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Nanoparticles for dewetting suppression of thin polymer films used in chemical sensors

机译:用于抑制化学传感器中聚合物薄膜的去湿的纳米颗粒

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Addition of fullerenes (C60 or buckyballs) to a linear polymer has been found to eliminate dewetting when a thin (~50 nm) film is exposed to solvent vapor. Based on neutron reflectivity measurements, it is found that the fullerenes form a coherent layer approximately 2 nm thick at the substrate – polymer film interface during the spin-coating process. The thickness and relative fullerene concentration (~29 vol%) is not altered during solvent vapor annealing and it is thought this layer forms a solid-like buffer shielding the adverse van der Waals forces promoted by the underlying substrate. Several polymer films produced by spin- or spray-coating were tested on both silicon wafers and live surface acoustic wave sensors demonstrating fullerenes stabilize many different polymer types, prepared by different procedures and on various surfaces. Further, the fullerenes drastically improve sensor performance since dewetted films produce a sensor that is effectively inoperable.
机译:发现将富勒烯(C60 或布基球)添加到线性聚合物中可以消除薄膜(〜50 nm)暴露于溶剂蒸汽中时的去湿现象。根据中子反射率测量,发现在旋涂过程中,富勒烯在基材-聚合物膜界面处形成了约2 nm厚的粘结层。厚度和相对富勒烯浓度(〜29 vol%)在溶剂蒸汽退火过程中不会改变,并且可以认为该层形成了固体状的缓冲层,可屏蔽下层基材所引起的不利范德华力。通过旋涂或喷涂生产的几种聚合物薄膜均在硅片和活表面声波传感器上进行了测试,证明富勒烯可稳定通过不同程序在各种表面上制备的许多不同聚合物类型。此外,富勒烯极大地改善了传感器性能,因为被润湿的膜产生的传感器实际上是不可操作的。

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