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通过调节表面保护配体来控制硫醇盐保护的金纳米团簇的产物形成和热力学稳定性。

Control over product formation and thermodynamic stability of thiolate-protected gold nanoclusters through tuning of surface protecting ligands.

作者信息

Maman Manju P, Nida Nahan Eyyakkandy, Suresh Greeshma, Das Arunendu, Nair Akhil S, Pathak Biswarup, Mandal Sukhendu

机构信息

School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram, Kerala 695551, India.

Department of Chemistry, Indian Institute of Technology, Indore, Madhya Pradesh 453552, India.

出版信息

Nanoscale. 2023 Aug 10;15(31):13102-13109. doi: 10.1039/d3nr02617e.

Abstract

Surface-protecting ligands can regulate the structure of a cluster's core either through electronic or steric effects. However, the influence of the steric effect along with the electronic effect over controlling the structure during ligand exchange reactions remains elusive. To understand this, we have carried out ligand exchange on [Au(CHT)] (CHT: cyclohexane thiol) using aromatic thiolates where we have tuned the bulkiness at the position of the thiolate group on the incoming ligands. The outcome of the experiments reveals that each of the ligands in the chosen series is precisely selective towards the parent cluster transformation through specific intermediates. The ligand with more steric crowding directed the reaction pathway to have Au nanocluster as the major product while Au was the final product obtained with the gradual decrease of bulkiness over the ligand. The combined experimental and theoretical results elucidated the mechanism of the reaction pathways, product formation, and their stability. Indeed, this study with the series of ligands will add up to the ligand library, where we can decide on the ligand to obtain our desired cluster for specific applications through the ligand exchange reaction.

摘要

表面保护配体可以通过电子效应或空间效应来调节簇核的结构。然而,在配体交换反应过程中,空间效应与电子效应共同对结构控制的影响仍然难以捉摸。为了理解这一点,我们使用芳基硫醇盐对[Au(CHT)](CHT:环己烷硫醇)进行了配体交换,其中我们调节了进入配体上硫醇盐基团位置的空间位阻。实验结果表明,所选系列中的每个配体都通过特定中间体对母体簇的转化具有精确的选择性。空间位阻更大的配体使反应途径以金纳米簇为主要产物,而随着配体空间位阻逐渐减小,最终产物为金。实验和理论相结合的结果阐明了反应途径、产物形成及其稳定性的机制。实际上,对该系列配体的研究将丰富配体库,通过配体交换反应,我们可以根据具体应用选择合适的配体来获得所需的簇。

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