| Literature DB >> 25123293 |
Oleksii V Gutov1, Wojciech Bury, Diego A Gomez-Gualdron, Vaiva Krungleviciute, David Fairen-Jimenez, Joseph E Mondloch, Amy A Sarjeant, Salih S Al-Juaid, Randall Q Snurr, Joseph T Hupp, Taner Yildirim, Omar K Farha.
Abstract
We designed, synthesized, and characterized a new Zr-based metal-organic framework material, NU-1100, with a pore volume of 1.53 ccg(-1) and Brunauer-Emmett-Teller (BET) surface area of 4020 m(2) g(-1) ; to our knowledge, currently the highest published for Zr-based MOFs. CH4 /CO2 /H2 adsorption isotherms were obtained over a broad range of pressures and temperatures and are in excellent agreement with the computational predictions. The total hydrogen adsorption at 65 bar and 77 K is 0.092 g g(-1) , which corresponds to 43 g L(-1) . The volumetric and gravimetric methane-storage capacities at 65 bar and 298 K are approximately 180 vSTP /v and 0.27 g g(-1) , respectively.Entities:
Keywords: gas storage; hydrogen; metal-organic frameworks; methane; zirconium
Year: 2014 PMID: 25123293 DOI: 10.1002/chem.201402895
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236