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Aim and shoot: molecule-imprinting polymer coated MoO3 for selective SERS detection and photocatalytic destruction of low-level organic contaminants

机译:瞄准和射击:分子印迹聚合物涂层moO3用于选择性sERs检测和光催化破坏低水平有机污染物

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摘要

A sensitive and selective SERS sensor with easy and excellent recyclability is highly demanded because of its great potential application in complex detection environments. Here, using methylene blue (MB) as a model target, a semiconductor-based SERS substrate composed of a MoO3 nanorod core and a uniform molecule-imprinting polymethacrylic acid shell (MIP) with a thickness of 4 nm was designed and fabricated (MoO3@MIP) to achieve selective detection. The key to the successful coating of the ultrathin uniform MIP shell lies in the pretreatment of a MoO3 core with nitric acid, providing sufficient surficial hydroxyls for the anchoring of a polymer precursor. The molecule-imprinted voids for MB were formed simply via light irradiation as a result of photocatalytic degradation by a MoO3 semiconductor. This core–shell MIP composite shows a high SERS selectivity towards low-level MB in a mixed MB/CV solution. The enhanced factor (EF) is high, at 1.6 × 104. More importantly, the selective detection allows the further photocatalytic recycling of MoO3@MIP in an “aim-and-shoot” way, which well preserves the detection selectivity and sensitivity towards MB at least for 4 cycles. Based on decreased sensitivity with the increasing shell thickness (10–24 nm), a MIP-gating charge transfer mechanism is proposed to demonstrate the high EF instead of the molecule-enrichment effect. This “aim-and-shoot” strategy is expected to push forward the prosperous application of selective SERS for trace detection in versatile environments.
机译:由于其在复杂的检测环境中具有巨大的潜在应用前景,因此对灵敏,选择性强,易于回收的SERS传感器提出了很高的要求。在这里,以亚甲基蓝(MB)为模型目标,设计并制造了由MoO3纳米棒核和厚度为4 nm的均匀分子印迹聚甲基丙烯酸壳(MIP)组成的基于半导体的SERS衬底(MoO3 @ MIP)以实现选择性检测。成功涂覆超薄均匀MIP外壳的关键在于用硝酸对MoO3核进行预处理,从而为聚合物前体的锚固提供足够的表面羟基。由于MoO3半导体的光催化降解,仅通过光照射就形成了MB分子印迹的空隙。这种核壳MIP复合材料在混合的MB / CV解决方案中对低级MB具有很高的SERS选择性。增强因子(EF)高,为1.6×104。更重要的是,选择性检测可以“瞄准”方式进一步对MoO3 @ MIP进行光催化回收,从而很好地保留了对MB的检测选择性和灵敏度。至少持续4个周期。基于随着壳厚度(10–24 nm)的增加而灵敏度降低,提出了MIP门控电荷转移机制以证明高EF效应而不是分子富集效应。预期这种“瞄准和射击”策略将推动选择性SERS在多功能环境中进行痕量检测的繁荣应用。

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