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A Highly Efficient Sensor Platform Using Simply Manufactured Nanodot Patterned Substrates

机译:使用简单制造的纳米点图案化基板的高效传感器平台

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摘要

Block copolymer (BCP) self-assembly is a low-cost means to nanopattern surfaces. Here, we use these nanopatterns to directly print arrays of nanodots onto a conducting substrate (Indium Tin Oxide (ITO) coated glass) for application as an electrochemical sensor for ethanol (EtOH) and hydrogen peroxide (H2O2) detection. The work demonstrates that BCP systems can be used as a highly efficient, flexible methodology for creating functional surfaces of materials. Highly dense iron oxide nanodots arrays that mimicked the original BCP pattern were prepared by an ‘insitu’ BCP inclusion methodology using poly(styrene)-block-poly(ethylene oxide) (PS-b-PEO). The electrochemical behaviour of these densely packed arrays of iron oxide nanodots fabricated by two different molecular weight PS-b-PEO systems was studied. The dual detection of EtOH and H2O2 was clearly observed. The as-prepared nanodots have good long term thermal and chemical stability at the substrate and demonstrate promising electrocatalytic performance.
机译:嵌段共聚物(BCP)自组装是纳米图案表面的一种低成本方法。在这里,我们使用这些纳米图案将纳米点的阵列直接打印到导电基板(氧化铟锡(ITO)涂层的玻璃)上,用作乙醇(EtOH)和过氧化氢(H2O2)检测的电化学传感器。这项工作表明BCP系统可以用作创建材料功能表面的高效,灵活的方法。通过使用聚(苯乙烯)-嵌段-聚(环氧乙烷)(PS-b-PEO)的“原位” BCP包含方法制备了模仿原始BCP图案的高密度氧化铁纳米点阵列。研究了由两种不同分子量的PS-b-PEO系统制备的这些紧密堆积的氧化铁纳米点阵列的电化学行为。清楚地观察到EtOH和H2O2的双重检测。所制备的纳米点在基材上具有良好的长期热稳定性和化学稳定性,并显示出有希望的电催化性能。

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