2011CrystEngCommRequires access

Crystal data behind efficient cesium recognition: triphenylcyanoborates of potassium, rubidium, and cesium

Alexander Y. Nazarenko, Victor N. Nemykin

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Abstract

Crystal structures of potassium, rubidium, and cesium triphenylcyanoborates were investigated in order to explain high selectivity of triphenylcyanoborate ion (“caesignost”) as an agent for cesium precipitation. Alkali metal ions have substantially different coordination modes with triphenylcyanoborate ion coordinated to the cyano group in the end-on or side-on motif and to the phenyl group in the π–M+ motif.

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Crystal structures of potassium, rubidium, and cesium triphenylcyanoborates were investigated in order to explain high selectivity of triphenylcyanoborate ion (“caesignost”) as an agent for cesium precipitation. Alkali metal ions have substantially different coordination modes with triphenylcyanoborate ion coordinated to the cyano group in the end-on or side-on motif and to the phenyl group in the π–M+ motif.

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Available abstract

Crystal structures of potassium, rubidium, and cesium triphenylcyanoborates were investigated in order to explain high selectivity of triphenylcyanoborate ion (“caesignost”) as an agent for cesium precipitation. Alkali metal ions have substantially different coordination modes with triphenylcyanoborate ion coordinated to the cyano group in the end-on or side-on motif and to the phenyl group in the π–M+ motif.

Key concepts: Rubidium, Caesium, Alkali metal, Potassium, Ion, Chemistry, Selectivity, Crystal structure

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Crystal data behind efficient cesium recognition: triphenylcyanoborates of potassium, rubidium, and cesium — Research Paper | ScholarLens