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Updated: Jan 15, 2026

Preparation and Characterization of C60/Graphene Hybrid Nanostructures
Published on: May 15, 2018
Bi-directional configuration evolution of homo/heterogeneous graphyne nanoribbons encircling a rotating CNT
Pengjie Hu1,2, Bo Song1,2, Kun Cai3
1School of Naval Architecture and Civil Engineering, Jiangsu University of Science and Technology, Zhangjiagang 215600, People's Republic of China.
Abstract:
Graphyne (GY) nanomaterials, with their highly tunable properties, show great potential as building blocks for composite nanodevices. Using molecular dynamics simulations, this study investigates the bi-directional folding and unfolding evolution of homogeneous and heterogeneous GY nanoribbons (GYNRs) around a rotating carbon nanotube (CNT). The results reveal distinct configuration rules: homogeneous GYNRs consistently undergo synchronous folding to form interlaced GY nanoscrolls (GYNSs), whereas heterogeneous GYNRs may fold synchronously or in a layered manner, producing either interlaced or covered GYNSs depending on atomic density differences (ADDs) and temperature. Moreover, GYNSs can be reversibly unfolded into GYNRs under CNT rotation. Unified unfolding, initiated from the innermost layer, typically occurs in interlaced GYNSs, while segmented unfolding-unique to covered GYNSs with large ADDs-proceeds sequentially from the outermost edge of the outer GYNS to the innermost layer of the inner GYNS. These findings establish key principles for the flexible design and engineering of novel homo- and heterogeneous GY-based nanostructures.
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