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Mutual Insight on Ferroelectrics and Hybrid Halide Perovskites: A Platform for Future Multifunctional Energy Conversion

机译:铁电体和混合卤化物钙钛矿的相互了解:未来多功能能源转换的平台

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摘要

An insight into the analogies, state-of-the-art technologies, concepts, and prospects under the umbrella of perovskite materials (both inorganic-organic hybrid halide perovskites and ferroelectric perovskites) for future multifunctional energy conversion and storage devices is provided. Often, these are considered entirely different branches of research; however, considering them simultaneously and holistically can provide several new opportunities. Recent advancements have highlighted the potential of hybrid perovskites for high-efficiency solar cells. The intrinsic polar properties of these materials, including the potential for ferroelectricity, provide additional possibilities for simultaneously exploiting several energy conversion mechanisms such as the piezoelectric, pyroelectric, and thermoelectric effect and electrical energy storage. The presence of these phenomena can support the performance of perovskite solar cells. The energy conversion using these effects (piezo-, pyro-, and thermoelectric effect) can also be enhanced by a change in the light intensity. Thus, there lies a range of possibilities for tuning the structural, electronic, optical, and magnetic properties of perovskites to simultaneously harvest energy using more than one mechanism to realize an improved efficiency. This requires a basic understanding of concepts, mechanisms, corresponding material properties, and the underlying physics involved with these effects.
机译:提供了对钙钛矿材料(无机-有机杂化卤化物钙钛矿和铁电钙钛矿)的类比,最新技术,概念和前景的见解,以用于未来的多功能能量转换和存储设备。通常,这些被认为是完全不同的研究分支。但是,同时全面地考虑它们可以提供一些新的机会。最近的进展突出了混合钙钛矿在高效太阳能电池中的潜力。这些材料的固有极性特性(包括铁电势)为同时利用多种能量转换机制(例如压电,热电和热电效应以及电能存储)提供了其他可能性。这些现象的存在可以支持钙钛矿太阳能电池的性能。利用这些效应(压电效应,热解效应和热电效应)的能量转换也可以通过改变光强度来增强。因此,存在多种可能性来调节钙钛矿的结构,电子,光学和磁性,以使用不止一种机制同时收集能量以实现效率的提高。这需要对概念,机理,相应的材料属性以及与这些效应有关的基本物理原理有基本的了解。

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