Although metal nitrides are predicted to be numerous, the stability of nitrogen triple bonds found in N2, especially in comparison to the metal–nitrogen bonds, has considerably hindered synthetic efforts to produce complex nitride compounds. Of particular interest are the ternary (ABN) or higher-order nitrides with high metal-to-nitrogen ratios that show promise in enhancing NH3 synthesis reaction rates and yields via heterogeneous catalysis or chemical looping. Over the past few decades, inorganic nitride materials have grown in importance in part due to their potential as catalysts for the synthesis of NH3, a key ingredient in fertilizer and precursor to industrial chemicals. Synthesis and Structural Study of Substituted Ternary Nitrides for Ammonia Production.pdf AIP Conference Proceedings - SolarPACES.Papers Published in Peer-Reviewed Journals.VI Solar Energy and Water Processes and Applications.V Solar Resource - High Penetration, Large Scale Applications.IV Solar Heat Integration in Industrial Processes.III Solar Technology and Advanced Applications.Solar Thermal Energy Potential by Country.Current CSP Research Funding Opportunities.Current Job Openings in CSP Research and on CSP Projects.International Affiliated SolarPACES Research Facilities.CSP Projects Around the World - NREL database.Join SolarPACES – Membership Information.SolarPACES (Solar Power And Chemical Energy Systems).
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