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通过手性二硫醇配体交换交联单层保护的金纳米簇实现大圆二色响应的出现。

Emergence of large chiroptical responses by ligand exchange cross-linking of monolayer-protected gold clusters with chiral dithiol.

机构信息

Graduate School of Material Science, University of Hyogo, 3-2-1 Koto, Kamigori-cho, Ako-gun, Hyogo 678-1297, Japan.

出版信息

Langmuir. 2013 May 28;29(21):6444-51. doi: 10.1021/la400215c. Epub 2013 May 14.

DOI:10.1021/la400215c
PMID:23635318
Abstract

We here present a study of cross-linking chemistry of optically inactive monothiol-protected gold clusters by chiral bidentate dithiol with two stereogenic centers, (2R,3R)-1,4-dimercapto-2,3-butanediol (L-dithiothreitol; L-DTT), and explore the impacts of the cross-linking on their chiroptical responses. The pristine protective ligand is racemic penicillamine (rac-Pen), and the products of the ligand exchange reactions include clusters containing both rac-Pen and L-DTT (partial exchange). Electrophoresis using polyacrylamide gel with a very low gel concentration (3%) can make the products separable into two components, each of which has the similar mean core diameter of 0.78 and 0.83 nm, so the difference in the relative mobility is mainly ascribed to the size of the cluster assembly. In addition, very large optical activity with the maximum anisotropy factors of about 1.0 × 10(-3) is found for the assemblies. In comparison with chiral 1,3-dithiol protection incapable of cross-linking between gold clusters, we propose that the observed optical activity is due to surface intrinsic handedness caused by a cyclic cross-linking with at least two L-DTT molecules.

摘要

我们在这里研究了手性双齿二硫醇((2R,3R)-1,4-二甲巯基-2,3-丁二醇,L-DTT)与非手性单硫醇保护的金纳米簇的交联化学,并探索了交联对其手性光学响应的影响。原始保护配体是外消旋青霉素(rac-Pen),配体交换反应的产物包括同时含有 rac-Pen 和 L-DTT 的金纳米簇(部分交换)。使用凝胶浓度非常低(3%)的聚丙烯酰胺凝胶电泳可以将产物分离成两个组分,每个组分的平均核心直径相似,均约为 0.78 和 0.83nm,因此相对迁移率的差异主要归因于纳米簇组装体的大小。此外,这些组装体具有非常大的光学活性,最大各向异性因子约为 1.0×10^(-3)。与不能交联金纳米簇的手性 1,3-二硫醇保护相比,我们提出观察到的光学活性是由于至少两个 L-DTT 分子的环状交联导致的表面固有手性。

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引用本文的文献

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Dithiol-Induced Oligomerization of Thiol-Protected Gold Nanoclusters.二硫醇诱导的硫醇保护金纳米团簇的寡聚化
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