†Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.
‡Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506, United States.
J Am Chem Soc. 2015 Jun 3;137(21):6790-803. doi: 10.1021/ja512668r. Epub 2015 May 18.
We compare the singlet fission dynamics of five pentacene derivatives precipitated to form nanoparticles. Two nanoparticle types were distinguished by differences in their solid-state order and kinetics of triplet formation. Nanoparticles that comprise primarily weakly coupled chromophores lack the bulk structural order of the single crystal and exhibit nonexponential triplet formation kinetics (Type I), while nanoparticles that comprise primarily more strongly coupled chromophores exhibit order resembling that of the bulk crystal and triplet formation kinetics associated with the intrinsic singlet fission rates (Type II). In the highly ordered nanoparticles, singlet fission occurs most rapidly. We relate the molecular packing arrangement derived from the crystal structure of the pentacene derivatives to their singlet fission dynamics and find that slip stacking leads to rapid, subpicosecond singlet fission. We present evidence that exciton delocalization, coincident with an increased relative admixture of charge-transfer configurations in the description of the exciton wave function, facilitates rapid triplet pair formation in the case of single-step singlet fission. We extend the study to include two hexacene derivatives and find that these conclusions are generally applicable. This work highlights acene derivatives as versatile singlet fission chromophores and shows how chemical functionalization affects both solid-state order and exciton interactions and how these attributes in turn affect the rate of singlet fission.
我们比较了五种并五苯衍生物沉淀形成纳米颗粒后的单线态裂变动力学。两种纳米颗粒类型通过其固态有序性和三重态形成动力学的差异来区分。主要由弱耦合发色团组成的纳米颗粒缺乏单晶的体相结构有序性,并表现出非指数型三重态形成动力学(I 型),而主要由更强耦合发色团组成的纳米颗粒则表现出与体相晶体相似的有序性和与固有单线态裂变速率相关的三重态形成动力学(II 型)。在高度有序的纳米颗粒中,单线态裂变发生得最快。我们将从并五苯衍生物的晶体结构中得出的分子堆积排列与它们的单线态裂变动力学联系起来,并发现滑移堆积导致快速的亚皮秒单线态裂变。我们提供的证据表明,激子离域伴随着激子波函数描述中电荷转移构型的相对混合增加,有利于单步单线态裂变中三重态对的快速形成。我们将研究扩展到包括两种六并苯衍生物,并发现这些结论通常是适用的。这项工作突出了并五苯衍生物作为多功能单线态裂变发色团的作用,并展示了化学官能化如何影响固态有序性和激子相互作用,以及这些属性如何反过来影响单线态裂变的速率。