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首页> 外文期刊>The Journal of Supercritical Fluids >Comprehensive study of the role of ethylene glycol when preparing Ag@SBA-15 in supercritical CO2
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Comprehensive study of the role of ethylene glycol when preparing Ag@SBA-15 in supercritical CO2

机译:乙二醇在超临界CO2中制备Ag @ SBA-15的作用的综合研究

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摘要

Well-defined Ag nanowires were obtained in SBA-15 at a short deposition time of 5 min in supercritical CO2 when adding a small amount of ethylene glycol as the co-solvent. Ethylene glycol played a key role in dictating the nanowire morphology. Through detailed investigation of the whole deposition process, including the dissolution of precursor assisted by the co-solvent, the diffusion properties of the precursor into the nano-scale channels of the substrate, and the interaction between the precursor and the substrate, we found that a small amount of precursors were reduced into Ag° by ethylene glycol at the initial stage of the deposition. The resultant Ag° then acted as nuclei leading to a non-equilibrium sorption of the precursor. The rapid adsorption of the precursor onto the substrate resulted in a high loading of Ag in a short deposition time and the formation of nanowire morphology. Furthermore, this method was successfully extended to other porous substrates such as 7-AI2O3, SiO2 and K1T-6, demonstrating its great potentials in the synthesis of nanocomposites.
机译:当添加少量乙二醇作为助溶剂时,在SBA-15中于超临界CO2中以5分钟的短沉积时间获得了定义明确的Ag纳米线。乙二醇在决定纳米线的形态方面起着关键作用。通过对整个沉积过程的详细研究,包括在共溶剂的辅助下前体的溶解,前体在基材纳米级通道中的扩散特性以及前体与基材之间的相互作用,我们发现在沉积的初始阶段,少量的前驱物被乙二醇还原成Ag°。然后,所得的Ag°充当核,导致前体的非平衡吸附。前体在基材上的快速吸附导致在短时间内沉积大量的Ag,并形成纳米线形态。此外,该方法已成功地扩展到其他多孔基材,例如7-Al2O3,SiO2和K1T-6,证明了其在纳米复合材料合成中的巨大潜力。

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