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利用太赫兹时域光谱结合超材料对植物生长调节剂进行高灵敏度检测。

Highly sensitive detection of plant growth regulators by using terahertz time-domain spectroscopy combined with metamaterials.

出版信息

Opt Express. 2021 Oct 25;29(22):36535-36545. doi: 10.1364/OE.437909.

Abstract

The rapid and sensitive detection of plant-growth-regulator (PGR) residue is essential for ensuring food safety for consumers. However, there are many disadvantages in current approaches to detecting PGR residue. In this paper, we demonstrate a highly sensitive PGR detection method by using terahertz time-domain spectroscopy combined with metamaterials. We propose a double formant metamaterial resonator based on a split-ring structure with titanium-gold nanostructure. The metamaterial resonator is a split-ring structure composed of a titanium-gold nanostructure based on polyimide film as the substrate. Also, terahertz spectral response and electric field distribution of metamaterials under different analyte thickness and refractive index were investigated. The simulation results showed that the theoretical sensitivity of resonance peak 1 and peak 2 of the refractive index sensor based on our designed metamaterial resonator approaches 780 and 720 gigahertz per refractive index unit (GHz/RIU), respectively. In experiments, a rapid solution analysis platform based on the double formant metamaterial resonator was set up and PGR residues in aqueous solution were directly and rapidly detected through terahertz time-domain spectroscopy. The results showed that metamaterials can successfully detect butylhydrazine and N-N diglycine at a concentration as low as 0.05 mg/L. This study paves a new way for sensitive, rapid, low-cost detection of PGRs. It also means that the double formant metamaterial resonator has significant potential for other applications in terahertz sensing.

摘要

快速、灵敏地检测植物生长调节剂(PGR)残留对于保障消费者的食品安全至关重要。然而,目前检测 PGR 残留的方法存在许多缺点。在本文中,我们展示了一种使用太赫兹时域光谱结合超材料的高灵敏度 PGR 检测方法。我们提出了一种基于双共振腔的超材料谐振器,其结构基于带有钛金纳米结构的分裂环。该超材料谐振器由基于聚酰亚胺薄膜的钛金纳米结构组成,作为基底。此外,我们还研究了不同分析物厚度和折射率下超材料的太赫兹光谱响应和电场分布。模拟结果表明,基于我们设计的超材料谐振器的折射率传感器的共振峰 1 和峰 2 的理论灵敏度分别接近 780 和 720 千兆赫每折射率单位(GHz/RIU)。在实验中,我们建立了一个基于双共振腔超材料的快速溶液分析平台,并通过太赫兹时域光谱直接快速检测水溶液中的 PGR 残留。结果表明,超材料可以成功检测到浓度低至 0.05 毫克/升的丁基肼和 N-N 二甘氨酸。本研究为 PGR 的灵敏、快速、低成本检测开辟了新途径。这也意味着双共振腔超材料谐振器在太赫兹传感的其他应用中具有很大的潜力。

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