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Hydrido/chloroaluminium alkoxides and metal (Al, Ge) alkoxides-synthesis, characterization and applications for preparation of novel hydrogen storage nano-materials

机译:氢化铝/氯铝醇盐和金属(Al,Ge)醇盐的合成,表征及在制备新型储氢纳米材料中的应用

摘要

In first part of this work, efforts are made to prepare structurally characterized molecular compounds of the general formulae [HnAl(OR)3-n]x (n = 2 {1, 2, 5}, 1 {3, 6} or 0 {4, 7}; x = 2 {5, 6 7}, 4 {4}, 5 {1} or ∞ {2, 3}; R = cHex {1-4} or cHexMe 1 {5-7}), [ClAl(H)(OR)]2 (R = cHexMe 1 {8}), [ClnAl(OR)3-n]2 (n = 1 {9} or 2 {10}; R = cHexMe 1 {9-10}), [Ge(OR)2]2 (R = cHex {11} or cHexMe 1 {12}, iPr {13}); [HAl(OR)(NRu27)]2 (R = tBu {14}, cHexMe 1 {15; Ru27 = SiMe3 {14-15}). The molecular compounds 1, 2, 4, 5, 7, 8 - 12, 14 and 15 are obtained as crystalline powders and characterized by single crystal X-ray analysis as well as 1H, 13C NMR and IR spectroscopy. Crystals suitable for X-ray analysis could not be grown for compound 3, 6 and 13. However, these compounds were characterized by NMR and IR spectroscopy. Molecular compounds containing Al as central metal atoms were also characterized by 27Al NMR spectroscopy. The elemental compositions of all compounds were determined by CHN analysis as well as by other complexometric titration techniques wherever suitable.In the second part of this thesis, the results of hydrogen adsorption studies with Al/Al2O3-composite nano-wires (NWs) and Ni/Al2O3-composite nano-powders (NPs) using a modified Sievert apparatus are presented. Al/Al2O3-composites were prepared as thin films by the decomposition of a molecular precursor, [H2Al(OR)]2, both upon steel as well as glass substrates in a cold wall CVD reactor. Ni/Al2O3-composites were prepared as powders by the decomposition of Ni(acac)2 under a steady stream of [H2Al(OR)]2 in the same CVD set up, using an adapted sample holder. Both types of materials, Al/Al2O3 NW and Ni/Al2O3 NP, were characterized by XRD, SEM, TEM, EDXS, SAED and IR spectroscopy. Volumetric hydrogen storage measurements with variable temperature and pressure showed a maximum hydrogen uptake of 6.5(±0.2)wt.% with Al/Al2O3-composite NWs. The adsorption kinetics was followed by DSC and IR spectroscopy. The adsorption of hydrogen at the Al/Al2O3-composite NWs is controlled by pure physisorption at temperatures below 100°C while above 100°C, desorption occurs as a result of increasing temperature.
机译:在这项工作的第一部分中,努力制备通式为[HnAl(OR)3-n] x(n = 2 {1、2、5},1 {3、6}或0的结构特征分子化合物{4,7}; x = 2 {5,6 7},4 {4},5 {1}或∞{2,3}; R = cHex {1-4}或cHexMe 1 {5-7}) ,[ClAl(H)(OR)] 2(R = cHexMe 1 {8}),[ClnAl(OR)3-n] 2(n = 1 {9}或2 {10}; R = cHexMe 1 {9 -10}),[Ge(OR)2] 2(R = cHex {11}或cHexMe 1 {12},iPr {13}); [HAl(OR)(NR u27)] 2(R = tBu {14},cHexMe 1 {15; R u27 = SiMe3 {14-15})。获得晶体粉末状的分子化合物1、2、4、5、7、8、12、14和15,并通过单晶X射线分析以及1H,13C NMR和IR光谱对其进行表征。化合物3、6和13无法生长适合X射线分析的晶体。但是,这些化合物已通过NMR和IR光谱进行了表征。还通过27Al NMR光谱表征了包含Al作为中心金属原子的分子化合物。通过CHN分析以及其他合适的络合滴定技术确定了所有化合物的元素组成。在本文的第二部分,使用Al / Al2O3复合纳米线(NWs)和Ni进行氢吸附研究的结果提出了使用改进的Sievert装置的/ Al2O3复合纳米粉末(NPs)。通过在冷壁CVD反应器中在钢以及玻璃基板上分解分子前体[H2Al(OR)] 2,将Al / Al2O3复合材料制成薄膜。通过使用合适的样品架,在相同的CVD装置中,在[H2Al(OR)] 2的稳定流下,通过Ni(acac)2的分解,将Ni / Al2O3复合物制成粉末。两种类型的材料,Al / Al2O3 NW和Ni / Al2O3 NP,都通过XRD,SEM,TEM,EDXS,SAED和IR进行了表征。 Al / Al2O3复合NWs在可变温度和压力下的体积储氢测量显示最大吸氢量为6.5(±0.2)wt。%。通过DSC和IR光谱跟踪吸附动力学。 Al / Al2O3复合NWs上氢的吸附是通过在低于100°C的温度下进行纯物理吸附来控制的,而在高于100°C的温度下,由于温度升高而发生解吸。

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    Ullah Hameed;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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