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Semiconductor-enhanced Raman scattering: active nanomaterials and applications

机译:Semiconductor-enhanced喇曼散射:活跃纳米材料及应用

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摘要

Surface-enhanced Raman scattering (SERS)-active nanomaterials have extended from noble metals and transition metals to semiconductor materials, since the first discovery of SERS in the mid-1970s. In comparison with metal substrates and transition metals, semiconductor materials have additional optical and electrical properties besides SERS enhancement ability, which enable them to display remarkable charge-transfer enhancement and catalytic ability. Moreover, their superior biocompatibility allows these nanomaterials to have great potential applications in bioscience. Herein we highlight the fast growing research field focusing on SERS-active semiconductor nanomaterials and semiconductor-other material heterostructures developed in our group as well as in other related research studies. The material size, morphology and assembly-dependent SERS enhancement have been discussed in detail. Furthermore, a variety of promising applications of semiconductor-enhanced Raman scattering in photoelectric characterization, redox biochemistry, sensing, and the catalytic degradation of organic pollutants are introduced.
机译:表面增强拉曼散射(ser)活性纳米材料从高贵的金属和扩展过渡金属半导体材料,因为ser的首次发现1970年代中期。和过渡金属,半导体材料有额外的光学和电学性质吗除了ser增强能力,使他们显示非凡的电荷转移增强和催化能力。他们优良的生物相容性使得这些纳米材料有巨大的潜力在生物科学中的应用。快速发展的研究领域关注SERS-active半导体纳米材料和semiconductor-other材料异质结构在我们的团队以及其他发展相关的研究。形态和assembly-dependent ser增强被详细讨论。此外,各种各样的应用前景semiconductor-enhanced喇曼散射光电特性、氧化还原生物化学、传感和催化介绍了有机污染物的降解。

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