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High-pressure synthesis of a new compound of the Mg-Co system

机译:MG-CO系统新化合物的高压合成

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High-pressure synthesis is an effective technique to obtain novel compounds. Under high pressure of the order of GPa, the atomic radius of Mg undergoes large shrinkage compared with that of transition metals (TM) and novel compounds with unusual atomic sizes of Mg and TMs can be synthesized. This study describes the high-pressure synthesis of a novel Mg-Co alloy of formula Mg44Co7 at above 5 GPa and 973 K for 8 h. Investigation of the crystal structure of Mg44Co7 using X-ray powder diffraction reveals its Mg44Rh7-type structure (space group F-43 m) with lattice parameter a = 20.127 (1) angstrom. Mg44Co2 decomposes into Mg and MgCo phases at 663 K in an Ar atmosphere via an exothermic reaction. Hydrogenation of Mg44Co7 at 573 K-623 K under 8 MPa of H-2 results in its decomposition into MgH2, Mg2CoH5 and Mg6Co2H11 with a total hydrogen content of 3.5-5.0 mass%. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:高压合成是获得新化合物的有效技术。在GPA的高压下,与过渡金属(TM)(TM)相比,MG的原子半径经历大收缩,并且可以合成具有不寻常的原子尺寸的MG和TMS的新化合物。本研究描述了在5GPa的优于5GPa和973k的式Mg4 4 4 4 4 4 4-Co 2的新型Mg-Co合金的高压合成。使用X射线粉末衍射对Mg44Co7的晶体结构的研究显示其Mg44RH7型结构(空间组F-43M),晶格参数A = 20.127(1)埃。 Mg44CO2通过放热反应在AR气氛中以663K分解成Mg和MgCO相。在8MPa的H-2下的573k-623k处的Mg44CO7氢化导致其分解成MgH2,Mg 2 COH5和Mg6CO2H11,总氢含量为3.5-5.0质量%。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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