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Communications Chemistry|October 3, 2023
Accelerating the prediction of CO2 capture at low partial pressures in metal-organic frameworks using new machine learning descriptorsIbrahim B Orhan, Tu C Le, Ravichandar Babarao, et al.Dalton Transactions (Cambridge, England : 2003)|March 8, 2011
A flexible copper based microporous metal-organic framework displaying selective adsorption of hydrogen over nitrogenMuhammad Arif Nadeem, Aaron W Thornton, Matthew R Hill, et al.Medical Gas Research|August 10, 2022
Identifying medically relevant xenon protein targets by in silico screening of the structural proteomeDavid A Winkler, Ira Katz, Andrew Warden, et al.Chemmedchem|July 14, 2018
Decoding the Rich Biological Properties of Noble Gases: How Well Can We Predict Noble Gas Binding to Diverse Proteins?David A Winkler, Ira Katz, Géraldine Farjot, et al.Molecules (Basel, Switzerland)|February 13, 2025
Machine Learning Descriptors for CO2 Capture MaterialsIbrahim B Orhan, Yuankai Zhao, Ravichandar Babarao, et al.ACS Applied Materials & Interfaces|October 30, 2018
High-Throughput Screening of Metal-Organic Frameworks for Macroscale Heteroepitaxial AlignmentAndrew Tarzia, Masahide Takahashi, Paolo Falcaro, et al.Journal of the American Chemical Society|July 9, 2009
Metal-organic frameworks impregnated with magnesium-decorated fullerenes for methane and hydrogen storageAaron W Thornton, Kate M Nairn, James M Hill, et al.Nature Communications|October 29, 2025
Liquid metal interface enables glassy MOF membranes with defect-mediated CO₂ transportXiaoheng Jin, Xing Wu, Derrick Ng, et al.Chemical Society Reviews|May 23, 2017
New synthetic routes towards MOF production at scaleMarta Rubio-Martinez, Ceren Avci-Camur, Aaron W Thornton, et al.Langmuir : the ACS Journal of Surfaces and Colloids|November 8, 2014
Porous aromatic frameworks impregnated with fullerenes for enhanced methanol/water separationAfsana Ahmed, Zongli Xie, Kristina Konstas, et al.Pageof 4