首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Formation of MgxNbyOx+y through the Mechanochemical Reaction of MgH2 and Nb2O5, and Its Effect on the Hydrogen-Storage Behavior of MgH2
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Formation of MgxNbyOx+y through the Mechanochemical Reaction of MgH2 and Nb2O5, and Its Effect on the Hydrogen-Storage Behavior of MgH2

机译:MgH2和Nb2O5的机械化学反应形成MgxNbyOx + y及其对MgH2储氢行为的影响

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摘要

The present study aims to understand the catalysis of the MgH2-Nb2O5 hydrogen storage system. To clarify the chemical interaction between MgH2 and Nb2O5, the mechanochemical reaction products of a composite mixture of MgH2+0.167Nb(2)O(5) was monitored at different time intervals (2, 5, 15, 30, and 45min, as well as 1, 2, 5, 10, 15, 20, 25, and 30h). The study confirms the formation of catalytically active Nb-doped MgO nanoparticles (typically MgxNbyOx+y, with a crystallite size of 4-8nm) by transforming reactants through an intermediate phase typified by Mgm-xNb2n-yO5n-(x+y). The initially formed MgxNbyOx+y product is shown to be Nb rich, with the concentration of Mg increasing upon increasing milling time. The nanoscale end-product MgxNbyOx+y closely resembles the crystallographic features of MgO, but with at least a 1-4% higher unit cell volume. Unlike MgO, which is known to passivate the surfaces in MgH2 system, the Nb-dissolved MgO effectively mediates the Mg-H-2 sorption reaction in the system. We believe that this observation will lead to new developments in the area of catalysis for metal-gas interactions.
机译:本研究旨在了解MgH2-Nb2O5储氢系统的催化作用。为了阐明MgH2和Nb2O5之间的化学相互作用,还以不同的时间间隔(2、5、15、30和45min)监测了MgH2 + 0.167Nb(2)O(5)的复合混合物的机械化学反应产物分别为1、2、5、10、15、20、25和30h)。该研究证实了通过将反应物转化为以Mgm-xNb2n-yO5n-(x + y)为代表的中间相来形成具有催化活性的Nb掺杂的MgO纳米颗粒(通常为MgxNbyOx + y,微晶尺寸为4-8nm)。最初形成的MgxNbyOx + y产物显示为富含Nb,随着研磨时间的增加,Mg的浓度会增加。纳米级最终产物MgxNbyOx + y非常类似于MgO的晶体学特征,但单位晶胞体积至少高1-4%。与已知会钝化MgH2系统表面的MgO不同,溶解Nb的MgO可有效介导系统中Mg-H-2的吸附反应。我们相信,这种观察将导致金属-气体相互作用催化领域的新发展。

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