Stabilization Of The CN35− Anion In Recoverable High‐pressure Ln3O2(CN3) (Ln=La, Eu, Gd, Tb, Ho, Yb) Oxoguanidinates

Author:

Aslandukov Andrey12ORCID,Jurzick Pascal L.3ORCID,Bykov Maxim3ORCID,Aslandukova Alena1ORCID,Chanyshev Artem1ORCID,Laniel Dominique4ORCID,Yin Yuqing2ORCID,Akbar Fariia I.1ORCID,Khandarkhaeva Saiana1ORCID,Fedotenko Timofey5ORCID,Glazyrin Konstantin5ORCID,Chariton Stella6ORCID,Prakapenka Vitali6ORCID,Wilhelm Fabrice7ORCID,Rogalev Andrei7ORCID,Comboni Davide7ORCID,Hanfland Michael7ORCID,Dubrovinskaia Natalia28ORCID,Dubrovinsky Leonid1ORCID

Affiliation:

1. Bayerisches Geoinstitut University of Bayreuth Universitätstrasse 30 95440 Bayreuth Germany

2. Material Physics and Technology at Extreme Conditions Laboratory of Crystallography University of Bayreuth Universitätstrasse 30 95440 Bayreuth Germany

3. Institute of Inorganic Chemistry University of Cologne Greinstrasse 6 50939 Cologne Germany

4. Centre for Science at Extreme Conditions and School of Physics and Astronomy University of Edinburgh EH9 3FD Edinburgh United Kingdom

5. Deutsches Elektronen-Synchrotron DESY Notkestrasse 85 22607 Hamburg Germany

6. Center for Advanced Radiation Sources University of Chicago Chicago Illinois 60637 USA

7. European Synchrotron Radiation Facility BP 220 38043 Grenoble Cedex France

8. Department of Physics Chemistry and Biology (IFM) Linköping University SE-581 83 Linköping Sweden

Abstract

AbstractA series of isostructural Ln3O2(CN3) (Ln=La, Eu, Gd, Tb, Ho, Yb) oxoguanidinates was synthesized under high‐pressure (25–54 GPa) high‐temperature (2000–3000 K) conditions in laser‐heated diamond anvil cells. The crystal structure of this novel class of compounds was determined via synchrotron single‐crystal X‐ray diffraction (SCXRD) as well as corroborated by X‐ray absorption near edge structure (XANES) measurements and density functional theory (DFT) calculations. The Ln3O2(CN3) solids are composed of the hitherto unknown CN35− guanidinate anion—deprotonated guanidine. Changes in unit cell volumes and compressibility of Ln3O2(CN3) (Ln=La, Eu, Gd, Tb, Ho, Yb) compounds are found to be dictated by the lanthanide contraction phenomenon. Decompression experiments show that Ln3O2(CN3) compounds are recoverable to ambient conditions. The stabilization of the CN35− guanidinate anion at ambient conditions provides new opportunities in inorganic and organic synthetic chemistry.

Funder

Deutsche Forschungsgemeinschaft

UK Research and Innovation

Publisher

Wiley

Subject

General Medicine

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