Literature DB >> 25115581

Designing mixed metal halide ammines for ammonia storage using density functional theory and genetic algorithms.

Peter Bjerre Jensen1, Steen Lysgaard, Ulrich J Quaade, Tejs Vegge.   

Abstract

Metal halide ammines have great potential as a future, high-density energy carrier in vehicles. So far known materials, e.g. Mg(NH3)6Cl2 and Sr(NH3)8Cl2, are not suitable for automotive, fuel cell applications, because the release of ammonia is a multi-step reaction, requiring too much heat to be supplied, making the total efficiency lower. Here, we apply density functional theory (DFT) calculations to predict new mixed metal halide ammines with improved storage capacities and the ability to release the stored ammonia in one step, at temperatures suitable for system integration with polymer electrolyte membrane fuel cells (PEMFC). We use genetic algorithms (GAs) to search for materials containing up to three different metals (alkaline-earth, 3d and 4d) and two different halides (Cl, Br and I) - almost 27,000 combinations, and have identified novel mixtures, with significantly improved storage capacities. The size of the search space and the chosen fitness function make it possible to verify that the found candidates are the best possible candidates in the search space, proving that the GA implementation is ideal for this kind of computational materials design, requiring calculations on less than two percent of the candidates to identify the global optimum.

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Year:  2014        PMID: 25115581     DOI: 10.1039/c4cp03133d

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  2 in total

1.  Synergistic Effect of MIL-101/Reduced Graphene Oxide Nanocomposites on High-Pressure Ammonia Uptake.

Authors:  Cheongwon Bae; Gyuyeong Jeong; Suhyeon Park; Yeram Kim; Mingyu Gu; Duckjong Kim; Juyeong Kim
Journal:  ACS Omega       Date:  2022-05-12

2.  Target-based drug discovery through inversion of quantitative structure-drug-property relationships and molecular simulation: CA IX-sulphonamide complexes.

Authors:  Petar Žuvela; J Jay Liu; Myunggi Yi; Paweł P Pomastowski; Gulyaim Sagandykova; Mariusz Belka; Jonathan David; Tomasz Bączek; Krzysztof Szafrański; Beata Żołnowska; Jarosław Sławiński; Claudiu T Supuran; Ming Wah Wong; Bogusław Buszewski
Journal:  J Enzyme Inhib Med Chem       Date:  2018-12       Impact factor: 5.051

  2 in total

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