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首页> 外文期刊>Angewandte Chemie >FRET-Integrated Polymer Brushes for Spatially Resolved Sensing of Changes in Polymer Conformation
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FRET-Integrated Polymer Brushes for Spatially Resolved Sensing of Changes in Polymer Conformation

机译:FRET-集成的聚合物刷用于空间分辨的聚合物构象变化的感测

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Polymer brush surfaces that alter their physical properties in response to chemical stimuli have the capacity to be used as new surface-based sensing materials. For such surfaces, detecting the polymer conformation is key to their sensing capabilities. Herein, we report on FRET-integrated ultrathin (<70 nm) polymer brush surfaces that exhibit stimuli-dependent FRET with changing brush conformation. Poly(N-isopropylacrylamide) polymers were chosen due their exceptional sensitivity to liquid mixture compositions and their ability to be assembled into well-defined polymer brushes. The brush transitions were used to optically sense changes in liquid mixture compositions with high spatial resolution (tens of micrometers), where the FRET coupling allowed for noninvasive observation of brush transitions around complex interfaces with real-time sensing of the liquid environment. Our methods have the potential to be leveraged towards greater surface-based sensing capabilities at intricate interfaces.
机译:聚合物刷表面在化学刺激下改变其物理性质,可以用作新的表面传感材料。对于此类表面,检测聚合物构象是其传感能力的关键。在此,我们报告了FRET集成超薄(<70 nm)聚合物刷子表面,其表现出随刷子构象变化的刺激依赖性FRET。选择聚(N-异丙基丙烯酰胺)聚合物是因为它们对液体混合物成分特别敏感,并且能够组装成定义明确的聚合物刷。刷状过渡用于以高空间分辨率(几十微米)光学感测液体混合物成分的变化,其中FRET耦合允许对复杂界面周围的刷状过渡进行无创观察,并实时感测液体环境。我们的方法有潜力在复杂的界面上实现更大的基于表面的传感能力。

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