Kazantsev Roman V, Dannenhoffer Adam, Aytun Taner, Harutyunyan Boris, Fairfield Daniel J, Bedzyk Michael J, Stupp Samuel I
Department of Chemistry, Northwestern University, Evanston, IL 60208, USA.
Argonne Northwestern Solar Energy Research (ANSER) Center, Northwestern University, Evanston, IL 60208, USA.
Chem. 2018 Jul 12;4(7):1596-1608. doi: 10.1016/j.chempr.2018.04.002. Epub 2018 May 3.
Supramolecular light-absorbing nanostructures are useful building blocks for the design of next-generation artificial photosynthetic systems. Development of such systems requires a detailed understanding of how molecular packing influences the material's optoelectronic properties. We describe a series of crystalline supramolecular nanostructures in which the substituents on their monomeric units strongly affects morphology, ordering kinetics, and exciton behavior. By designing constitutionally-isomeric perylene monoimide (PMI) amphiphiles, the effect of side chain sterics on nanostructure crystallization was studied. Molecules with short amine linked alkyl-tails rapidly crystallize upon dissolution in water, while bulkier tails require the addition of salt to screen electrostatic repulsion and annealing to drive crystallization. A PMI monomer bearing a 3-pentylamine tail was found to possess a unique structure that results in strongly red-shifted absorbance, indicative of charge-transfer exciton formation. This particular supramolecular structure was found to have an enhanced ability to photosensitize a thiomolybdate, [(NH)MoS], catalyst to generate hydrogen gas.
超分子光吸收纳米结构是设计下一代人工光合系统的有用构建块。开发此类系统需要详细了解分子堆积如何影响材料的光电特性。我们描述了一系列晶体超分子纳米结构,其中其单体单元上的取代基强烈影响形态、有序动力学和激子行为。通过设计结构异构体苝单酰亚胺(PMI)两亲物,研究了侧链空间位阻对纳米结构结晶的影响。带有短胺连接烷基尾的分子在溶解于水时迅速结晶,而体积较大的尾则需要添加盐以屏蔽静电排斥并进行退火以驱动结晶。发现带有3-戊胺尾的PMI单体具有独特的结构,导致吸收峰强烈红移,这表明形成了电荷转移激子。发现这种特殊的超分子结构具有增强的光敏化硫代钼酸盐[(NH)MoS]催化剂以产生氢气的能力。