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使用含双发射半全氟烷基取代α-氰基芪的无洗涤剂复合乳液的创新实时流量传感器。

Innovative Real-Time Flow Sensor Using Detergent-Free Complex Emulsions with Dual-Emissive Semi-Perfluoroalkyl Substituted Α-Cyanostilbene.

作者信息

Rakesh Narani, Tu Hsiung-Lin, Chang Po-Chun, Gebreyesus Sofani Tafesse, Lin Che-Jen

机构信息

Department of Chemistry, National Dong Hwa University, Shoufeng, 974301, Taiwan.

Institute of Chemistry, Academia Sinica, Nangang, Taipei, 115201, Taiwan.

出版信息

Adv Sci (Weinh). 2023 Nov;10(31):e2304108. doi: 10.1002/advs.202304108. Epub 2023 Sep 13.

Abstract

In this study, the potential of complex emulsions is investigated as transducers in sensing applications. Complex emulsions are stabilized without external detergents by developing a novel α-cyanostilbene substituted with PEG and semi-perfluoroalkyl chain (CNFCPEG). CNFCPEG exhibits unique variable emission properties depending on its aggregation state, allowing dual blue and green emissions in complex emulsions with hydrocarbon-in-fluorocarbon-in-water (H/F/W) morphology. The green excimer emissions result from the self-assembly of CNFCPEG at the fluorocarbon/water interface, while the blue emission observed is due to aggregation in the organic phase. A novel flow-injection method is developed by incorporating complex emulsions with CNFCPEG into multiple-well flow chips (MWFC). Iodine is successfully detected in a mobile aqueous solution by monitoring morphology changes. The findings demonstrate that self-stabilized complex emulsions with MWFC hold great promise for real-time sensing without costly instruments.

摘要

在本研究中,研究了复合乳液作为传感应用中的换能器的潜力。通过开发一种新型的用聚乙二醇(PEG)和半全氟烷基链取代的α-氰基芪(CNFCPEG),复合乳液无需外部洗涤剂即可实现稳定。CNFCPEG根据其聚集状态表现出独特的可变发射特性,在具有氟碳包烃包水(H/F/W)形态的复合乳液中可实现蓝色和绿色双重发射。绿色准分子发射是由CNFCPEG在氟碳/水界面处的自组装产生的,而观察到的蓝色发射则是由于在有机相中的聚集。通过将含有CNFCPEG的复合乳液整合到多孔流动芯片(MWFC)中,开发了一种新型的流动注射方法。通过监测形态变化,成功地在流动的水溶液中检测到了碘。研究结果表明,MWFC自稳定复合乳液在无需昂贵仪器的实时传感方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84fa/10625100/bceed87c1ac2/ADVS-10-2304108-g007.jpg

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