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Significant increase in dipole moments of functional groups using cation bonding for excellent SERS sensing as a universal approach

机译:使用阳离子键合出优异的SERS感应作为普遍方法的偶极偶像偶像的显着增加

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The recently developed dipole-based surface-enhanced Raman scattering (SERS) technique has opened a new opportunity to fabricate high-performance sensing platforms with advantages including molecular identification abilities, decreased costs, and high sensitivity. Although extensive efforts have been devoted to increasing the area density of molecular dipoles on graphene to improve sensing sensitivity, limited dipole moments hinder them from further enhancement and applications. Here, we propose a versatile approach to significantly increase the dipole moments of oxygen-containing functional groups (OFGs) on graphene using cation bonding. Taking Cu~(2+) as a model, dozens of enhancements in dipole moments are demonstrated using theoretical calculations as confirmed by SERS measurements, and a comparison is made with general OFGs and graphene oxide-based SERS platforms. The outstanding contribution of Cu-OFG bonds to SERS is proven using IR, XPS, and EFM, where electromagnetic and typical chemical mechanisms are excluded by the TEM and UPS results. The as-prepared Cu-OFG SERS platforms not only show a high sensitivity to Rhodamine 6 G (10~(-10) M), but also demonstrate their further applications in detecting trace nitrate (10~(-10) M), a harmful substance in drinking water, and thiaben-dazole (0.01 ppm), a parasiticide for fruits. The cation bonding strategy applies to various cations to fabricate excellent versatile SERS platforms for use in various fields, such as trace poison detection and biomedical sensing.
机译:最近开发的基于偶极的表面增强拉曼散射(SERS)技术已经开辟了一种新的机会,用于制造具有包括分子识别能力,降低成本和高灵敏度的优点的高性能传感平台。尽管已经致力于提高石墨烯的分子偶极子面积密度以提高感测灵敏度的广泛努力,但有限的偶极矩阻碍它们进一步增强和应用。在这里,我们使用阳离子键合来提出一种多功能的方法来显着增加石墨烯上的含氧官能团(OFGS)的偶极矩。服用Cu〜(2+)作为模型,使用由SERS测量证实的理论计算来证明偶极矩的数十种增强,并且使用GengS和基于石墨烯的SERS平台进行比较。使用IR,XPS和EFM证明Cu-OFG键对SERS的出色贡献,其中电磁性和典型的化学机制被TEM和UPS结果排除。制备的Cu-OFG SERS平台不仅显示出对罗丹明6g的高敏感性(10〜(-10)m),而且还证明了它们在检测痕量硝酸盐(10〜(-10)m)中的进一步应用,a饮用水中的有害物质,以及Thiaben -dazazole(0.01ppm),果实寄生虫。阳离子粘接策略适用于各种阳离子,用于制造出用于各种领域的优良多功能SERS平台,例如痕量毒物检测和生物医学感测。

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