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硫醇调控的金纳米棒自组装:间接疏水作用而非直接静电/氢键吸引

Thiols Modulated Gold Nanorods Self-Assembly: Indirect Hydrophobic Effects Instead of Direct Electrostatic/Hydrogen Bonds Attraction.

作者信息

Lin Yu, Wu Kai, Zhou Xin, Xia Yunsheng

机构信息

Key Laboratory of Functional Molecular Solids, Ministry of Education; College of Chemistry and Materials Science, Anhui Normal University, Wuhu 241000, China.

Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou 325001, China.

出版信息

Langmuir. 2024 Feb 13;40(6):2979-2989. doi: 10.1021/acs.langmuir.3c03082. Epub 2024 Jan 29.

Abstract

For nanocrystals (NCs) self-assembly, understanding the chemical and supramolecular interactions among building blocks is significant for both fundamental scientific interests and rational nanosuperstructure construction. However, it has remained an extreme challenge for many self-assembly systems due to the lack of appropriately quantitative approaches for the corresponding exploration. Herein, by combination of the proposed colorimetric method for cationic surfactant quantitation and all-atom simulations, we manage to present a clear chemical picture for the thiol molecules modulated self-assembly of gold nanorods (GNRs), one of the earliest and most convenient methods for the fabrication of freestanding GNR self-assemblies. It is revealed that the self-assembly of GNRs is driven by the hydrophobic effects of the alkyl chains of the modified cationic surfactants, as their bilayer structure is destroyed by the added thiol molecules. In other words, the actual roles of the thiol molecules for causing GNRs assembly are indirectly inductive effects instead of the previously believed direct electrostatic attraction and/or hydrogen-bond linking effects of the binding thiol molecules. Furthermore, the GNRs exhibit diameter-dependent assembly behaviors: thicker GNRs tend to adopt the end-to-end assembly mode, while thin ones prefer the side-by-side assembly mode, further demonstrating that hydrophobic effects among the build blocks are the driving force for the GNRs assembly.

摘要

对于纳米晶体(NCs)的自组装而言,了解构建单元之间的化学和超分子相互作用对于基础科学研究兴趣以及合理构建纳米超结构都具有重要意义。然而,由于缺乏适用于相应探索的定量方法,这对许多自组装系统来说仍然是一个极大的挑战。在此,通过将所提出的用于阳离子表面活性剂定量的比色法与全原子模拟相结合,我们成功地为硫醇分子调控的金纳米棒(GNRs)自组装呈现了一幅清晰的化学图景,这是制备独立式GNR自组装体最早且最便捷的方法之一。结果表明,GNRs的自组装是由修饰的阳离子表面活性剂烷基链的疏水作用驱动的,因为添加的硫醇分子破坏了它们的双层结构。换句话说,硫醇分子导致GNRs组装的实际作用是间接诱导效应,而非先前认为的结合硫醇分子的直接静电吸引和/或氢键连接效应。此外,GNRs表现出直径依赖性组装行为:较粗 的GNRs倾向于采用端对端组装模式,而细的GNRs则更喜欢并排组装模式,这进一步证明了构建单元之间的疏水作用是GNRs组装的驱动力。

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