Scalable and adaptable two-ligand co-solvent transfer methodology for gold bipyramids to organic solvents†

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Caitlin D. Coplan, Nicolas E. Watkins, Xiao-Min Lin and Richard D. Schaller
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引用次数: 0

Abstract

Large and faceted nanoparticles, such as gold bipyramids, presently require synthesis using alkyl ammonium halide ligands in aqueous conditions to stabilize the structure, which impedes subsequent transfer and suspension of such nanoparticles in low polarity solvents despite success with few nanometer gold nanoparticles of shapes such as spheres. Phase transfer methodologies present a feasible avenue to maintain colloidal stability of suspensions and move high surface energy particles into organic solvent environments. Here, we present a method to yield stable suspensions of gold bipyramids in low-polarity solvents, including methanol, dimethylformamide, chloroform, and toluene, through the requisite combination of two capping agents and the presence of a co-solvent. By utilizing PEG-SH functionalization for stability, dodecanethiol (DDT) as the organic-soluble capping agent, and methanol to aid in the phase transfer, gold bipyramids with a wide-range of aspect ratios and sizes can be transferred between water and chloroform readily and maintain colloidal stability. Subsequent transfer to various organic and low-polarity solvents is then demonstrated for the first time.

Abstract Image

金双锥体向有机溶剂的可扩展、可调整的双配体共溶剂转移方法
目前,需要在水溶液条件下使用烷基卤化铵配体合成大尺寸和多面体纳米粒子(如金双锥体),以稳定结构,这阻碍了此类纳米粒子在低极性溶剂中的后续转移和悬浮,尽管我们在球形等形状的几纳米金纳米粒子方面取得了成功。相转移方法为保持悬浮液的胶体稳定性和将高表面能粒子转移到有机溶剂环境中提供了一条可行的途径。在这里,我们介绍了一种通过两种封端剂的必要组合以及助溶剂的存在,在甲醇、二甲基甲酰胺、氯仿和甲苯等低极性溶剂中产生稳定的双锥金悬浮液的方法。通过利用 PEG-SH 功能化来提高稳定性,利用十二硫醇 (DDT) 作为有机溶性封端剂,并利用甲醇来帮助相转移,具有各种长宽比和尺寸的金双锥体可以在水和氯仿之间轻松转移,并保持胶体稳定性。随后,还首次展示了向各种有机溶剂和低极性溶剂的转移。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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