Journal article Vectorial On-Surface Synthesis of Polar 2D Polymer Crystals
Takahiro Kojima (author) (Search by this author)
Kyoto University
;
Karan Patel (author) (Search by this author)
Kyoto University
;
Shunpei Nobusue (author) (Search by this author)
Kyoto University
;
Ahmed Mahmoud (author) (Search by this author)
Kyoto University
;
Cong Xie (author) (Search by this author)
Kyoto University
;
Takahiro Nakae (author) (Search by this author)
KRI Inc.
;
Shigeki Kawai (author) (Search by this author)
ORCID SAMURAI ;
Kazuhiro Fukami (author) (Search by this author)
Kyoto University
;
Hiroshi Sakaguchi (author) (Search by this author)
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Citation
Takahiro Kojima, Karan Patel, Shunpei Nobusue, Ahmed Mahmoud, Cong Xie, Takahiro Nakae, Shigeki Kawai, Kazuhiro Fukami, Hiroshi Sakaguchi. Vectorial On-Surface Synthesis of Polar 2D Polymer Crystals. Advanced Materials Interfaces. 2023, 10 (23), 2300214. https://doi.org/10.1002/admi.202300214
SAMURAI

Description:

(abstract)

The asymmetric introduction of functional groups into polymers is promising due to its potential to provide novel electronic and magnetic properties. Though traditional on-surface bottom-up synthesis has succeeded in creating various types of polymers, it struggles at realizing asymmetry due to the difficulty of stereoregular polymerization and the tendency for overall polarity cancellation during agglomeration. Here, enabled by the low halogen-contaminated metal surfaces provided by two-zone chemical vapor deposition, “compass” precursors possessing three independent bonding, edge, and dipole vectors undergo isotactic polymerization via the vectorial self-assembly of chiral precursor diradicals without the need for chiral catalysts required in conventional in-solution polymerization. The isotactic polymers exhibit polar 2D crystalline structures due to the hetero-edge CH–π interaction between the standing phenyl and butoxy group surpassing the homo-edge interactions of π–π and CHCH. The developed vectorial on-surface synthetic technique not only paves the way to the realization of stereoregular control but also unlocks unprecedented crystal engineering.

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Keyword: on-surface synthesis, 2D polymer crystals

Date published: 2023-06-16

Publisher: Wiley

Journal:

  • Advanced Materials Interfaces (ISSN: 21967350) vol. 10 issue. 23 2300214

Funding:

Manuscript type: Publisher's version (Version of record)

MDR DOI:

First published URL: https://doi.org/10.1002/admi.202300214

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Updated at: 2024-01-05 22:12:22 +0900

Published on MDR: 2023-12-28 16:30:24 +0900