首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Boron nitride nanotubes and their functionalization via quinuclidine-3-thiol with gold nanoparticles for the development and enhancement of the HPLC performance of HPLC monolithic columns
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Boron nitride nanotubes and their functionalization via quinuclidine-3-thiol with gold nanoparticles for the development and enhancement of the HPLC performance of HPLC monolithic columns

机译:氮化硼纳米管及其通过喹核苷-3-硫醇与金纳米颗粒的功能化,以开发和增强HPLC整体柱的HPLC性能

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摘要

In this paper, a new and effective method was described for attaching gold nanoparticles (Au-NPs) on to the surface of thiol-terminated Boron Nitride Nanotubes (BNNT) functionalized with quinuclidine-3-thiol, acting as a bridging agent. The quinuclidine-3-thiol was first grafted onto the surface of the BNNTs via strong interactions between the electron pair from the nitrogen atom of the quinuclidine structure and the electronic gap from the boron atom of the BNNT. The bare surface of Au-NPs facilitates to attach on the thiol group of the thiol-terminated BNNTs. These two nanomaterials (pristine BNNTs and Au-BNNTs) were then incorporated into a monolithic polymer. The obtained monolithic BNNT and AuBNNT stationary phases were very useful columns for the HPLC isocratic mode separation of a series of benzene and naphtalene derivatives. The retention on these two stationary phases was due to the different intermolecular interactions including the dispersion interaction (area of the delocalized π bond), the dipole-dipole interactions, and the electrostatic repulsion. The presence of Au-NPs on the BNNT surface improved significantly the retention and column efficiency for compounds with thiol groups in their structure. As well, it was shown that both retention and column efficiency linearly increased with the nanotube (NT) amount in the polymerization mixture. This manuscript thus established for the first time the fact that BNNT was a very useful nanomaterial for the development of novel HPLC stationary phases and increased the performance of classical equivalent C18 monolithic columns.
机译:在本文中,描述了一种新的有效方法,用于将金纳米颗粒(Au-NPs)附着到以巯基吡啶-3-硫醇为桥联剂的巯基封端的氮化硼纳米管(BNNT)的表面上。首先通过来自奎尼丁结构氮原子的电子对与来自BNNT硼原子的电子间隙之间的强相互作用,将奎尼丁-3-硫醇嫁接到BNNT的表面上。 Au-NPs的裸露表面有助于附着在巯基封端的BNNTs的巯基上。然后将这两种纳米材料(原始BNNT和Au-BNNT)掺入整体式聚合物中。所获得的整体式BNNT和AuBNNT固定相对于色谱分析一系列苯和萘衍生物的HPLC等度模式非常有用。在这两个固定相上的保留是由于不同的分子间相互作用,包括分散相互作用(离域π键的面积),偶极-偶极相互作用和静电排斥。 BNNT表面上Au-NP的存在显着改善了结构中带有硫醇基的化合物的保留和柱效。同样,显示了保留率和柱效率都随聚合混合物中纳米管(NT)的数量线性增加。因此,该手稿首次确定了BNNT是非常有用的纳米材料,可用于开发新型HPLC固定相并提高了经典等效C18整体柱的性能。

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