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Strain–Microstructure–Optoelectronic Inter-Relationship toward Engineering Mechano-Optoelectronic Conjugated Polymer Thin Films

机译:应变 - 微结构 - 光电关系朝向工程机械 - 光电共轭聚合物薄膜

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摘要

Mechano-optoelectronic (MO) behavior indicates changes in optoelectronic properties in response to the applied mechanical deformation. The MO behavior can be employed to monitor the mechanical deformation of a targeted system by tracing its optoelectronic properties. Poly(3-hexylthiophene) and phenyl-C61-butyric acid methyl ester (P3HT/PCBM) blend thin films exhibited changes in direct current under tensile strain. Although optoelectronic properties and photovoltaic performance of P3HT/PCBM blends have been studied extensively and intensively, research required for MO properties has a fundamental difference from previous research mostly for solar cells. In research for MO systems, a greater extent of changes in optoelectronic properties under mechanical deformation is favorable. Herein, previous research for optoelectronic properties and mechanical properties of conjugated polymers will be reviewed from a perspective on MO properties. The microstructure of a conjugated polymer thin film plays a pivotal role in its optoelectronic properties and mechanical properties. Key parameters involved in the microstructure of conjugated polymer thin films will be addressed. A scalable process is required to broaden applications of MO systems. Potential challenges in the fabrication of MO conjugated polymer thin films will be discussed. Finally, this review is envisioned to provide insight into the design and manufacturing of MO conjugated polymer thin films.
机译:机械光电(MO)行为表示响应于所施加的机械变形的光电性能变化。可以采用Mo行为来通过跟踪其光电性能来监测目标系统的机械变形。聚(3-己基噻吩)和苯基-C61-丁酸甲酯(P3HT / PCBM)共混薄膜在拉伸菌株下表现出直流电的变化。尽管广泛且集中研究了P3HT / PCBM混合物的光电性能和光伏性能,但MO特性所需的研究与以前的研究具有基本差异,主要是太阳能电池。在对MO系统的研究中,机械变形下的光电性能的更大程度是有利的。这里,将从Mo性能的透视中查看先前对缀合聚合物的光电性能和机械性能的研究。共轭聚合物薄膜的微观结构在其光电性能和机械性能下起作用的枢轴作用。将解决缀合的聚合物薄膜的微观结构中涉及的关键参数。可扩展的过程需要扩大MO系统的应用。将讨论制备Mo共轭聚合物薄膜的潜在挑战。最后,设想了这篇综述,以提供对Mo共轭聚合物薄膜的设计和制造的洞察。

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