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Intermatrix synthesis as a rapid, inexpensive and reproducible methodology for the in situ functionalization of nanostructured surfaces with Quantum Dots

机译:Intermatrix合成是一种快速,廉价且可重复的方法,用于使用量子点对纳米结构表面进行原位功能化

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摘要

Intermatrix Synthesis (IMS) technique has proven to be a valid methodology for the in situ incorporation of quantum dots (QDs) in a wide range of nanostructured surfaces for the preparation of advanced hybrid-nanomaterials. In this sense, this communication reports the recent advances in the application of IMS for the synthesis of CdS-QDs with favourable distribution on sulfonated polyetherether ketone (SPEEK) membrane thin films (TFs), Multiwall Carbon Nanotubes (MWCNTs) and Nanodiamonds (NDs). The synthetic route takes advantage of the ion exchange functionality of the reactive surfaces for the loading of the QDs precursor and consequent QDs appearance by precipitation. The benefits of such modified nanomaterials were studied using CdS-QDs@MWCNTs hybrid-nanomaterials. CdS–QDs@MWCNTs has been used as conducting filler for the preparation of electrochemical nanocomposite sensors, which present electrocatalytic properties. Finally, the optical properties of the QDs contained on MWCNTs could allow a new procedure for the analytical detection of nanostructured carbon allotropes in water.
机译:事实证明,基质间合成(IMS)技术是将量子点(QD)原位掺入各种纳米结构表面中以制备高级杂化纳米材料的有效方法。从这个意义上讲,本通讯报道了IMS在合成具有良好分布的CdS-QDs方面的最新进展,这些分布在磺化聚醚醚酮(SPEEK)薄膜薄膜(TFs),多壁碳纳米管(MWCNTs)和纳米金刚石(NDs)上。合成路线利用了反应性表面的离子交换功能来装载QDs前体,并因此通过沉淀产生了QDs。使用CdS-QDs @ MWCNTs杂化纳米材料研究了此类改性纳米材料的益处。 CdS–QDs @ MWCNTs已被用作导电填料,用于制备具有电催化特性的电化学纳米复合材料传感器。最后,MWCNTs上包含的QD的光学性质可以为分析水中的纳米结构同素异形体提供新的分析方法。

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