Nano/microwires of coronene for sensing electron-deficient aromatics

Hong Wang, Xiaohe Xu, H. Ji
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引用次数: 1

Abstract

We report the synthesis, characterization, and application of coronene nano/microwires for sensing electron-deficient aromatics. The coronene nano/microwires were prepared by a vapor deposition method. The nano /microwires were approximately 300 nm in diameter and 3-5 mm long. ATR-IR spectroscopy and TG/DTA showed that coronene remains intact and does not undergo polymerization or decomposition during the vapor deposition. Cross-optical polarized microscopy showed a birefringent crystal structure of the coronene microwires. Fluorescent imaging showed that the crystalline coronene nano/microwires can be used as waveguide material. Both the conductivity and fluorescence of the crystalline nano/microwires change selectively in the presence of nitrobenzene vapor, a representative nitroaromatic. This suggests that the coronene nano/ microwires may be used for selective detection of explosives since many explosives belong to a group of electron-deficient nitroaromatics.
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传感缺电子芳烃的冠烯纳米/微线
我们报道了用于检测缺电子芳烃的冠烯纳米/微线的合成、表征和应用。采用气相沉积法制备了冠烯纳米微线。纳米/微线直径约为300纳米,长3-5毫米。ATR-IR光谱和TG/DTA分析表明,在气相沉积过程中,冠烯保持完整,未发生聚合或分解。交叉光学偏光显微镜观察到日冕微丝呈双折射晶体结构。荧光成像结果表明,晶体冠烯纳米/微线可作为波导材料。在硝基苯蒸汽的存在下,纳米微线的电导率和荧光都发生了选择性的变化。这表明,由于许多炸药属于一组缺电子的硝基芳烃,冠烯纳米/微线可用于炸药的选择性检测。
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