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Porous Metal-Organic-Framework (MOF) Based Hybrid Materials for Thermoelectric Applications

机译:基于多孔金属 - 有机框架(MOF)热电应用的混合材料

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Thermoelectric materials based on porous hybrid and MOFs constitute a very recent development, with many new and undiscovered phenomena for the research field. These porous Hybrid materials and MOF (Metal-Organic-Framework) films represent modern designer materials that exhibit many requirements of a near ideal and tunable future thermoelectric (TE) material. It is anticipated that especially the inherent porosity can be used advantageously in the design and simulation predictions of future thermoelectric materials. In principle, porous Hybrid and MOFs materials can comply with most of the requirements of an ideal and tunable future thermoelectric (TE) material. In contrast to traditional semiconducting bulk thermoelectric materials, porous hybrid MOF templates can be used to overcome some of the constraints of physics in bulk thermoelectric materials. These porous hybrid systems are amenable for simulation and modeling to design novel optimized electron-crystal phonon-glass materials with potentially very high Figure of Merit (ZT) numbers. Porous MOF and Hybrid materials possess an ultra-low thermal conductivity, which can be further modulated by phonon engineering within their complex porous and hierarchical architecture to advance the thermoelectric figure of merit ZT. This class of novel materials offers new approaches to the design of complex and hierarchical porous structures, possessing ultra-low thermal conductivity, which are able to trap, and localize phonons, thus resulting in a new generation of thermoelectric materials with a high ZT number. This work is demonstrating recent results of MOF thermoelectric Materials and provides a future outlook to the search for the next generation thermoelectric porous Hybrid and MOF materials, which could be part of a green renewable energy revolution with novel materials of sustainable high ZT values.
机译:基于多孔杂交和MOF的热电材料构成了最近的发展,具有许多新的和未被发现的研究领域现象。这些多孔混合材料和MOF(金属 - 有机框架)薄膜代表现代设计师材料,其展示了近乎理想和可调谐的未来热电(TE)材料的许多要求。预计特别是固有的孔隙率可以有利地在未来热电材料的设计和模拟预测中使用。原则上,多孔杂交和MOFS材料可以符合理想和可调未来热电(TE)材料的大多数要求。与传统的半导体散装热电材料相比,多孔混合MOF模板可用于克服散装热电材料中物理的一些约束。这些多孔混合系统适用于模拟和建模,以设计新颖的优化电子晶体声子玻璃材料,其具有潜在的非常高的优点(ZT)数。多孔MOF和杂化材料具有超低导热率,可以通过位于其复杂的多孔和分层架构内的声子工程进一步调节,以推进Merit ZT的热电图。这类新型材料提供了具有综合和等级多孔结构的设计的新方法,具有超低导热率,能够捕获和定位声子,从而导致具有高ZT数的新一代热电材料。这项工作正在展示MOF热电材料的最近结果,并为搜索下一代热电多孔杂交和MOF材料提供了未来的前景,这可能是绿色可再生能源革命的一部分,具有可持续的高ZT值的新材料。

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