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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Improvement of hydrogen storage property of three-component Mg(NH2)(2)-LiNH2-LiH composites by additives
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Improvement of hydrogen storage property of three-component Mg(NH2)(2)-LiNH2-LiH composites by additives

机译:添加剂改善三组分Mg(NH2)(2)-LiNH2-LiH复合材料的储氢性能

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摘要

The three-component Mg(NH2)(2)-LiNH2-4LiH composite reversibly stores hydrogen exceeding 5 wt% at a temperature as low as 150 degrees C. In this work, a number of additives such as CeF4, CeO2, TiCl3, TiH2, NaH, KBH4 and KH are added to the Mg(NH2)(2)-LiNH2-4LiH composite in order to improve its kinetics, thermodynamics and cycling properties. Addition of 3 wt% of KH reduces the dehydrogenation onset temperature of the Mg(NH2)(2)-LiNH2-4LiH composite to below 90 degrees C without emission of NH3 during the whole dehydrogenation process up to 450 degrees C. Moreover, the dehydrogenation kinetics and cycling ability are remarkably enhanced upon KH-addition. The reaction model of the Mg(NH2)(2)-LiNH2-4LiH composite is altered upon KH-addition with the active molecule density improved by about 200 times. In addition, by optimization of the ratio of Mg2+ to Li+ in the Mg(NH2)(2)-LiNH2-LiH system, several novel composites, e.g., Mg(NH2)(2)-2LiNH(2)-5.9LiH-0.1KH and Mg(NH2)(2)-LiNH2-5.9LiH-0.1KH, with the hydrogen storage capacity exceeding 6 wt% without emission of NH3 below 250 degrees C are developed. Our study demonstrates that there are various undiscovered candidates with promising hydrogen storage properties in the three-component Li-Mg-N-H system.
机译:三组分Mg(NH2)(2)-LiNH2-4LiH复合材料在低至150摄氏度的温度下可逆地存储超过5 wt%的氢。在这项工作中,许多添加剂如CeF4,CeO2,TiCl3,TiH2将NaH,KBH4和KH添加到Mg(NH2)(2)-LiNH2-4LiH复合材料中,以改善其动力学,热力学和循环性能。添加3 wt%的KH可将Mg(NH2)(2)-LiNH2-4LiH复合材料的脱氢起始温度降低至90摄氏度以下,而在整个脱氢过程中直至450摄氏度都不会释放出NH3。添加KH后,动力学和循环能力显着增强。添加KH改变Mg(NH2)(2)-LiNH2-4LiH复合材料的反应模型,其活性分子密度提高约200倍。此外,通过优化Mg(NH2)(2)-LiNH2-LiH系统中Mg2 +与Li +的比例,可以合成几种新型复合材料,例如Mg(NH2)(2)-2LiNH(2)-5.9LiH-0.1研发了储氢能力超过6 wt%且不排放低于250℃的NH3的KH和Mg(NH2)(2)-LiNH2-5.9LiH-0.1KH。我们的研究表明,在三组分Li-Mg-N-H系统中,有许多未发现的候选物具有良好的储氢性能。

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