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Growing single crystals of two-dimensional covalent organic frameworks enabled by intermediate tracing study

Kang, Chengjun (author)
Yang, Kuiwei (author)
Zhang, Zhaoqiang (author)
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Usadi, Adam K. (author)
Calabro, David C. (author)
Saunders Baugh, Lisa (author)
Wang, Yuxiang (author)
Jiang, Jianwen (author)
Zou, Xiaodong (author)
Stockholms universitet,Institutionen för material- och miljökemi (MMK)
Huang, Zhehao (author)
Stockholms universitet,Institutionen för material- och miljökemi (MMK)
Zhao, Dan (author)
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 (creator_code:org_t)
2022-03-16
2022
English.
In: Nature Communications. - : Springer Science and Business Media LLC. - 2041-1723. ; 13
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Resolving single-crystal structures of two-dimensional covalent organic frameworks (2D COFs) is a great challenge, hindered in part by limited strategies for growing high-quality crystals. A better understanding of the growth mechanism facilitates development of methods to grow high-quality 2D COF single crystals. Here, we take a different perspective to explore the 2D COF growth process by tracing growth intermediates. We discover two different growth mechanisms, nucleation and self-healing, in which self-assembly and pre-arrangement of monomers and oligomers are important factors for obtaining highly crystalline 2D COFs. These findings enable us to grow micron-sized 2D single crystalline COF Py-1P. The crystal structure of Py-1P is successfully characterized by three-dimensional electron diffraction (3DED), which confirms that Py-1P does, in part, adopt the widely predicted AA stacking structure. In addition, we find the majority of Py-1P crystals (>90%) have a previously unknown structure, containing 6 stacking layers within one unit cell. 

Subject headings

NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

Publication and Content Type

ref (subject category)
art (subject category)

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