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Novel approach for synthesis of Magnesium Borohydride, Mg(BH4)2

机译:硼氢化镁合成的新方法,Mg(BH4)2

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Mg(BH4)2 is a complex hydride with one of the highest hydrogen contents (~ 15%) known yet. Several synthesis routes have been reported for it, all based on the metathesis reaction of MgCl2 with NaBH4 performed in a ball-mill or in suitable solvents. In the present study a new approach for synthesis of Mg(BH4)2 will be presented in which the more reactive MgBr2 is used instead of MgCl2. For this purpose a mixture of MgBr2 andNaBH4 (molar ratio: 1: 2 and 1:2.15) was ball-milled for 6, 12 and 18 h, respectively. Mg(BH4)2 was extracted from the reaction product (Mg(BFLt)2 + NaBr) by Soxhlet with diethylether over a day. The remaining residue after solvent evaporation was dried in vacuum at 150 °C for 24 h and 5h at 190 °C. The intermediate and final products of the reactions were analyzed using XRD, DTA/TG, Mass and Vibrational Spectroscopy. The XRD diagrams of the mixture after ball milling showed only the characteristic reflections of NaBr and the patterns obtained after solvent extraction was in all cases consistent with (3-Mg(BH4)2. The additional weak MgBr2 reflections, decreased by increasing the ball milling time from 6 to 18 h. The DTA/TG coupled with MS revealed-11% mass loss when the product was heated up to 600 °C. The result of MS detected that the exhaust gas is exclusively H2. Compared to MgCl2, the use of MgBr2 has two advantages: the reaction time is considerably shorter and the excess of MgBr2 can act as additive lowering the onset temperature for hydrogen release from 290 °C-for pure Mg(BH4)2-to ~ 220 °C.
机译:Mg(BH4)2是具有最高氢含量(〜15%)之一的复合氢化物。据报道了几条合成途径,全部基于MgCl 2与NaBH 4在球磨机中或合适的溶剂中进行的复分解反应。在本研究中,将介绍一种新的用于合成Mg(BH4)2的方法,其中使用更多的反应性MgBr2代替MgCl 2。为此目的,MgBr2和NaBH 4(摩尔比:1:2和1:2.15)的混合物分别为6,12和18小时。通过索氏蛋白酶(Mg(BFLT)2 + Nabr)用二乙醚从反应产物(Mg(BFLT)2 + Nabr)中萃取Mg(BH4)2。溶剂蒸发后的剩余残余物在150℃下真空干燥24小时,5h,在190℃下。使用XRD,DTA / Tg,质量和振动光谱分析反应的中间体和最终产物。球磨后混合物的XRD图仅显示了NaBr的特征反射,并且在溶剂萃取后获得的图案在所有情况下与(3mg(BH4)2一致。额外的弱MgBr2反射,通过增加球磨来降低从6到18小时的时间。当产物被加热到600℃时,DTA / Tg耦合的DTA / Tg揭示了-11%质量损失。MS检测到废气仅为H2。与MgCl2相比,使用MgBr2具有两种优点:反应时间相当短,多余的MgBr2可作为加性降低氢释放的起始温度从290℃-C纯Mg(BH4)2-〜220℃。

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