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Universal surface modification of transition metal dichalcogenide decorated with metal nanoparticles for surface enhanced Raman scattering

机译:金属纳米粒子修饰的过渡金属二卤化物的通用表面改性,用于表面增强拉曼散射

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摘要

Surface modification through the interaction between the soft sulfur layers of transition metal dichalcogenide (MX2; M=Mo,W; X=S) and metal nanoparticles (Ag and Au) can exhibit interesting surface plasmon enhanced Raman scattering (SERS) behaviors. We demonstrate a comprehensive strategy for the synthesis of MX2-metal nanoparticle complexes without aggregation. Even more important is the extent of uptake of Ag and Au NPs for the application of optical sensors. We obtained Raman spectra with a red shift and broad FWHM for MoS2-metal NPs and a decrease of the intensity ratio of E-2g(1)/A(1g) for WS2-metal NPs. The X-ray photoemission spectroscopy results revealed surface modification of MX2-metal nanoparticle complexes with no oxidation of the MX2 surfaces. Finally, we demonstrated that the MX2-metal nanoparticle complexes have excellent properties exhibiting SERS for potential application in nanoscale sensors. 2017 Elsevier Ltd. All rights reserved.
机译:通过过渡金属二硫化碳(MX2; M = Mo,W; X = S)和金属纳米颗粒(Ag和Au)的软硫层之间的相互作用进行的表面改性可以表现出有趣的表面等离子体激元增强的拉曼散射(SERS)行为。我们展示了一种无需聚集即可合成MX2-金属纳米粒子复合物的综合策略。对于光学传感器的应用,Ag和Au NPs的吸收程度甚至更为重要。对于MoS2金属NP,我们获得了具有红移和宽FWHM的拉曼光谱,而WS2金属NPs的E-2g(1)/ A(1g)的强度比降低了。 X射线光发射光谱结果表明,MX2-金属纳米粒子复合物的表面改性而MX2表面没有氧化。最后,我们证明了MX2-金属纳米粒子复合物具有优异的性能,展现出SERS的潜力,可用于纳米级传感器。 2017 Elsevier Ltd.保留所有权利。

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