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Balancing volumetric and gravimetric capacity for hydrogen in supramolecular crystals.
Zhang, Ruihua; Daglar, Hilal; Tang, Chun; Li, Penghao; Feng, Liang; Han, Han; Wu, Guangcheng; Limketkai, Benjie N; Wu, Yong; Yang, Shuliang; Chen, Aspen X-Y; Stern, Charlotte L; Malliakas, Christos D; Snurr, Randall Q; Stoddart, J Fraser.
Afiliação
  • Zhang R; Department of Chemistry, The University of Hong Kong, Hong Kong, China.
  • Daglar H; Department of Chemistry, Northwestern University, Evanston, IL, USA.
  • Tang C; Department of Chemical and Biological Engineering, Northwestern University, Evanston, IL, USA.
  • Li P; Department of Chemistry, The University of Hong Kong, Hong Kong, China. tangchem@hku.hk.
  • Feng L; Department of Chemistry, Northwestern University, Evanston, IL, USA. tangchem@hku.hk.
  • Han H; Department of Chemistry, Northwestern University, Evanston, IL, USA.
  • Wu G; Thomas Lord Department of Mechanical Engineering and Materials Science, Duke University, Durham, NC, USA.
  • Limketkai BN; Department of Chemistry, The University of Hong Kong, Hong Kong, China.
  • Wu Y; Department of Chemistry, Northwestern University, Evanston, IL, USA.
  • Yang S; Department of Chemistry, The University of Hong Kong, Hong Kong, China.
  • Chen AX; Department of Chemistry, Northwestern University, Evanston, IL, USA.
  • Stern CL; H2MOF Inc., Irvine, CA, USA.
  • Malliakas CD; Department of Chemistry, The University of Hong Kong, Hong Kong, China.
  • Snurr RQ; Department of Chemistry, Northwestern University, Evanston, IL, USA.
  • Stoddart JF; Department of Chemistry, Northwestern University, Evanston, IL, USA.
Nat Chem ; 2024 Sep 03.
Article em En | MEDLINE | ID: mdl-39227421
ABSTRACT
The storage of hydrogen is key to its applications. Developing adsorbent materials with high volumetric and gravimetric storage capacities, both of which are essential for the efficient use of hydrogen as a fuel, is challenging. Here we report a controlled catenation strategy in hydrogen-bonded organic frameworks (RP-H100 and RP-H101) that depends on multiple hydrogen bonds to guide catenation in a point-contact manner, resulting in high volumetric and gravimetric surface areas, robustness and ideal pore diameters (~1.2-1.9 nm) for hydrogen storage. This approach involves assembling nine imidazole-annulated triptycene hexaacids into a secondary hexagonal superstructure containing three open channels through which seven of the hexagons interpenetrate to form a seven-fold catenated superstructure. RP-H101 exhibits high deliverable volumetric (53.7 g l-1) and gravimetric (9.3 wt%) capacities for hydrogen under a combined temperature and pressure swing (77 K/100 bar → 160 K/5 bar). This work illustrates the virtues of supramolecular crystals as promising candidates for hydrogen storage.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nat Chem Assunto da revista: QUIMICA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nat Chem Assunto da revista: QUIMICA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China