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Facile Solvent-Free Synthesis of Anhydrous Alkali MetaludDodecaborate M_2B_(12)H_(12) (M = Li, Na, K)

机译:无溶剂轻松合成无水碱金属 ud分解M_2B_(12)H_(12)(M = Li,Na,K)

摘要

Metal dodecaborate, widely regarded as an obstacle of the rehydrogenation of high-density hydrogen storage materials metal borohydrides M(BH_4)_n, is generally synthesized using liquid-phase process followed by a careful dehydration process. In this study, we propose a new and facile solvent-free synthesis process of dodecaborates using B_(10)H_(14) with a low melting point of 99.6 °C as a boron source. As a case study, our first challenge focused on the syntheses of anhydrous M_2B_(12)H_(12) (M = Li, Na, and K) by heat treatment of starting materials (a) 2MH + 1.2B_(10)H_(14) or (b) 2MBH_4 + B_(10)H_(14) at 200–450 °C conditions, which have been proved to be successful for the first time by X-ray diffraction (XRD), Raman, and NMR analysis. Starting materials (b) 2MBH_4 + B_(10)H_(14) shows better reactivity than that of (a) 2MH + 1.2B_(10)H_(14), which demonstrates that synthesis of anhydrous M_2B_(12)H_(12) by heat treatment of 2MBH_4 + B_(10)H_(14) is a feasible solvent-free process.
机译:通常被认为是高密度储氢材料再氢化的障碍的金属十二硼酸盐金属硼氢化物M(BH_4)_n,通常是通过液相工艺,然后经过仔细的脱水工艺合成的。在这项研究中,我们提出了一种新的且简便的无溶剂合成十硼酸酯的方法,该方法使用低熔点99.6°C的B_(10)H_(14)作为硼源。作为案例研究,我们的第一个挑战集中在通过热处理原料(a)2MH + 1.2B_(10)H_()来合成无水M_2B_(12)H_(12)(M = Li,Na和K) 14)或(b)2MBH_4 + B_(10)H_(14)在200–450°C的条件下,通过X射线衍射(XRD),拉曼光谱和NMR分析首次证明是成功的。原料(b)2MBH_4 + B_(10)H_(14)显示的反应活性比(a)2MH + 1.2B_(10)H_(14)好,这表明无水M_2B_(12)H_(12)的合成通过2MBH_4 + B_(10)H_(14)的热处理是一种可行的无溶剂工艺。

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