1 - 1 |
Preface Hargreaves JSJ |
2 - 13 |
Progress in the Electrochemical Synthesis of Ammonia Kyriakou V, Garagounis I, Vasileiou E, Vourros A, Stoukides M |
14 - 20 |
Role of alkali promoter in ammonia synthesis over ruthenium catalysts-Effect on reaction mechanism Aika K |
21 - 40 |
Coordination chemistry insights into the role of alkali metal promoters in dinitrogen reduction Connor GP, Holland PL |
41 - 50 |
Electrocatalytic ammonia synthesis via a proton conducting oxide cell with BaCe0.5Zr0.3Y0.16Zn0.04O3-delta electrolyte membrane Klinsrisuk S, Irvine JTS |
51 - 56 |
Electrochemical synthesis of ammonia from wet nitrogen via a dual-chamber reactor using La0.6Sr0.4Co0.2Fe0.8O3-delta-Ce0.8Gd0.18Ca0.02O2-delta composite cathode Amar IA, Lan R, Humphreys J, Tao SW |
57 - 68 |
Recent progress towards the electrosynthesis of ammonia from sustainable resources Shipman MA, Symes MD |
69 - 77 |
Onset potentials for different reaction mechanisms of nitrogen activation to ammonia on transition metal nitride electro-catalysts Abghoui Y, Skulason E |
78 - 84 |
Electrochemical synthesis of ammonia via Mars-van Krevelen mechanism on the (111) facets of group III-VII transition metal mononitrides Abghoui Y, Skulason E |
85 - 100 |
The inhibitor role of NH3 on its synthesis process at low temperature, over Ru catalytic nanoparticles Leterme C, Fernandez C, Eloy P, Gaigneaux EM, Ruiz P |
101 - 113 |
Activity of iron pyrite towards low-temperature ammonia production Temprano I, Liu T, Jenkins SJ |
114 - 117 |
Wustite based iron-cobalt catalyst for ammonia synthesis Czekajlo L, Lendzion-Bielun Z |
118 - 123 |
A method of determining nanoparticle size distribution in iron ammonia synthesis catalyst by measuring mass changes during the nitriding process Pelka R |
124 - 130 |
Computational screening of perovskite redox materials for solar thermochemical ammonia synthesis from N-2 and H2O Michalsky R, Steinfeld A |
131 - 140 |
Ammonia decomposition over cobalt/carbon catalysts-Effect of carbon support and electron donating promoter on activity Torrente-Murciano L, Hill AK, Bell TE |
141 - 146 |
Influence of alkali metal amides on the catalytic activity of manganese nitride for ammonia decomposition Chang F, Guo JP, Wu GT, Wang PK, Yu P, Chen P |
147 - 155 |
Nitrogen transfer properties in tantalum nitride based material Laassiri S, Zeinalipour-Yazdi CD, Catlow CRA, Hargreaves JSJ |