Controlling coffee ring structure on hydrophobic polymer surface by manipulating wettability with O_

来源 :Chinese Chemical Letters | 被引量 : 0次 | 上传用户:fsswczc
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A simple and novel method is firstly reported for controlling coffee ring structure on polystyrene(PS)film surface by O_2 plasma. O_2 plasma treatment leads to the wettability change of PS surface from hydrophobic to hydrophilic. For hydrophilic PS surface the coffee ring structure is avoided relying on the motion of contact line(CL) while SiO_2 microspheres are left. The motion of the CL is produced based on the viscosity and Marangoni effect with the addition of polymer additives. For hydrophobic PS surface coffee ring structure still persists even with polymer additives because SiO_2 microspheres transfer with the motion of the CL at the beginning of droplet evaporation and accumulate at the droplet edge at late stage with the pinning of the CL. As a result, uniform and macroscale SiO_2 microspheres deposition without coffee ring structure and SiO_2 microspheres deposition with coffee ring structure are controlled by O_2 plasma. This method provides a new way to tune coffee ring structure with smart surface and may be potentially useful for a range of application at material deposition and diagnosing diseases. A simple and novel method is first reported for controlling coffee ring structure on polystyrene (PS) film surface by O 2 plasma. O 2 plasma treatment leads to the wettability change of PS surface from hydrophobic to hydrophilic. relying on the motion of contact line (CL) while SiO 2 microspheres are left. The motion of the CL is based on the viscosity and Marangoni effect with the addition of polymer additives. For hydrophobic PS surface coffee ring structure still persists even with polymer additives because SiO 2 microspheres transfer with the motion of the CL at the beginning of droplet evaporation and accumulate at the droplet edge at late stage with the pinning of the CL. As a result, uniform and macroscale SiO 2 microspheres deposition without coffee ring structure and SiO 2 microspheres deposition with coffee ring structure are controlled by O_2 plasma. This method provides a new way to tune coffee ring str ucture with smart surface and may be potentially useful for a range of application at material deposition and diagnosed diseases.
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