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通过使用两性离子表面活性剂控制合成金纳米星。

Controlled synthesis of gold nanostars by using a zwitterionic surfactant.

机构信息

Istituto Italiano di Tecnologia (IIT) via Morego 30, 16163 Genova, Italy.

出版信息

Chemistry. 2012 Jul 23;18(30):9381-90. doi: 10.1002/chem.201201024. Epub 2012 Jun 26.

Abstract

By replacing cetyltrimethylammonium bromide (CTAB) with the zwitterionic lauryl sulfobetaine (LSB) surfactant in the classical seed-growth synthesis, monocrystalline gold nanostars (m-NS) and pentatwinned gold asymmetric nanostars (a-NS) were obtained instead of nanorods. The main product under all synthetic conditions was a-NS, which have branches with high aspect ratios (AR), thus leading to LSPR absorptions in the 750-1150 nm range. The percentage of m-NS versus a-NS, the aspect ratio of the a-NS branches, and consequently the position of their LSPR absorption can be finely tuned simply by regulating the concentration of reductant, the concentration of surfactant, or the concentration of the "catalytic" Ag(+) cation. The m-NS have instead shorter and larger branches, the AR of which is poorly influenced by synthetic conditions and displays an LSPR positioned around 700 nm. A growth mechanism that involves the direct contact of the sulfate moiety of LSB on the surface of the nano-object is proposed, thereby implying preferential coating of the {111} Au faces with weak interactions. Consistent with this, we also observed the straightforward complete displacement of the LSB surfactant from the surface of the nanostars. This was obtained by the simple addition of thiols in aqueous solution to yield extremely stable coated a-NS and m-NS that are resistant to highly acidic, basic, and in similar to in vivo conditions.

摘要

通过在经典的种子生长合成中用两性离子月桂基磺基甜菜碱(LSB)取代十六烷基三甲基溴化铵(CTAB),得到了单晶金纳米星(m-NS)和五孪金不对称纳米星(a-NS),而不是纳米棒。在所有合成条件下的主要产物都是 a-NS,它具有高纵横比(AR)的分支,从而导致 LSPR 吸收在 750-1150nm 范围内。m-NS 与 a-NS 的百分比、a-NS 分支的纵横比以及它们的 LSPR 吸收位置可以通过简单地调节还原剂浓度、表面活性剂浓度或“催化”Ag(+)阳离子的浓度来精细调节。m-NS 具有较短且较大的分支,其 AR 受合成条件的影响较小,其 LSPR 位置约为 700nm。提出了一种涉及 LSB 的硫酸盐部分直接与纳米物体表面接触的生长机制,从而暗示了优先用弱相互作用覆盖{111}Au 面。与此一致,我们还观察到 LSB 表面活性剂从纳米星表面的直接完全取代。通过在水溶液中添加硫醇即可实现这一点,从而得到极其稳定的涂层 a-NS 和 m-NS,它们能耐受高酸性、碱性和类似于体内的条件。

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