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Automatic film formation system for ultra-thin organic heterostructure by mass-controlled layer-by-layer sequential adsorption method within one nanometer interface roughness

机译:一种纳米界面粗糙度在一个纳米界面逐层序列吸附法的超薄有机异质结构自动膜形成系统

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An automatic film formation system using an enhanced mass-controlled layer-by-layer sequential adsorption process was newly developed for the fabrication of ultra-thin organic films formed by various polymers,monomers,and inorganic materials.This technique can be applied to both water solutions and volatile solvents.In this process,a quartz crystal microbalance (QCM) was attached to the arm of a robot and the frequency shifts during the adsorption of the materials were monitored.By feeding back the data acquired by the QCM from the deposition to the dipping time,a high quality self-assembly film was produced.As a result,the interface roughness between the layers can be controlled within one nanometer.The cross-sectional TEM (transmission electron microscopy) observation of the films formed by the conventionalt ime controlled dipping method and the newly established mass-controlled dipping method reveals that the interface of the heterostructure of the latter was much smoother than the former.In addition,this automatic dipping system can be applied not only for polyelectrolytes,but also for inorganic materials.
机译:使用增强的质量控制的逐层顺序吸附过程的自动膜形成系统用于制造由各种聚合物,单体和无机材料形成的超薄有机膜的制备。本技术可应用于两种水解决方案和挥发性溶剂。在该过程中,将石英晶体微稳定(QCM)连接到机器人的臂上,并监测材料的吸附过程中的频移。通过QCM从沉积中馈送所获取的数据。浸入时间,产生高质量的自组装膜。结果,可以在一个纳米内控制层之间的界面粗糙度。横截面TEM(透射电子显微镜)观察由传统的IME形成的薄膜受控浸渍方法和新建立的肿块控制浸渍方法表明,后者异质结构的界面比该界面更平滑以前。此外,这种自动浸渍系统不仅可以应用于聚电解质,还可以应用于无机材料。

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