Chen Xiao-Xiang, Li Jia-Tong, Fang Yu-Hui, Deng Xin-Yu, Wang Xue-Qing, Liu Guangchao, Wang Yunfei, Gu Xiaodan, Jiang Shang-Da, Lei Ting
Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, School of Materials Science and Engineering, Peking University, Beijing, 100871, China.
College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.
Nat Commun. 2022 Apr 26;13(1):2258. doi: 10.1038/s41467-022-29918-w.
Organic semiconductors with high-spin ground states are fascinating because they could enable fundamental understanding on the spin-related phenomenon in light element and provide opportunities for organic magnetic and quantum materials. Although high-spin ground states have been observed in some quinoidal type small molecules or doped organic semiconductors, semiconducting polymers with high-spin at their neutral ground state are rarely reported. Here we report three high-mobility semiconducting polymers with different spin ground states. We show that polymer building blocks with small singlet-triplet energy gap (ΔE) could enable small ΔE gap and increase the diradical character in copolymers. We demonstrate that the electronic structure, spin density, and solid-state interchain interactions in the high-spin polymers are crucial for their ground states. Polymers with a triplet ground state (S = 1) could exhibit doublet (S = 1/2) behavior due to different spin distributions and solid-state interchain spin-spin interactions. Besides, these polymers showed outstanding charge transport properties with high hole/electron mobilities and can be both n- and p-doped with superior conductivities. Our results demonstrate a rational approach to obtain high-mobility semiconducting polymers with different spin ground states.
具有高自旋基态的有机半导体令人着迷,因为它们能够促进对轻元素中自旋相关现象的基本理解,并为有机磁性和量子材料提供机会。尽管在一些醌型小分子或掺杂有机半导体中已观察到高自旋基态,但很少有关于在中性基态具有高自旋的半导体聚合物的报道。在此,我们报道了三种具有不同自旋基态的高迁移率半导体聚合物。我们表明,具有小的单重态-三重态能隙(ΔE)的聚合物结构单元能够实现小的ΔE能隙,并增加共聚物中的双自由基特性。我们证明,高自旋聚合物中的电子结构、自旋密度和固态链间相互作用对其基态至关重要。由于不同的自旋分布和固态链间自旋-自旋相互作用,具有三重态基态(S = 1)的聚合物可能表现出双重态(S = 1/2)行为。此外,这些聚合物表现出优异的电荷传输性能,具有高空穴/电子迁移率,并且可以进行n型和p型掺杂,具有优异的电导率。我们的结果展示了一种获得具有不同自旋基态的高迁移率半导体聚合物的合理方法。