首页> 外文会议>Virtual Environments, Human-Computer Interfaces and Measurements Systems, 2009. VECIMS '09 >Biomolecule-assisted synthesis of 3D structure gold nanocrystals in the presence of cystamine dihydrochloride or cysteamine
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Biomolecule-assisted synthesis of 3D structure gold nanocrystals in the presence of cystamine dihydrochloride or cysteamine

机译:在半胱胺盐酸盐或半胱胺存在下生物分子辅助合成3D结构金纳米晶体

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A facile cystamine-assisted route was designed for the selectively controlled synthesis of 1D and novel, interesting 3D gold litchi-like nanostructures. By controlling reaction conditions such as the molar ratio between HAuCl4 and cystamine dihydrochloride and the reaction time, the synthesis of various 3D architectural structures and 1D structure in large quantities can be controlled. The formation mechanism for the gold litchi-like assemblies with well-arranged nanorods was also discussed. In addition, as the control test, featheriness gold structures were obtained through using cysteamine as the assisted agent. On the basis of the results from SEM studies and our analysis, we speculate that the different morphologies obtained by cystamine dihydrochloride and cysteamine due to the Au-S interaction. These differences in hydrogen storage capacity are likely due to the size and density of space/pores as well as the morphology of different nanostructures. This facile, environmentally benign, and solution-phase biomolecule-assisted method can be potentially extended to the preparation of other metal nanostructures.
机译:设计了一种简便的胱胺辅助途径,用于选择性控制1D和新颖有趣的3D金荔枝状纳米结构的合成。通过控制反应条件,例如HAuCl 4 与半胱胺二盐酸盐的摩尔比和反应时间,可以控制大量3D建筑结构和1D结构的合成。还讨论了纳米棒排列良好的金荔枝状组件的形成机理。另外,作为对照试验,通过使用半胱胺作为辅助剂获得羽状金结构。基于SEM研究的结果和我们的分析,我们推测由于Au-S相互作用,半胱胺二盐酸盐和半胱胺获得了不同的形态。储氢能力的这些差异可能是由于空间/孔的大小和密度以及不同纳米结构的形态所致。这种简便,环境友好,溶液相生物分子辅助的方法可以潜在地扩展到其他金属纳米结构的制备。

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