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      Li-doped fullerene pillared graphene nanocomposites for enhancing hydrogen storage: A computational study

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      Computational Materials Science
      Elsevier BV

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          Is Open Access

          Open Babel: An open chemical toolbox

          Background A frequent problem in computational modeling is the interconversion of chemical structures between different formats. While standard interchange formats exist (for example, Chemical Markup Language) and de facto standards have arisen (for example, SMILES format), the need to interconvert formats is a continuing problem due to the multitude of different application areas for chemistry data, differences in the data stored by different formats (0D versus 3D, for example), and competition between software along with a lack of vendor-neutral formats. Results We discuss, for the first time, Open Babel, an open-source chemical toolbox that speaks the many languages of chemical data. Open Babel version 2.3 interconverts over 110 formats. The need to represent such a wide variety of chemical and molecular data requires a library that implements a wide range of cheminformatics algorithms, from partial charge assignment and aromaticity detection, to bond order perception and canonicalization. We detail the implementation of Open Babel, describe key advances in the 2.3 release, and outline a variety of uses both in terms of software products and scientific research, including applications far beyond simple format interconversion. Conclusions Open Babel presents a solution to the proliferation of multiple chemical file formats. In addition, it provides a variety of useful utilities from conformer searching and 2D depiction, to filtering, batch conversion, and substructure and similarity searching. For developers, it can be used as a programming library to handle chemical data in areas such as organic chemistry, drug design, materials science, and computational chemistry. It is freely available under an open-source license from http://openbabel.org.
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            UFF, a full periodic table force field for molecular mechanics and molecular dynamics simulations

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              Storage of hydrogen in single-walled carbon nanotubes

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Computational Materials Science
                Computational Materials Science
                Elsevier BV
                09270256
                January 2021
                January 2021
                : 186
                : 110023
                Article
                10.1016/j.commatsci.2020.110023
                29d1a9f2-ee7c-4557-812c-a775022b0e40
                © 2021

                https://www.elsevier.com/tdm/userlicense/1.0/

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