Literature DB >> 15554626

Selective solid-liquid extraction of lithium halide salts using a ditopic macrobicyclic receptor.

Joseph M Mahoney1, Alicia M Beatty, Bradley D Smith.   

Abstract

A ditopic salt receptor that is known to bind and extract solid NaCl, KCl, NaBr, and KBr into organic solution as their contact ion pairs is now shown by NMR and X-ray crystallography to bind and extract solid LiCl and LiBr as water-separated ion pairs. The receptor can transport these salts from an aqueous phase through a liquid organic membrane with a cation selectivity of K+ > Na+ > Li+. However, the selectivity order is strongly reversed when the receptor extracts solid alkali metal chlorides and bromides into organic solution. For a three-component mixture of solid LiCl, NaCl, and KCl, the ratio of salts extracted and complexed to the receptor in CDCl3 was 94:4:2, respectively. The same strong lithium selectivity was also observed in the case of a three-component mixture of solid LiBr, NaBr, and KBr where the ratio of extracted salts was 92:5:3. This observation is attributed to the unusually high solubility of lithium salts in organic solvents. The study suggests that ditopic receptors with an ability to extract solid salts as associated ion pairs may have application in separation processes.

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Year:  2004        PMID: 15554626     DOI: 10.1021/ic049066b

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  10 in total

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3.  Computational investigation of a new ion-pair receptor for calix[4]pyrrole.

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4.  Lithium-selective phosphine oxide-based ditopic receptors show enhanced halide binding upon alkali metal ion coordination.

Authors:  Jesse V Gavette; Juven Lara; Linda L Reling; Michael M Haley; Darren W Johnson
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5.  Crown-6-calix[4]arene-capped calix[4]pyrrole: an ion-pair receptor for solvent-separated CsF ions.

Authors:  Jonathan L Sessler; Sung Kuk Kim; Dustin E Gross; Chang-Hee Lee; Jong Seung Kim; Vincent M Lynch
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6.  Binding of group 15 and group 16 oxides by a concave host containing an isophthalamide unit.

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7.  4-Phosphoryl Pyrazolones for Highly Selective Lithium Separation from Alkali Metal Ions.

Authors:  Jianfeng Zhang; Marco Wenzel; Johannes Steup; Gerrit Schaper; Felix Hennersdorf; Hao Du; Shili Zheng; Leonard F Lindoy; Jan J Weigand
Journal:  Chemistry       Date:  2021-11-05       Impact factor: 5.020

8.  Selective lithium ion recognition in self-assembled columnar liquid crystals based on a lithium receptor.

Authors:  Yuan Luo; Nicolas Marets; Takashi Kato
Journal:  Chem Sci       Date:  2017-11-01       Impact factor: 9.825

9.  The Effect of Substitution Pattern on Binding Ability in Regioisomeric Ion Pair Receptors Based on an Aminobenzoic Platform.

Authors:  Damian Jagleniec; Krzysztof Ziach; Kajetan Dąbrowa; Jan Romański
Journal:  Molecules       Date:  2019-08-18       Impact factor: 4.411

10.  Mechanical Bond Enhanced Lithium Halide Ion-Pair Binding by Halogen Bonding Heteroditopic Rotaxanes.

Authors:  Vihanga K Munasinghe; Jessica Pancholi; Dilhan Manawadu; Zongyao Zhang; Paul D Beer
Journal:  Chemistry       Date:  2022-07-06       Impact factor: 5.020

  10 in total

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