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Recent Progress on Transition Metal Nitrides Nanoparticles as Heterogeneous Catalysts

机译:过渡金属氮化物纳米粒子作为多相催化剂的最新进展

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摘要

This short review aims at providing an overview of the most recent literature regarding transition metal nitrides (TMN) applied in heterogeneous catalysis. These materials have received renewed attention in the last decade due to its potential to substitute noble metals mainly in biomass and energy transformations, the decomposition of ammonia being one of the most studied reactions. The reactions considered in this review are limited to thermal catalysis. However the potential of these materials spreads to other key applications as photo- and electrocatalysis in hydrogen and oxygen evolution reactions. Mono, binary and exceptionally ternary metal nitrides have been synthetized and evaluated as catalysts and, in some cases, promoters are added to the structure in an attempt to improve their catalytic performance. The objective of the latest research is finding new synthesis methods that allow to obtain smaller metal nanoparticles and increase the surface area to improve their activity, selectivity and stability under reaction conditions. After a brief introduction and description of the most employed synthetic methods, the review has been divided in the application of transition metal nitrides in the following reactions: hydrotreatment, oxidation and ammonia synthesis and decomposition.
机译:这篇简短的综述旨在概述有关应用于非均相催化的过渡金属氮化物(TMN)的最新文献。在过去的十年中,由于这些材料主要在生物质和能量转换中替代贵金属的潜力而受到了新的关注,氨的分解是研究最多的反应之一。本文中考虑的反应仅限于热催化。但是,这些材料的潜力已扩展到其他关键应用,例如氢气和氧气逸出反应中的光催化和电催化。一元,二元和异常三元金属氮化物已经合成并评估为催化剂,在某些情况下,助催化剂被添加到结构中以试图改善其催化性能。最新研究的目的是发现新的合成方法,这些方法可制得较小的金属纳米颗粒,并增加表面积以提高其在反应条件下的活性,选择性和稳定性。在对最常用的合成方法进行简要介绍和描述之后,对过渡金属氮化物在以下反应中的应用进行了综述:加氢处理,氧化以及氨合成和分解。

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