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Development of Synergistic Opto-Electronic Sensing Platform based on Zinc Oxide Semiconducting Nanostructures

机译:基于氧化锌半导体纳米结构的协同光电电子传感平台的开发

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Potential of zinc oxide nanowires for developing a sensitive opto-electronic platform was demonstrated. Zinc oxide nanowires synthesized on insulating sapphire substrates were functionalized with an optically active receptor, 1-pyrenebutyric acid. Appropriate characterization studies including XPS and FT-IR ATR are reported. I-V curves of pristine and receptor-modified nanowires were utilized to highlight the potential of zinc oxide nano-heterostructures for developing a sensitive opto-electronic platform for p-nitrophenol sensing. Packaging issues for achieving an efficient and cost-effective sensor platform have also been outlined.
机译:证实了用于开发敏感光电平台的氧化锌纳米线的电位。用光学活性受体,1-聚苯二甲酸合成的氧化锌纳米线在绝缘蓝宝石衬底上官能化。报道了适当的表征研究,包括XPS和FT-IR ATR。利用原始和受体改性纳米线的I-V曲线来突出氧化锌纳米异质结构的潜力,用于开发用于对硝基苯酚感测的敏感光电平台。还概述了实现高效且经济高效的传感器平台的包装问题。

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