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Stabilization of volatile Ti(BH4)3 by nano-confinement in a metal–organic framework

机译:金属有机框架中纳米限制稳定挥发性Ti(BH4)3

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Liquid complex hydrides are a new class of hydrogen storage materials with several advantages over solid hydrides, e.g. they are flexible in shape, they are a flowing fluid and their convective properties facilitate heat transport. The physical and chemical properties of a gaseous hydride change when the molecules are adsorbed on a material with a large specific surface area, due to the interaction of the adsorbate with the surface of the host material and the reduced number of collisions between the hydride molecules. In this paper we report the synthesis and stabilization of gaseous Ti(BH _(4) ) _(3) . The compound was successfully stabilized through adsorption in nanocavities. Ti(BH _(4) ) _(3) , upon synthesis in its pure form, spontaneously and rapidly decomposes into diborane and titanium hydride at room temperature in an inert gas, e.g. argon. Ti(BH _(4) ) _(3) adsorbed in the cavities of a metal organic framework is stable for several months at ambient temperature and remains stable up to 350 K under vacuum. The adsorbed Ti(BH _(4) ) _(3) reaches approximately twice the density of the gas phase. The specific surface area (BET, N _(2) adsorption) of the MOF decreased from 1200 m ~(2) g ~(?1) to 770 m ~(2) g ~(?1) upon Ti(BH _(4) ) _(3) adsorption.
机译:液体复合氢化物是一种新的储氢材料,具有与固体氢化物相比的多种优点,例如,它们的形状灵活,它们是流动的流体,其对流性能促进热传输。由于吸附物与主体材料表面的相互作用和氢化物分子之间的碰撞数量的减少的碰撞,当分子被吸附在具有大的比表面积的材料上时的气态氢化物的物理和化学性质。在本文中,我们报告了气态Ti的合成和稳定(BH_(4))_(3)。通过在纳米覆盖物中吸附成功稳定该化合物。 Ti(BH _(4))_(3)在其纯形式中合成,自发地并在室温下在惰性气体下迅速分解成二硼烷和氢化物,例如,氩气。在金属有机骨架的空腔中吸附的Ti(BH _(4))_(3)在环境温度下稳定数月,在真空下保持稳定至350k。吸附的Ti(BH _(4))_(3)达到气相密度大约两倍。 MOF的比表面积(BET,N _(2)吸附)从1200m〜(2)g〜(Δ1)降至ti(bh _)时从1200m〜(2)g〜(Δ1)降低到770m〜(2)g〜(?1)( 4))_(3)吸附。

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