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Superhydrophobic SERS chip based on a Ag coated natural taro-leaf

机译:超疏水ser芯片基于Ag)涂层自然taro-leaf

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摘要

Surface-enhanced Raman spectroscopy (SERS) substrates based on plasmonic nanostructures allow for label-free and fingerprinting molecular detection with ultrahigh sensitivity and selectivity, but their complicated and high-cost fabrication remains a challenge for practical applications and commercialization of SERS technology. Herein, we developed a facile and low-cost natural SERS substrate based on silver coated taro leaf (Taro-leaf@Ag) that exhibits ordered micro-papillae and secondary crossed nanoplates. The micro-papillae exhibited superior superhydrophobicity for analyte enrichment and the secondary crossed nanoplates provided rich SERS hot spots, which together lead to highly sensitive SERS detection with a detection limit as low as 10(-8) M. Moreover, the crossed nanoplates were uniformly distributed such that reproducible SERS measurements with a 9.7% variation over 1274 spectra was achieved. The high SERS sensitivity and reproducibility as well as the facile and low-cost fabrication make the Taro-leaf@Ag a promising natural SERS substrate for future practical biochemical detection methods.
机译:表面增强拉曼光谱(ser)基于电浆纳米结构的基质允许label-free和指纹识别分子与超高灵敏度和检测选择性,但他们的复杂和高成本对实际制造仍是一个挑战应用程序和ser的商业化技术。基于银低成本自然ser衬底涂布芋头叶(Taro-leaf@Ag)展品下令micro-papillae和二次交叉nanoplates。对分析物浓缩和superhydrophobicity二次交叉nanoplates提供丰富ser热点,导致高度敏感的ser检测的检测极限低至10 (8)m .此外,交叉nanoplates均匀分布,这样可再生的ser测量了9.7%1274多光谱变化。ser灵敏度高、重现性好简单和低成本制造的Taro-leaf@Ag承诺自然ser衬底为将来实际生化检测方法。

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