| Literature DB >> 27440493 |
Hongjin Fu1, Shuqiong Xu1, Yunfang Li1,2.
Abstract
The polymer possessing with planar structure can be activated and guided to encapsulate the inner space of SWNT and form a helix through van der Waals interaction and the π-π stacking effect between the polymer and the inner surface of SWNT. The SWNT size, the nanostructure and flexibility of polymer chain are all determine the final structures. The basic interaction between the polymer and the nanotubes is investigated, and the condition and mechanism of the helix-forming are explained particularly. Hybrid polymers improve the ability of the helix formation. This study provides scientific basis for fabricating helical polymers encapsulated in SWNTs and eventually on their applications in various areas.Entities:
Year: 2016 PMID: 27440493 PMCID: PMC4954971 DOI: 10.1038/srep30310
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) The helical encapsulation of a PPY into the (20, 20) SWNT; (b) The double-helix is formed when two polymers inserting into the (20, 20) SWNT; (c) The repeat unit for the rigid backbone of PPY; (d) Total potential energy (Ep) of these two PPY-SWNT systems as a function of time.
Figure 2
Figure 3The repeat unit of the planar polymers used in this study.
Refer to Table 1 for the full information of the polymers. Compare to flexible PE, PA, PPY and PBI have moderate flexibility backbones, PBA and PTI have more flexibility backbones, PT and PBT are considered nearly as rigid polymers due to the C-S bond of the backbone.
Full information of polymers used in this study.
| PPY | poly(pyrrole) | 174.797 | C200H152N50 | 3252 |
| PA | Poly(acetylene) | 234.960 | C200H202 | 2602 |
| PBI | Poly(benz_imidazoles) | 166.106 | C196N56H114 | 3250 |
| PBA | Poly(p_benzamide) | 187.821 | C196N28O28H142 | 3334 |
| PTI | Poly(p_thalimide) | 154.017 | C200N25O50H77 | 3627 |
| PBT | Poly(benzothiazole) | 196.010 | C200N50S50H52 | 4752 |
| PT | poly(thiodiazole) | 193.624 | C100N100S50H2 | 4202 |
| PE | Poly(ethylene) | 251.040 | C200H402 | 2802 |
All the polymer molecules contain about 200 C atoms, and the length is the approximate end-to-end length. Considering the length of the polymer chains, PT is selected containing 100 C atoms.
Figure 4
Figure 5
Figure 6(a) The evolution of vdW interaction energy (∆EvdW) between the PPYs and SWNTs as a function of time. (b) Concentration distribution profiles of the core-shell composite structure formed from the PPYs and SWNTs in the X-direction.
Figure 7