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White and green light emissions of flexible polymer composites under electric field and multiple strains

机译:电场和多种应变下柔性聚合物复合材料的白光和绿光发射

摘要

The development of energy harvesting white light sources converted from multiple stimuli especially mechanical strain requires the search of new types of phosphors and devices. In this work, various flexible composites of single-phase metal ion-doped ZnS mixed to polydimethylsiloxane (PDMS) matrix have been prepared. The synthesized composites possess flexible, durable, easy fabrication, and compatible with arbitrary substrate characteristics. With the advantages of the flexible composite, we have fabricated two kinds of light-emission devices, namely flexible electroluminescence device with graphene electrode, and piezo-phototronic luminescence device composed of polymer phosphor layer coated on the top of piezoelectric actuator. Such composite phosphors and the related hybrid devices are capable of responding to different types of external stimuli, including electric field, uniaxial strains of stretch and mechanical writing, and piezoelectric biaxial strain, resulting in the observed white and green light emissions by the naked eyes. The stimulus excitation, resultant luminescence spectra, and their relations with color properties (color coordinates, color temperature, etc.) of the white light emission have been investigated. The observation is ascribed to the non-central symmetric crystal structure of wurtzite-type ZnS material, inherently producing piezoelectric effect under strain. Energy transitions of the observed white light emissions may originate from the donor-acceptor pairs recombination between AlZn→CuZn, as well as the radiation transition between 4T1 and 6A1 of Mn2+ ion. Our results show promise in constructing new types of flexible light source for applications in sustainable energy and so on.
机译:从多种刺激尤其是机械应变转换而来的能量收集白光源的发展需要寻找新型的荧光粉和设备。在这项工作中,已经制备了混合到聚二甲基硅氧烷(PDMS)基体中的单相金属离子掺杂的ZnS的各种柔性复合材料。合成的复合材料具有柔韧性,耐用性,易加工性,并与任意基材特性兼容。利用柔性复合材料的优势,我们制造了两种发光器件,即带有石墨烯电极的柔性电致发光器件和由压电致动器顶部涂覆的聚合物荧光粉层组成的压电光电致发光器件。这样的复合磷光体和相关的混合装置能够对不同类型的外部刺激做出响应,包括电场,拉伸和机械书写的单轴应变以及压电双轴应变,从而导致肉眼观察到的白光和绿光发射。研究了激发激发,所得的发光光谱及其与白光发射的颜色特性(颜色坐标,色温等)的关系。该观察结果归因于纤锌矿型ZnS材料的非中心对称晶体结构,其固有地在应变下产生压电效应。观察到的白光发射的能量跃迁可能源自AlZn→CuZn之间的供体-受体对复合,以及Mn2 +离子的4T1和6A1之间的辐射跃迁。我们的结果显示出在构建用于可持续能源等方面的新型柔性光源方面的希望。

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