首页> 外文期刊>Bulletin of the Chemical Society of Japan >Laser-Induced Single Microdroplet Formation and Simultaneous Water-to-Single Microdroplet Extraction/Detection in Aqueous 1-Butanol Solutions
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Laser-Induced Single Microdroplet Formation and Simultaneous Water-to-Single Microdroplet Extraction/Detection in Aqueous 1-Butanol Solutions

机译:激光诱导的单微型液和同时水 - 单微滴水萃取/检测在1-丁醇溶液中水溶液

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摘要

Focused 1064-nm laser beam irradiation to an aqueous 1-butanol (BuOH) solution (7.l-7.4wt% in H_20) resulted in formation of a single picoliter-volume BuOH droplet. Since water (H_2O) absorbs 1064-nm laser light, an aqueous BuOH solution at the laser beam focus is heated via photo-thermal effects and this leads to thermal phase separation of the solution, producing a single BuOH microdroplet. In the presence of a fluorescent dye (10~(-5)10~(-7) mol/dm~3) in an aqueous BuOH solution, the dye was extracted from the surrounding water phase to the BuOH droplet produced by laser irradiation as demonstrated by in situ fluorescence and Raman microspectroscopies. The present laser-induced water-to-single microdroplet extraction/detection was also extended successfully to that under pressure-driven and electroosmotic flow conditions in microflow devices. In both cases, the single BuOH microdroplets produced by 1064-nm laser irradiation were optically trapped against flow of the solution. Under electroosmotic flow conditions, highly sensitive detection of a fluorescent Al~(3+)-chelate complex injected to an electrophoresis capillary tube was also achieved successfully by single BuOH microdroplet formation and simultaneous extraction of the Al~(3+) chelate to the droplet by 1064-nm laser irradiation.
机译:将1064-nm激光束照射到1-丁醇水溶液(水溶液)溶液(7.L-7.4wt%的H_20),得到形成单吡啶体积水液滴。由于水(H_2O)吸收1064-nm激光,通过光热效应加热激光束焦点的水性水溶液,这导致溶液的热相分离,产生单个水鼠微量滴电码。在水性水溶液中存在荧光染料(10〜(-5)10〜(-7)mol / dm〜3),将染料从周围水相提取到通过激光照射产生的水滴作为通过原位荧光和拉曼微斑仪证明。目前的激光诱导的水 - 单微型微滴电萃取/检测也成功地延伸至微流量装置中的压力驱动和电渗流动条件下。在这两种情况下,由1064-nm激光照射产生的单个水解微量电池被光学捕获反对溶液的流动。在电渗流动条件下,通过单一的水摩洛微滴形成和同时提取液体的荧光Al〜(3 +) - 螯合物复合物注入电泳毛细管的荧光Al〜(3 +) - 螯合物复合物的高敏感性检测通过1064-nm激光辐照。

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    Department of Chemistry Faculty of Science Hokkaido University K.ita-lO-Nishi-8 Kita-ku Sapporo 060-0810;

    Department of Chemistry Faculty of Science Hokkaido University K.ita-lO-Nishi-8 Kita-ku Sapporo 060-0810;

    Department of Chemistry Faculty of Science Hokkaido University K.ita-lO-Nishi-8 Kita-ku Sapporo 060-0810;

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  • 正文语种 eng
  • 中图分类 化学;
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