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- Compositional flexibility in Li–N–H materials: implications for ammonia catalysis and hydrogen storage. Joshua W. Makepeace, Jake M. Brittain, Alisha Sukhwani Manghnani, Claire A. Murray, Thomas J. Wood, William I. F. David
, Phys. Chem. Chem. Phys.
, 2021
, 23
, 15091
- Reactions of lithium nitride with cerium, thorium, and hafnium: formation of Li2CeN2, Ce2N2O, Li2ThN2, and Li2HfN2. Marten G. Barker, Iain C. Alexander
, J. Chem. Soc., Dalton Trans.
, 1974
, 2166
- Effect of transition metal (M = Co, Ni, Cu) substitution on electronic structure and vacancy formation of Li3N. Shunnian Wu, Zhili Dong, Ping Wu, Freddy Boey
, J. Mater. Chem.
, 2011
, 21
, 165
- Single-ion magnetism in the extended solid-state: insights from X-ray absorption and emission spectroscopy. Myron S. Huzan, Manuel Fix, Matteo Aramini, Peter Bencok, J. Frederick W. Mosselmans, Shusaku Hayama, Franziska A. Breitner, Leland B. Gee, Charles J. Titus, Marie-Anne Arrio, Anton Jesche, Michael L. Baker
, Chem. Sci.
, 2020
, 11
, 11801
- Lithium–nitrogen–hydrogen systems for ammonia synthesis: exploring a more efficient pathway using lithium nitride–hydride. Manoj Ravi, Joshua W. Makepeace
, Chem. Commun.
, 2022
, 58
, 6076
- Modification of the hydrogen
storage properties of Li3N by confinement into mesoporous carbons. Rezan Demir-Cakan, Wan Si Tang, Ali Darwiche, Raphaël Janot
, Energy Environ. Sci.
, 2011
, 4
, 3625
- Nitrogen fixation and transformation with main group elements. Tong-Tong Liu, Dan-Dan Zhai, Bing-Tao Guan, Zhang-Jie Shi
, Chem. Soc. Rev.
, 2022
, 51
, 3846
- Atomic layer deposition of lithium nitride and carbonate using lithium silylamide. Erik Østreng, Ponniah Vajeeston, Ola Nilsen, Helmer Fjellvåg
, RSC Adv.
, 2012
, 2
, 6315
- Lithium nitrides, imides and amides as lightweight, reversible hydrogen stores. Duncan H. Gregory
, J. Mater. Chem.
, 2008
, 18
, 2321
- Low-temperature routes to early transition-metal nitrides. Jonathan C. Fitzmaurice, Andrew L. Hector, Ivan P. Parkin
, J. Chem. Soc., Dalton Trans.
, 1993
, 2435