dimethylmalonate, and at 19.2 ppm for hydrogen cis-cyclohexane 1,2dicarboxylate.
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