High-Throughput Screening of Porous Crystalline Materials for Hydrogen Storage Capacity near Room Temperature

High-Throughput Screening of Porous Crystalline Materials for Hydrogen Storage Capacity near Room Temperature is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1021/JP4122326

P50authorDavid Fairen-JimenezQ44260123
Randall Q. SnurrQ60559635
P2093author name stringChristopher E. Wilmer
Yamil J. Colón
P433issue10
P1104number of pages7
P304page(s)5383-5389
P577publication date2014-03-04
P1433published inJournal of Physical Chemistry CQ2222904
P1476titleHigh-Throughput Screening of Porous Crystalline Materials for Hydrogen Storage Capacity near Room Temperature
P478volume118

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cites work (P2860)
Q46007404CD-MOF: A Versatile Separation Medium.
Q55042544Computer-aided discovery of a metal-organic framework with superior oxygen uptake.
Q41549386Discovery of optimal zeolites for challenging separations and chemical transformations using predictive materials modeling
Q64073456Exceptional hydrogen storage achieved by screening nearly half a million metal-organic frameworks
Q85275427Hydrogen Storage Materials for Mobile and Stationary Applications: Current State of the Art
Q28597469In silico discovery of metal-organic frameworks for precombustion CO2 capture using a genetic algorithm
Q28828887The Harvard organic photovoltaic dataset

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