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Surface Plasmon-Based Techniques for the Analysis of Plasma Deposited Functional Films and Surfaces

机译:基于表面等离子技术的等离子体沉积功能膜和表面分析

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摘要

Herein we demonstrate that two surface plasmon-based techniques (i.e., SPR and OWS) allow for sensitive and real-time monitoring of plasma polymers of different thicknesses ranging from several nanometers to micrometers. Firstly, the fundamentals and the implementation of SPR/OWS are given. Examples about the use of SPR and OWS for the characterization of plasma deposited thin films are then presented, with emphasis on the stability and the swelling of those films in humid atmospheres and in aqueous media. The binding behavior of biological species (e.g., nucleic acid, protein, etc.) onto plasma polymer surfaces as seen by SPR and OWS are also discussed. The results clearly show that surface plasmon optics will play an essential part in the understanding and the future development of plasma deposited polymers.
机译:本文中,我们证明了两种基于表面等离激元的技术(即SPR和OWS)允许对厚度范围从几纳米到几微米的等离子体聚合物进行灵敏的实时监控。首先,给出了SPR / OWS的基本原理和实现。然后介绍了有关使用SPR和OWS表征等离子体沉积薄膜的示例,重点是那些膜在潮湿气氛和水性介质中的稳定性和溶胀性。还讨论了如通过SPR和OWS所见的生物物种(例如,核酸,蛋白质等)在血浆聚合物表面上的结合行为。结果清楚地表明,表面等离激元光学器件将在理解和沉积等离子体沉积聚合物的未来发展中发挥重要作用。

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