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In situ SERS interrogation of catalytic reaction on three-dimensional gold nanowire carpeted polycarbonate membranes

机译:三维金纳米线覆盖的聚碳酸酯膜上原位SERS催化反应的询问

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摘要

Direct monitoring of a catalytic process is essential to elucidate the underlying chemical principles and to expedite the design of next generation catalysts. The in situ SERS approach on three-dimensional gold nanowire ensembles was investigated in this study, which have a double role as an optical enhancer for Raman scattering and as a catalytic active center over many chemical reactions. The nanowire cluster was first electrolessly deposited using a porous polymer template, producing a SERS-active substrate with massive optical enhancement with an average factor of ~10~5. This established system, integrating a heterogeneous catalysis and real-time SERS detection, is assessed by monitoring the catalytic reduction of 4-nitrophenol in the presence of excessive amount of NaBH4, during which the gradual increase of Raman intensity from the signature peak of 4-aminophenol is clearly recorded, implying the successful chemical transformation of gold nanowires. Therefore, this integrated system, synchronizing reaction and detection, is an ideal candidate for the in situ study of catalytic reactions on a relatively large scale as it balances technological and economical advantages.
机译:直接监测催化过程对于阐明基本化学原理和加快下一代催化剂的设计至关重要。在这项研究中,对三维金纳米线集合体的原位SERS方法进行了研究,它具有拉曼散射的光学增强剂和许多化学反应的催化活性中心的双重作用。首先使用多孔聚合物模板化学沉积纳米线簇,从而生产出具有大量光学增强作用的SERS活性基质,平均因子约为10〜5。通过在过量NaBH4存在下监测4-硝基苯酚的催化还原作用,评估了建立的系统,该系统结合了非均相催化和实时SERS检测,在此期间,拉曼强度从4-的特征峰逐渐增加清楚地记录了氨基苯酚,这意味着金纳米线的成功化学转化。因此,这种同步反应和检测的集成系统是在较大规模上就地研究催化反应的理想选择,因为它平衡了技术和经济优势。

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