Abstract
We explore the directed self-assembly (DSA) process of end-functionalized nanofibers (NFs) by performing coarse-grained molecular dynamics simulations. We find that by tuning their interactions, NFs aggregate and self-organize into networks with specific topologies ranging from percolated networks to liquid crystal-like long-chain phases. The underlying mechanism is explained through an analytical model from a minimum energy perspective. In addition to offering microscopic understandings of the DSA process, the findings reported here can also guide robust target-specified design of nanofibrous materials into organized network structures.
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Xie, B., Buehler, M. J., & Xu, Z. (2015). Directed self-assembly of end-functionalized nanofibers: From percolated networks to liquid crystal-like phases. Nanotechnology, 26(20). https://doi.org/10.1088/0957-4484/26/20/205602
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