2017•Dalton TransactionsRequires access

Amidoboranes of rubidium and caesium: the last missing members of the alkali metal amidoborane family

Rafał Owarzany, Tomasz Jaroń, Piotr J. Leszczyński, Karol J. Fijałkowski, Wojciech Grochala

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Abstract

). Both compounds undergo solid-solid phase transition upon heating and then evolve pure hydrogen at temperatures lower than 125 °C. The phase transition is clearly seen in the Raman spectra. We present crystal structures of both low- and high-temperature forms of the title compounds which were solved from powder X-ray data.

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). Both compounds undergo solid-solid phase transition upon heating and then evolve pure hydrogen at temperatures lower than 125 °C. The phase transition is clearly seen in the Raman spectra. We present crystal structures of both low- and high-temperature forms of the title compounds which were solved from powder X-ray data.

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Available abstract

). Both compounds undergo solid-solid phase transition upon heating and then evolve pure hydrogen at temperatures lower than 125 °C. The phase transition is clearly seen in the Raman spectra. We present crystal structures of both low- and high-temperature forms of the title compounds which were solved from powder X-ray data.

Key concepts: Rubidium, Caesium, Alkali metal, Phase (matter), Chemistry, Inorganic chemistry, Radiochemistry, Potassium

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