Fair surface modification with mixed alkanethiols on gold nanoparticles through minimal unfair ligand exchange†

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Advances Pub Date : 2024-07-16 DOI:10.1039/D4NA00270A
Kun Xiong, Masaharu Nagayama, Kuniharu Ijiro and Hideyuki Mitomo
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Abstract

Surface modification with functional molecules is essential for introducing various surface properties. As gold nanoparticles (AuNPs) have extraordinary chemical, physical, and optical properties, control of their surface, mainly through modification with mixed alkanethiols via Au–S interactions, has attracted much attention. However, surface modification of AuNPs with mixed alkanethiols to provide a strictly regulated composition remains challenging. Further, there are very few methods that can easily establish the nature of ligands and their replacement with similar molecules at nanoparticle surfaces, limiting precise analyses. Herein, we demonstrate an unfair ligand exchange between oligo(ethylene glycol) (OEG)-attached alkanethiols as a source of unfair surface modification utilizing programable thermo-responsive properties of OEG-alkanethiols-modified AuNPs and fair surface modification with mixed OEG-alkanethiols by minimizing this effect. OEG-alkanethiols-modified AuNPs show an assembly/disassembly behavior in response to the solution temperature. Assembly temperature (TA) changes in the presence of other OEG-alkanethiols, confirming the ligand exchange between alkanethiols in an aqueous solution. Kinetic analyses indicate that the competitive exchange reaction of these two alkanethiols results in an unfair ligand exchange, which leads to gradual changes in surface composition. As this ligand exchange between alkanethiols takes a longer time compared to that from citric acid, which initially covered the AuNPs, exact surface modification of AuNPs with OEG-alkanethiols is performed by moderate reaction conditions (25 °C, several to 24 hours). This insight regarding “more prolonged reaction is not always better” could be widely applied for surface modifications with various thiol-ligands.

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通过最少的不公平配体交换,用混合烷硫醇对金纳米粒子进行公平的表面修饰
用功能分子进行表面改性对于引入各种表面特性至关重要。由于金纳米粒子(AuNPs)具有非凡的化学、物理和光学特性,因此主要通过 Au-S 相互作用用混合烷硫醇对其表面进行修饰的控制方法备受关注。然而,用混合烷硫醇对 AuNPs 进行表面修饰以提供严格调节的成分仍然具有挑战性。此外,很少有方法能轻松确定配体的性质以及它们在纳米粒子表面被类似分子取代的情况,从而限制了精确分析。在这里,我们利用 OEG-烷硫醇修饰的 AuNPs 的可编程热响应特性,证明了寡聚(乙二醇)(OEG)连接的烷硫醇之间的不公平配体交换是不公平表面修饰的来源,并通过最大限度地减少这种影响,证明了混合 OEG-烷硫醇的公平表面修饰。OEG-alkanethiols 改性 AuNPs 的组装/解组装行为与溶液温度有关。在其他 OEG-烷硫醇存在的情况下,组装温度(TA)会发生变化,这证实了水溶液中烷硫醇之间的配体交换。动力学分析表明,这两种烷硫醇的竞争性交换反应会导致不公平的配体交换,从而导致表面成分逐渐发生变化。与最初覆盖 AuNPs 的柠檬酸相比,烷硫醇之间的配体交换需要更长的时间,因此用 OEG-烷硫醇对 AuNPs 进行精确的表面改性需要在温和的反应条件下进行(25°C,数小时至 24 小时)。这种 "反应时间越长不一定越好 "的观点可广泛应用于各种硫醇配体的表面修饰。
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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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