Publication date: Jun 05, 2019
Molecular simulations with periodic boundary conditions require to define a certain cutoff distance beyond which pairwise dispersion interactions are neglected. For the simulation of homogeneous phases it is well-established to use tail-corrections, that can remedy this truncation of the potential. These corrections are built under the assumption that beyond the cutoff the radial distribution function is equal to one. In this work we shed some light on the discussion whether or not tail corrections should be used in the modelling of heterogeneous systems. We show that for the adsorption of gasses in a diverse set nanoporous crystalline materials (zeolites, Covalent Organic Frameworks (COFs), and Metal Organic Frameworks (MOFs)), tail-corrections are an appropriate choice with which the results are much less sensitive to the details of the truncation.
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File name | Size | Description |
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database_zeopp.aiida
MD5md5:42f1f41f068ccb4a2f1f09d37470e715
Open this AiiDA archive on renkulab.io (https://renkulab.io/)
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32.1 MiB | AiiDA 0.12.1 database containing the calculations used for sampling. |
aiida_scripts.zip
MD5md5:db7f3f176845247f64e6e8f1ced6a4c8
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11.2 KiB | AiiDA 0.12.1 workchains and runscripts. |
README.txt
MD5md5:5a95f480cc4fd114de6ee71241b9cbc5
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971 Bytes | Description of the file contents. |
database_tc_test.aiida
MD5md5:ed875368ef7fcbc9ec02731d16d3f435
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307.0 MiB | AiiDA 0.12.1 database containing the calculations used for investigating the effect of tail-corrections for simulations without pore blocking . |
database_blocked_pockets.aiida
MD5md5:913dc78e29e2cfa305f5a4af08b67976
Open this AiiDA archive on renkulab.io (https://renkulab.io/)
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267.8 MiB | AiiDA 0.12.1 database containing the calculations used for investigating the effect of tail-corrections for simulations with pore blocking . |
2019.0024/v3 (version v3) | Aug 21, 2019 | DOI10.24435/materialscloud:2019.0024/v3 |
2019.0024/v2 (version v2) [This version] | Jun 05, 2019 | DOI10.24435/materialscloud:2019.0024/v2 |
2019.0024/v1 (version v1) | May 29, 2019 | DOI10.24435/materialscloud:2019.0024/v1 |