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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Fabrication of electrochemically responsive surface relief diffraction gratings based on a multifunctional polyamide containing oligoaniline and azo groups
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Fabrication of electrochemically responsive surface relief diffraction gratings based on a multifunctional polyamide containing oligoaniline and azo groups

机译:基于含有低聚苯胺和偶氮基团的多功能聚酰胺的电化学响应表面起伏衍射光栅的制备

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摘要

A novel, well-defined multifunctional polyamide bearing pendent aniline tetramer groups has been synthesized via low temperature solution polycondensation. The simultaneous presence of these two functional groups allows the polyamide to display the properties of azo-chromophore and oligoaniline, such as photoinduced birefringence and reversible electroactivity. The electrochromic performance of the polyamide shows the optical change in absorptivity depends on the various redox states of oligoaniline upon electrochemical switching. It is well known that a change in absorptivity is accompanied by a concomitant change in refractive index. By taking advantage of this effect and using the single step fabrication of surface relief gratings based on azo-chromophore, we have fabricated optical diffraction gratings with which the diffraction efficiency can be modulated by an electrochemical signal. Although patterned electroactive films have been made by many techniques, the copolymer approach employing the simple one-step surface relief gratings process displays optimal properties with respect to modulation depth and convenience, which avoids complicated electropolymerization steps or photochemical reactions. The electrochemically-induced modulation in the diffraction efficiency of the polyamide is believed to arise primarily from the effect of the redox state on the film's refractive index.
机译:通过低温溶液缩聚反应合成了新颖的,定义明确的带有侧苯胺四聚体的多功能聚酰胺。这两个官能团的同时存在使聚酰胺能够显示偶氮发色团和低聚苯胺的性质,例如光致双折射和可逆电活性。聚酰胺的电致变色性能表明,吸光度的光学变化取决于电化学切换时低聚苯胺的各种氧化还原态。众所周知,吸收率的变化伴随着折射率的变化。通过利用这种效应并使用基于偶氮发色团的表面起伏光栅的一步制造,我们已经制造了光学衍射光栅,利用其可以通过电化学信号调节衍射效率。尽管已通过多种技术制备了图案化的电活性膜,但采用简单的一步式表面浮雕工艺的共聚物方法在调制深度和便利性方面显示了最佳的性能,从而避免了复杂的电聚合步骤或光化学反应。据信,聚酰胺衍射效率的电化学诱导调节主要是由于氧化还原态对薄膜折射率的影响。

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