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SHG investigation of ferroelectricity, domain orientations, and phases of monolithic PVDF thin films

机译:SHG调查铁电,域取向和单片PVDF薄膜的阶段

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Second harmonic generation (SHG) laser spectroscopy has been demonstrated to be a powerful, sensitive,and non-destructive analytical technique to study crystalline phases, domain structures, and molecular dipoleorientations of ferroelectric polymeric thin films such as PVDF. While other spectroscopic techniques, such asWXRD and FTIR, do provide valuable information on the crystalline phases, they are not sensitive enough toprovide the detailed information at molecular levels and properties at interfaces. The current study of single layeredPVDF polymer has also shown that SHG can be further developed into an in-situ, sensitive and quantitative tool tostudy ferroelectric polymeric thin film structures. In combination, SHG and electric field induced SHG (EFISH)techniques will allow us to interrogate multilayered structures layer-by-layer, the effects of physical confinementand interfacial physics.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:二次谐波产生(SHG)激光器光谱法已被证明是一个功能强大的,敏感的,非破坏性分析技术来研究结晶相,域结构,和铁电聚合物薄膜,例如PVDF的分子dipoleorientations。虽然其他光谱技术,例如asWXRD和FTIR,做提供的晶相有价值的信息,他们还不够灵敏toprovide在界面处的分子水平和性能的详细信息。单layeredPVDF聚合物的目前的研究还表明,SHG可以进一步发展成所以研究的铁电聚合物薄膜结构的原位,灵敏和定量的工具。在组合中,SHG和诱导SHG电场(EFISH)技术将允许我们询问多层结构层与层之间,物理confinementand界面物理效果。©图片,光学仪器工程师(2012)著作权协会(SPIE)。仅供个人使用的摘要下载。

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