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Hydrogen production from ammonia using sodium amide
David WIF, et al.
Journal of the American Chemical Society, 136(38), 13082-13085 (2014)
André M Bienfait et al.
Dalton transactions (Cambridge, England : 2003), 43(46), 17324-17332 (2014-10-17)
Trivalent Eu[N(SiHMe2)2]3(THF)2 can easily be synthesized by applying a routine salt metathesis protocol (EuCl3(THF)2 and 3 equiv. of Li[N(SiHMe2)2] in n-hexane) which crystallizes isotypically to its analogues of the rare-earth metal series (space group P21/c). Transsilylamination of Eu[N(SiMe3)2]2(THF)2 with a...
Thomas J Wood et al.
Physical chemistry chemical physics : PCCP, 17(35), 22999-23006 (2015-08-14)
We demonstrate that the ammonia decomposition reaction catalysed by sodium amide proceeds under a different mechanism to ammonia decomposition over transition metal catalysts. Isotopic variants of ammonia and sodium amide reveal a significant kinetic isotope effect in contrast to the...
The reactions in LiBH4-NaNH2 hydrogen storage system
Zhang Y and Tian Q
International Journal of Hydrogen Energy, 36(16), 9733-9742 (2011)
N-doped porous carbons from low-temperature and single-step sodium amide activation of carbonized water chestnut shell with excellent CO2 capture performance
Rao L, et al.
Chemical Engineering Journal, 359(16), 428-435 (2019)
Highly efficient CO2 adsorption by nitrogen-doped porous carbons synthesized with low-temperature sodium amide activation
Wang L, et al.
Carbon, 130(16), 31-40 (2018)
Thermal decomposition kinetics of light-weight composite NaNH2-NaBH4 hydrogen storage materials for fuel cells
Bai Y, et al.
International Journal of Hydrogen Energy, 37(17), 12973-12979 (2012)