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用于检测FOX-7的二维镧系配位聚合物纳米片

Two-dimensional lanthanide coordination polymer nanosheets for detection of FOX-7.

作者信息

Singha Mahapatra Tufan, Dey Ananta, Singh Harwinder, Hossain Sk Saddam, Mandal Amal Kumar, Das Amitava

机构信息

Analytical and Environmental Science Division, Centralized Instrument Facility, CSIR-Central Salt & Marine Chemicals Research Institute Bhavnagar 364002 Gujarat India

ICFAI Science School (Chemistry), ICFAI University Tripura Agartala-799210 Tripura (W) India.

出版信息

Chem Sci. 2019 Nov 26;11(4):1032-1042. doi: 10.1039/c9sc05403k.

DOI:10.1039/c9sc05403k
PMID:34084359
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8146459/
Abstract

Despite the recent surge of interest in two-dimensional (2D) inorganic nanosheets derived from photoactive coordination polymers of lanthanide ions having interesting optical properties, research in this area is still in its infancy. Luminescent lanthanide ions, Eu(iii) or/and Tb(iii), as well as a bis-terpyridine ligand (L), were used in this study as the building blocks for the synthesis of the archetypical layered structure of coordination polymers (CPs) (L·Eu/L·Tb). 2D-nanosheets were obtained through exfoliation of the layered precursor of CPs in a suitable solvent system following a sonication-assisted strategy. These nanosheets exhibit lateral sizes on the micrometer scale (0.3-1 μm) and an ultrathin thickness of 2-6.5 nm. 1,1-Diamino-2,2-dinitroethene or FOX-7 is an insensitive high explosive; in a binder mixture, it exhibits a slightly superior detonation velocity of 8870 m s in comparison to RDX. The insensitive nature of FOX-7 makes it a key component for the development of low vulnerable high explosive compositions for further application in weaponry. The growing demand for FOX-7, for use as a suitable replacement of conventional explosives, is of serious concern to human security. Achieving rapid and efficient detection of this unexplored explosive is a challenging task. In the present study, the developed luminescent nanosheets were used for the first time for micromolar level detection of FOX-7 both in solution and in the solid state. A visually distinct color change of the nanosheets from red (L·Eu) and green (L·Tb) to colorless was witnessed upon UV light irradiation during the detection process. Notably, the solid-state detection technique could be exploited for developing a commercial spray kit for quick onsite screening of this important explosive.

摘要

尽管最近人们对源自具有有趣光学性质的镧系离子光活性配位聚合物的二维(2D)无机纳米片兴趣激增,但该领域的研究仍处于起步阶段。本研究中使用发光镧系离子Eu(iii)或/和Tb(iii)以及双三联吡啶配体(L)作为构建单元来合成配位聚合物(CPs)的典型层状结构(L·Eu/L·Tb)。通过在合适的溶剂体系中采用超声辅助策略剥离CPs的层状前驱体来获得二维纳米片。这些纳米片的横向尺寸在微米尺度(0.3 - 1μm),厚度超薄,为2 - 6.5nm。1,1 - 二氨基 - 2,2 - 二硝基乙烯或FOX - 7是一种钝感高能炸药;在粘合剂混合物中,与RDX相比,它的爆速略高,为8870 m/s。FOX - 7的钝感性质使其成为开发低易损性高能炸药组合物以进一步应用于武器装备的关键成分。对FOX - 7作为传统炸药合适替代品的需求不断增长,这对人类安全构成严重关切。实现对这种未被探索的炸药的快速高效检测是一项具有挑战性的任务。在本研究中,首次将所开发的发光纳米片用于溶液和固态中微摩尔级FOX - 7的检测。在检测过程中,紫外光照射下可看到纳米片从红色(L·Eu)和绿色(L·Tb)变为无色,颜色变化明显。值得注意的是,固态检测技术可用于开发一种商业喷雾试剂盒,用于快速现场筛查这种重要炸药。

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