Nitrides, compounds formed by nitrogen with other elements, play a crucial role in catalysis, chemical engineering, and technology. In catalysis, nitrides serve as catalysts or catalyst supports due to their unique surface properties and high surface area, aiding in various chemical transformations. In chemical engineering, they find applications in the synthesis of ammonia, a fundamental component of fertilizers and various industrial processes. Moreover, nitrides are pivotal in technology, especially in semiconductor fabrication, where they serve as essential materials for high-performance electronic devices like LEDs, lasers, and power electronics. Their exceptional properties, such as high thermal conductivity and chemical stability, make them indispensable in advancing technologies. Overall, nitrides contribute significantly to catalysis, chemical engineering processes, and cutting-edge technological advancements.
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Stanislaw Dzwigaj, Sorbonne University, France
Title : Bioelectrocatalytic materials based on buckypapers and biosourced glyconanoparticles
Serge Cosnier, Universie Grenoble Alpes, France
Title : Human nanomedicine: Catalysts for improving health in the clinic
Thomas J Webster, Interstellar Therapeutics, United States
Title : Solution of the millennium problem concerning the Navier-Stokes equations
Alexander G Ramm, Kansas State University, United States
Title : Distal functionalization via transition metal catalysis
Haibo Ge, Texas Tech University, United States
Title : Plastic Trash to Monomers and Intermediates – PTMI
Anne M Gaffney, University of South Carolina, United States
Title : Role of supplemented nutrients and intermediate temperature on bio-methane generation from anaerobic digestion of agricultural waste: Feasibility & Fertilizer recovery
Md Nurul Islam Siddique, University Malaysia Terengganu, Malaysia
Title : CO2 hydrogenation to methanol over Cu/TiO2 catalysts: The role of oxygen vacancies in CO2 activation
Ziyi Zhong, Guangdong Technion-Israel Institute of Technology, China
Title : Highly rotationally excited N2 of N2O dissociation on Pd(110) surface
Zibo Zhao, Max Planck Institute for Multidisciplinary Sciences, China