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High-Performance Hydrogen Storage Nanoparticles Inside Hierarchical Porous Carbon Nanofibers with Stable Cycling

机译:具有稳定循环的等级多孔碳纳米纤维内的高性能储氢纳米颗粒

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摘要

An effective route based on space-confined chemical reaction to synthesize uniform Li2Mg(NH)2 nanoparticles is reported. The hierarchical pores inside the one-dimensional carbon nanofibers (CNFs), induced by the creation of well-dispersed Li3N, serve as intelligent nanoreactors for the reaction of Li3N with Mg-containing precursors, resulting in the formation of uniformly discrete Li2Mg(NH)2 nanoparticles. The nanostructured Li2Mg(NH)2 particles inside the CNFs are capable of complete hydrogenation and dehydrogenation at a temperature as low as 105 °C with the suppression of ammonia release. Furthermore, by virtue of the nanosize effects and space-confinement by the porous carbon scaffold, no degradation was observed after 50 de/rehydrogenation cycles at a temperature as low as 130 °C for the as-prepared Li2Mg(NH)2 nanoparticles, indicating excellent reversibility. Moreover, the theoretical calculations demonstrate that the reduction in particle size could significantly enhance the H2 sorption of Li2Mg(NH)2 by decreasing the relative activation energy barrier, which agrees well with our experimental results. This method could represent an effective, general strategy for synthesizing nanoparticles of complex hydrides with stable reversibility and excellent hydrogen storage performance.
机译:报道了基于空间限制化学反应合成均匀Li 2Mg(NH)2纳米颗粒的有效途径。通过井分散的Li3N诱导的一维碳纳米纤维(CNFS)内的分层孔作为智能纳米反应器,用于Li3N与含Mg的前体的反应,导致形成均匀离散的Li2mg(NH) 2纳米颗粒。 CNF中的纳米结构Li 2Mg(NH)2颗粒能够在低至105℃的温度下完全氢化和脱氢,抑制氨释放。此外,通过多孔碳支架的纳米效应和空间限制,在低至130℃的温度下在50℃/再氢化循环后没有观察到较低的Li 2 Mg(NH)2纳米粒子,表明优异的可逆性。此外,理论计算表明,通过降低相对激活能量屏障,粒度的降低可以显着增强Li2Mg(NH)2的H2吸附,这与我们的实验结果吻合良好。该方法可以代表具有稳定的可逆性和优异的储氢性能的复合氢化物的纳米颗粒合成纳米颗粒的有效一般策略。

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