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Preparation of fusion materials based on ionic liquids and cationic gold nanoparticles

机译:基于离子液体和阳离子金纳米粒子的熔融材料的制备

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摘要

Fusion materials based on cationic gold nanoparticles mixed with ionic liquids were prepared. An anion exchange of the surface-capping ligand on the gold nanoparticles from a halogen anion to bis(trifluoromethanesulfonyl)amide (Tf2N) in an aqueous solution afforded nanoparticles showing infinite miscibility with Tf2N-based ionic liquids. The thermal decomposition temperature of the gold nanoparticle was elevated by 100[thinsp][deg]C after the anion-exchange process. The ionic liquid-like structure of the surface-capping ligand with Tf2N anions led to a glassy solid material with a densely packed assembly of nanoparticles, in which a portion of nanoparticles formed superlattices. A fusion material of ionic liquid and gold nanoparticles with a gold content as high as 40[thinsp]wt% was obtained by the co-solvent evaporation method using acetone. The stable dispersion of gold nanoparticles in the fusion materials with a high gold content was confirmed by the clear appearance of the plasmon absorption of gold nanoparticles in an optical microscopic image, as well as in an absorption spectrum. The use of an ionic liquid-based monomer yielded a gold nanoparticle-ionic liquid polymer composite, in which the gold nanoparticles showed a high thermal stability.
机译:制备了基于阳离子金纳米粒子与离子液体混合的熔融材料。在水溶液中,金纳米颗粒上的表面封盖配体从卤素阴离子到双(三氟甲磺酰基)酰胺(Tf2N)进行阴离子交换,提供了与基于Tf2N的离子液体无限相容的纳米颗粒。在阴离子交换过程之后,金纳米颗粒的热分解温度升高了100℃。具有Tf2N阴离子的表面封端配体的离子液体状结构导致形成玻璃状固体材料,其中纳米颗粒紧密堆积,其中一部分纳米颗粒形成超晶格。通过使用丙酮的共溶剂蒸发法获得金含量高达40thwt%的离子液体和金纳米颗粒的融合材料。金纳米颗粒在具有高金含量的熔融材料中的稳定分散是通过在光学显微图像以及吸收光谱中金纳米颗粒的等离激元吸收的清晰外观来证实的。使用基于离子液体的单体产生了金纳米颗粒-离子液体聚合物复合材料,其中金纳米颗粒显示出高的热稳定性。

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