Nie Jiucheng, Tao Daliao, Huang Xiaoyu, Lu Guolin, Feng Chun
Key Laboratory of Synthetic and Self-Assembly Chemistry for Organic Functional Molecules, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, 345 Lingling Road, 200032, Shanghai, P. R. China.
School of Physical Science & Technology, ShanghaiTech University, 100 Haike Road, 201210, Shanghai, P. R. China.
Chemistry. 2021 Jun 10;27(33):8479-8483. doi: 10.1002/chem.202100940. Epub 2021 May 13.
In this work, it is demonstrated for the first time that heterojunction nanowires, consisting of a gradient and segmented-like heterogeneous π-conjugated core with controllable length, composition and morphology, can be generated by co-self-seeding of oligo(p-phenylene vinylene) (OPV)- and oligo(p-phenylene ethynylene) (OPE)-containing block copolymers in spite of different chain lengths and molecular conformation for OPE and OPV. More importantly, based on the understanding of the formation of heterogeneous core by the co-self-seeding approach, a "heating/cooling" seeded growth route was developed, by which linear and branched heterojunction nanowires containing a segmented heterogeneous π-conjugated core of controlled length, composition and morphology can be obtained. This work provides a versatile platform to generate heterojunction nanowires with excellent controllability in length, composition, and morphology.
在这项工作中,首次证明了尽管寡聚(对亚苯基乙烯撑)(OPV)和含寡聚(对亚苯基乙炔撑)(OPE)的嵌段共聚物的链长和分子构象不同,但通过它们的共自种子法能够生成由具有可控长度、组成和形态的梯度和分段状异质π共轭核组成的异质结纳米线。更重要的是,基于对通过共自种子法形成异质核的理解,开发了一种“加热/冷却”种子生长路线,通过该路线可以获得包含具有可控长度、组成和形态的分段异质π共轭核的线性和支化异质结纳米线。这项工作提供了一个通用平台,可生成在长度、组成和形态方面具有出色可控性的异质结纳米线。