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新型三明治复合结构:一种用于超灵敏检测环三亚甲基三硝胺(RDX)的新检测策略。

The novel sandwich composite structure: a new detection strategy for the ultra-sensitive detection of cyclotrimethylenetrinitramine (RDX).

作者信息

Yang Jie, Wang Tianran, Gao Weiye, Zhu Chushu, Sha Pengxing, Dong Peitao, Wu Xuezhong

机构信息

College of Intelligence Science and Technology, National University of Defense Technology, Changsha, Hunan, People's Republic of China.

出版信息

Nanotechnology. 2022 Jun 14;33(35). doi: 10.1088/1361-6528/ac7059.

Abstract

This study presents a novel sandwich composite structure that was designed for the ultra-sensitive detection of cyclotrimethylenetrinitramine (RDX). Au nanorod arrays (Au NRAs) were prepared and bound to 10M 6-MNA as adsorption sites for RDX, while Au nanorods (Au NRs) were modified using 10M 6-MNA as SERS probes. During detection, RDX molecules connect the SERS probe to the surface of the Au NRAs, forming a novel type of Au NRAs-RDX-Au NRs 'sandwich' composite structure. The electromagnetic coupling effect between Au NRs and Au NRAs is enhanced due to the molecular level of the connection spacing, resulting in new 'hot spots'. Meanwhile, Au NRAs and Au NRs have an auto-enhancement effect on 6-MNA. In addition, the presence of charge transfer in the formed 6-MNA-RDX complex induced chemical enhancement. The limits of detection of RDX evaluated by Raman spectroscopy using 6-MNA were as low as 10mg ml(4.5 × 10M) with good linear correlation between 10and 10mg ml(correlation coefficient = 0.9985). This novel sandwich composite structure accurately detected RDX contamination in drinking water and on plant surfaces in an environment with detection limits as low as 10mg mland 10mg ml.

摘要

本研究提出了一种新型夹心复合结构,该结构设计用于超灵敏检测环三亚甲基三硝胺(RDX)。制备了金纳米棒阵列(Au NRA)并将其与10M 6 - MNA结合作为RDX的吸附位点,同时使用10M 6 - MNA修饰金纳米棒(Au NR)作为表面增强拉曼光谱(SERS)探针。在检测过程中,RDX分子将SERS探针连接到Au NRA表面,形成一种新型的Au NRA - RDX - Au NR“夹心”复合结构。由于连接间距处于分子水平,Au NR与Au NRA之间的电磁耦合效应增强,从而产生新的“热点”。同时,Au NRA和Au NR对6 - MNA具有自增强效应。此外,在形成的6 - MNA - RDX络合物中电荷转移的存在引发了化学增强。使用6 - MNA通过拉曼光谱评估的RDX检测限低至10mg/ml(4.5×10M),在10至10mg/ml之间具有良好的线性相关性(相关系数 = 0.9985)。这种新型夹心复合结构能够准确检测饮用水和植物表面环境中的RDX污染,检测限低至10mg/m²和10mg/ml。

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