4.0 Article

Large-scale density functional theory simulation of inorganic nanotubes: a case study on Imogolite nanotubes

期刊

MATERIALS RESEARCH INNOVATIONS
卷 19, 期 -, 页码 S272-S282

出版社

MANEY PUBLISHING
DOI: 10.1179/1432891715Z.0000000001560

关键词

Inorganic Imogolite nanotubes; Linear-scaling density functional theory

资金

  1. EPSRC-UK [EP/I004483/1]
  2. UK's investment in e-Infrastructure
  3. EPSRC [EP/K000225/1]
  4. ARCHER (via the UKCP Consortium) [EP/K013610/1]
  5. Engineering and Physical Sciences Research Council [EP/F037783/1, EP/K000225/1, EP/I004483/1, EP/K000209/1, 1203402, EP/K013610/1, EP/J015059/1] Funding Source: researchfish
  6. EPSRC [EP/F037783/1, EP/J015059/1, EP/K013610/1, EP/I004483/1, EP/K000209/1, EP/K000225/1] Funding Source: UKRI

向作者/读者索取更多资源

The high experimental control over inorganic Imogolite-like open-ended nanotubes (Imo-NTs) composition, dimensions and monodispersity together with the potentially huge range of tuneable properties that can be introduced by chemical functionalisation and doping make Imo-NTs appealing substrates for nanotechnology, as artificial ion-channels and in chemical separation. Investigation of Imo-NTs electronic and spectroscopic properties has so far been hampered by the large size of the systems repeat unit (+300atoms), whichpose severe challenges andaccuracy-viability compromises for standard plane-wave (fixed atomic basis set) density functional theory (DFT) simulations. These challenges can, however, be met by linear-scaling DFT (LS-DFT) approaches based on in situ optimisation of minimal basis sets. Here, we illustrate the applicability of LS-DFT to Imo-NTs by providing structural and electronic characterisation of periodic and finite models of aluminosilicate (AlSi) and methylated-AlSi Imo-NTs. It is shown that adoption of moderate kinetic energy cutoff (1000 eV) and basis set truncation radius (8Bohr) leads to optimal accuracy-viability compromised for geometrical optimisation of Imo-NTs. These results should be useful for future LS-DFT investigation of Imo-NTs and other AlSi-based functional materials.

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