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Efficient synthesis for large-scale production and characterization for hydrogen storage of ligand exchanged MOF-74/174/184-M (M = Mg2+, Ni2+)

机译:大规模合成的高效合成以及配体交换的MOF-74 / 174 / 184-M(M = Mg2 +,Ni2 +)的储氢特性表征

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A semitechnical route (optimized by BASF SE) to synthesize MOF-74/174-M (M = Mg2+, Ni2+) efficiently in ton-scale production is presented with the goal of mobile and stationary gas storage applications especially for hydrogen as future energy carrier. In addition, a new member of these series of materials, MOF-184-M (M = Mg2+, Ni2+) is introduced using ligand exchange strategy in order to produce a more porous analogue (possessing large aperture) without loss of crystallinity. This family comprising MOF-74/174/184 are characterized systematically for hydrogen adsorption properties by volumetric measurements with a Sieverts' apparatus. Replacing the linker by a longer one results in an increase of the BET area from 984 to 3154 m(2)/g and an enhancement of the excess cryogenic (77 K) hydrogen storage capacity from 1.8 to 4.7 wt%. The heat of adsorption of linker exchanged MOF-174/184 (as a function of uptake) shows similar values to the parent MOF-74, indicating successful construction of expanded MOFs in large scale production. Finally, a usable capacity of these MOFs is investigated for mobile application, revealing that the increasing surface area without strong binding metal sites through longer linker exchange is one of important parameters for improving usable capacity. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种以吨级生产有效地合成MOF-74 / 174-M(M = Mg2 +,Ni2 +)的半工艺路线(由BASF SE优化),目标是移动和固定储气应用,尤其是将氢气用作未来的能源载体。此外,使用配体交换策略引入了这一系列材料中的新成员MOF-184-M(M = Mg2 +,Ni2 +),以便在不损失结晶度的情况下生产出更具多孔性的类似物(具有大孔径)。通过使用Sieverts设备进行体积测量,系统地表征了包含MOF-74 / 174/184的该族的氢吸附性能。用更长的连接基取代该连接基导致BET面积从984增加到3154 m(2)/ g,而过量的低温(77 K)储氢量从1.8 wt%增加到4.7 wt%。接头交换的MOF-174 / 184的吸附热(随摄取的变化)显示与母体MOF-74相似的值,表明成功构建了大规模生产的扩展MOF。最后,对这些MOF的可用容量进行了研究,以用于移动应用,这表明通过更长的接头交换而没有强结合金属位点的增加的表面积是提高可用容量的重要参数之一。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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