Polarizing the Be–Be bond
Author:
Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41557-024-01548-3.pdf
Reference6 articles.
1. Boronski, J. T., Crumpton, A. E., Wales, L. L. & Aldridge, S. Diberyllocene, a stable compound of Be(I) with a Be-Be bond. Science. 380, 1147–1149 (2023). This paper reports a stable complex featuring a homo-elemental Be–Be bond.
2. Naglav, D., Buchner, M. R., Bendt, G., Kraus, F. & Schulz, S. Off the beaten track—a hitchhiker’s guide to beryllium chemistry. Angew. Chem. Int. Ed. 55, 10562–10576 (2016). A comprehensive introduction to the chemistry of beryllium, along with practical and synthetic considerations.
3. Evans, M. J. & Jones, C. Low oxidation state and hydrido group 2 complexes: synthesis and applications in the activation of gaseous substrates. Chem. Soc. Rev. 53, 5054–5082 (2024). A review article that presents a detailed look at the range of low-oxidation-state alkaline earth metal complexes.
4. Boronski, J. T. et al. Inducing nucleophilic reactivity at beryllium with an aluminyl ligand. J. Am. Chem. Soc. 145, 4408–4413 (2023). This paper reports a nucleophilic beryllium complex.
5. Couchman, S. A., Holzmann, N., Frenking, G., Wilson, D. J. D. & Dutton, J. L. Beryllium chemistry the safe way: a theoretical evaluation of low oxidation state beryllium compounds. Dalton. Trans. 42, 11375–11384 (2013). A theoretical study of low-oxidation-state beryllium complexes.
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