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Bulk phase behavior of lithium imide-metal nitride ammonia decomposition catalysts

机译:锂酰亚胺 - 金属氮化物氨分解催化剂的批量相行为

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Lithium imide is a promising new catalyst for the production of hydrogen from ammonia. Its catalytic activity has been reported to be significantly enhanced through its use as a composite with various transition metal nitrides. In this work, two of these composite catalysts (with manganese nitride and iron nitride) were examined using in situ neutron and X-ray powder diffraction experiments in order to explore the bulk phases present during ammonia decomposition. Under such conditions, the iron composite was found to be a mixture of lithium imide and iron metal, while the manganese composite contained lithium imide and manganese nitride at low temperatures, and a mixture of lithium imide and two ternary lithium-manganese nitrides (LixMn2-xN and a small proportion of Li7MnN4) at higher temperatures. The results indicate that the bulk formation of a ternary nitride is not necessary for ammonia decomposition in lithium imide-transition metal catalyst systems.
机译:锂酰亚胺是一种有希望的新催化剂,用于生产来自氨的氢。 据报道,其催化活性通过其用作具有各种过渡金属氮化物的复合材料而显着提高。 在这项工作中,使用原位中子和X射线粉末衍射实验检查这些复合催化剂中的两种(用氮化锰和氮化物),以探索氨分解期间存在的本体相。 在这种条件下,发现铁复合材料是酰亚胺和铁金属的混合物,而锰复合物在低温下含有锂酰亚胺和锰氮化物,以及酰亚胺锂和两种三元锂 - 锰氮化物的混合物(Lixmn2- 在较高温度下XN和小比例的Li7MNN4)。 结果表明,酰亚胺 - 过渡金属催化剂体系中的氨分解不是必需的三元氮化物的体积形成。

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