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新型有机超碱掺杂剂用于高效有机半导体的 N 型掺杂。

Novel Organic Superbase Dopants for Ultraefficient N-Doping of Organic Semiconductors.

机构信息

International Science and Technology Innovation Cooperation Base for Advanced Display Technologies of Hunan Province, School of Physics and Electronics, Hunan University, Changsha, 410082, China.

Shenzhen Research Institute of Hunan University, Shenzhen, 518063, China.

出版信息

Adv Mater. 2023 Jun;35(22):e2300084. doi: 10.1002/adma.202300084. Epub 2023 Apr 25.

Abstract

Doping is a powerful technique for engineering the electrical properties of organic semiconductors (OSCs), yet efficient n-doping of OSCs remains a central challenge. Herein, the discovery of two organic superbase dopants, namely P2-t-Bu and P4-t-Bu as ultra-efficient n-dopants for OSCs is reported. Typical n-type semiconductors such as N2200 and PC BM are shown to experience a significant increase of conductivity upon doping by the two dopants. In particular, the optimized electrical conductivity of P2-t-Bu-doped PC BM reaches a record-high value of 2.64 S cm . The polaron generation efficiency of P2-t-Bu-doped in PC BM is found to be over 35%, which is 2-3 times higher than that of benchmark n-dopant N-DMBI. In addition, a deprotonation-initiated, nucleophilic-attack-based n-doping mechanism is proposed for the organic superbases, which involves the deprotonation of OSC molecules, the nucleophilic attack of the resulting carbanions on the OSC's π-bonds, and the subsequent n-doping through single electron transfer process between the anionized and neutral OSCs. This work highlights organic superbases as promising n-dopants for OSCs and opens up opportunities to explore and develop highly efficient n-dopants.

摘要

掺杂是工程有机半导体(OSC)电性能的有力技术,但高效 n 掺杂 OSC 仍然是一个核心挑战。本文报道了两种有机超碱掺杂剂,即 P2-t-Bu 和 P4-t-Bu,作为 OSC 的超高效 n 掺杂剂。典型的 n 型半导体,如 N2200 和 PC BM,在这两种掺杂剂掺杂后,其电导率显著增加。特别是,优化后的 P2-t-Bu 掺杂 PC BM 的电导率达到了 2.64 S cm 的创纪录值。发现 P2-t-Bu 掺杂在 PC BM 中的极化子生成效率超过 35%,比基准 n 掺杂剂 N-DMBI 高 2-3 倍。此外,提出了有机超碱的去质子化引发、亲核攻击的 n 掺杂机制,涉及 OSC 分子的去质子化、生成的碳负离子对 OSC 的π键的亲核攻击,以及随后通过阴离子化和中性 OSC 之间的单电子转移过程进行 n 掺杂。这项工作突出了有机超碱作为 OSC 有前途的 n 掺杂剂,并为探索和开发高效 n 掺杂剂开辟了机会。

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