Literature DB >> 34965101

Dual Nanomechanics in Anisotropic Porous Covalent Organic Framework Janus-Type Thin Films.

Shibani Mohata1,2, Kaushik Dey1,2, Surojit Bhunia1,2, Neethu Thomas3, E Bhoje Gowd4, Thalasseril G Ajithkumar3, C Malla Reddy1,2, Rahul Banerjee1,2.   

Abstract

Empowered by crystalline ordered structures and homogeneous fabrication techniques, covalent organic frameworks (COFs) have been realized with uniform morphologies and isotropic properties. However, such homogeneity often hinders various surface-dependent properties observed in asymmetric nanostructures. The challenge remains to induce heterogeneity in COFs by creating an asymmetric superstructure such as a Janus thin film. In this regard, we propose a versatile yet straightforward interfacial layer-grafting strategy to fabricate free-standing Janus-type COF-graphene thin films. Herein, two-dimensional graphene sheets were utilized as the suitable grafter due to the possibility of noncovalent interactions between the layers. The versatility of the approach was demonstrated by fabricating two distinct Janus-type films, with the COF surface interwoven with nanofibers and nanospheres. The Janus-type films showcase opposing surface morphologies originating from graphene sheets and COF nanofibers or nanospheres, preserving the porosity (552-600 m2 g-1). The unique surface chemistries of the constituent layers further endow the films with orthogonal mechanical properties, as confirmed by the nanoindentation technique. Interestingly, the graphene sheets favor the Janus-type assembly of COF nanofibers over the nanospheres. This is reflected in the better nanomechanical properties of COFfiber-graphene films (Egraphene = 300-1200 MPa; ECOF = 15-60 MPa) compared to the COFsphere-graphene films (Egraphene = 11-14 MPa; ECOF = 2-5 MPa). These results indicate a direct relationship between the mechanical properties and homo/heterogeneity of Janus-type COF films.

Entities:  

Year:  2021        PMID: 34965101     DOI: 10.1021/jacs.1c10263

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  1 in total

1.  Three-dimensional microporous and mesoporous covalent organic frameworks based on cubic building units.

Authors:  Li Liao; Xinyu Guan; Haorui Zheng; Zerong Zhang; Yaozu Liu; Hui Li; Liangkui Zhu; Shilun Qiu; Xiangdong Yao; Qianrong Fang
Journal:  Chem Sci       Date:  2022-07-15       Impact factor: 9.969

  1 in total

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