Department of Chemistry, Northwestern University, Evanston, IL, 60208, USA.
Department of Materials Science and Engineering, Northwestern University, Evanston, IL, 60208, USA.
Adv Mater. 2020 Apr;32(17):e1907247. doi: 10.1002/adma.201907247. Epub 2020 Mar 12.
Self-assembly is a bioinspired strategy to craft materials for renewable and clean energy technologies. In plants, the alignment and assembly of the light-harvesting protein machinery in the green leaf optimize the ability to efficiently convert light from the sun to form chemical bonds. In artificial systems, strategies based on self-assembly using noncovalent interactions offer the possibility to mimic this functional correlation among molecules to optimize photocatalysis, photovoltaics, and energy storage. One of the long-term objectives of the field described here as supramolecular energy materials is to learn how to design soft materials containing light-harvesting assemblies and catalysts to generate fuels and useful chemicals. Supramolecular energy materials also hold great potential in the design of systems for photovoltaics in which intermolecular interactions in self-assembled structures, for example, in electron donor and acceptor phases, maximize charge transport and avoid exciton recombination. Possible pathways to integrate organic and inorganic structures by templating strategies and electrodeposition to create materials relevant to energy challenges including photoconductors and supercapacitors are also described. The final topic discussed is the synthesis of hybrid perovskites in which organic molecules are used to modify both structure and functions, which may include chemical stability, photovoltaics, and light emission.
自组装是一种受生物启发的策略,用于制造可再生和清洁能源技术的材料。在植物中,绿色叶子中光收集蛋白装置的排列和组装优化了从太阳高效转换光形成化学键的能力。在人工系统中,基于使用非共价相互作用的自组装的策略提供了模拟分子之间这种功能相关性的可能性,以优化光催化、光伏和储能。这里描述的作为超分子能量材料的领域的一个长期目标是学习如何设计包含光收集组件和催化剂的软材料,以产生燃料和有用的化学品。超分子能量材料在设计用于光伏的系统方面也具有很大的潜力,其中自组装结构中的分子间相互作用(例如,在电子给体和受体相)最大化电荷输运并避免激子复合。还描述了通过模板策略和电沉积来整合有机和无机结构的可能途径,以创建与包括光电导体和超级电容器在内的能源挑战相关的材料。最后讨论的主题是杂化钙钛矿的合成,其中使用有机分子来修饰结构和功能,这可能包括化学稳定性、光伏和发光。