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Molecular engineering of organic semiconductors enables noble metal-comparable SERS enhancement and sensitivity

机译:有机半导体的分子工程使得惰性金属相当的SERs提高和灵敏度

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Nanostructured molecular semiconductor films are promising Surface-Enhanced Raman Spectroscopy (SERS) platforms for both fundamental and technological research. Here, we report that a nanostructured film of the small molecule DFP-4T, consisting of a fully π-conjugated diperfluorophenyl-substituted quaterthiophene structure, demonstrates a very large Raman enhancement factor (10sup5/sup) and a low limit of detection (10sup-9/sup?M) for the methylene blue probe molecule. This data is comparable to those reported for the best inorganic semiconductor- and even intrinsic plasmonic metal-based SERS platforms. Photoluminescence spectroscopy and computational analysis suggest that both charge-transfer energy and effective molecular interactions, leading to a small but non-zero oscillator strength in the charge-transfer state between the organic semiconductor film and the analyte molecule, are required to achieve large SERS enhancement factors and high molecular sensitivities in these systems. Our results provide not only a considerable experimental advancement in organic SERS figure-of-merits but also a guidance for the molecular design of more sensitive SERS systems.
机译:纳米结构的分子半导体膜是对基础和技术研究的基础增强拉曼光谱(SERS)平台。这里,我们报告说,由完全π-缀合的DIPEL氟苯基 - 取代的Quaterthino食蛋白结构组成的小分子DFP-4T的纳米结构薄膜显示出非常大的拉曼增强因子(> 10 5 )和a用于亚甲基蓝探针分子的检测下限(10 -9 m)。该数据与报告的最佳无机半导体甚至均未置换基于内在等级金属的SERS平台相当。光致发光光谱和计算分析表明,需要电荷输送能量和有效的分子相互作用,导致有机半导体膜与分析物分子之间的电荷转移状态下的小但非零振荡器强度,以实现大型SERs增强这些系统中的因素和高分子敏感性。我们的结果不仅提供了有机SERS的相当大的实验进展,而且还提供了对MERS SERS系统的分子设计的指导。

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