| Literature DB >> 31125146 |
Fang-Dong Zhuang1, Ze-Hao Sun1, Ze-Fan Yao1, Qi-Ran Chen1, Zhen Huang1, Jing-Hui Yang1, Jie-Yu Wang1, Jian Pei1.
Abstract
Considerable efforts have been devoted to achieving stable acene derivatives for electronic applications; however, the instability is still a major issue for such derivatives. To achieve higher stability with minimum structural change, CC units in the acenes were replaced with isoelectronic BN units to produce a novel BN-embedded tetrabenzopentacene (BNTBP). BNTBP, with a planar structure, is highly stable to air, moisture, light, and heat. Compared with its carbon analogue tetrabenzopentacene (TBP), BN embedment lowered the highest occupied molecular orbital (HOMO) energy level of BNTBP, changed the orbital distribution, and decreased the HOMO orbital coefficients at the central carbon atoms, which stabilize BNTBP molecules upon exposure to oxygen and sunlight. The single-crystal microribbons of BNTBP exhibited good performance in field-effect transistors (FETs). The high stability and good mobility of BNTBP indicates that BN incorporation is an effective approach to afford stable large-sized acenes with desired properties.Entities:
Keywords: acenes; boron; boron-nitrogen heterocycles; organic field effect transistors; semiconductors
Year: 2019 PMID: 31125146 DOI: 10.1002/anie.201905601
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336