Porous materials with optimal adsorption thermodynamics and kinetics for CO2 separation P Nugent, Y Belmabkhout, SD Burd, AJ Cairns, R Luebke, K Forrest, ... Nature 495 (7439), 80-84, 2013 | 2296 | 2013 |
Targeted synthesis of a porous aromatic framework with high stability and exceptionally high surface area T Ben, H Ren, S Ma, D Cao, J Lan, X Jing, W Wang, J Xu, F Deng, ... Angewandte Chemie International Edition 48 (50), 9457-9460, 2009 | 1722 | 2009 |
Gas storage in porous metal–organic frameworks for clean energy applications S Ma, HC Zhou Chemical Communications 46 (1), 44-53, 2010 | 1528 | 2010 |
Covalent organic frameworks for separation applications Z Wang, S Zhang, Y Chen, Z Zhang, S Ma Chemical Society Reviews 49 (3), 708-735, 2020 | 996 | 2020 |
Metal-organic framework from an anthracene derivative containing nanoscopic cages exhibiting high methane uptake S Ma, D Sun, JM Simmons, CD Collier, D Yuan, HC Zhou Journal of the American Chemical Society 130 (3), 1012-1016, 2008 | 981 | 2008 |
Postsynthetically modified covalent organic frameworks for efficient and effective mercury removal Q Sun, B Aguila, J Perman, LD Earl, CW Abney, Y Cheng, H Wei, ... Journal of the American Chemical Society 139 (7), 2786-2793, 2017 | 946 | 2017 |
Framework-catenation isomerism in metal− organic frameworks and its impact on hydrogen uptake S Ma, D Sun, M Ambrogio, JA Fillinger, S Parkin, HC Zhou Journal of the American Chemical Society 129 (7), 1858-1859, 2007 | 736 | 2007 |
An interweaving MOF with high hydrogen uptake D Sun, S Ma, Y Ke, DJ Collins, HC Zhou Journal of the American Chemical Society 128 (12), 3896-3897, 2006 | 659 | 2006 |
Immobilization of MP-11 into a mesoporous metal–organic framework, MP-11@ mesoMOF: a new platform for enzymatic catalysis V Lykourinou, Y Chen, XS Wang, L Meng, T Hoang, LJ Ming, ... Journal of the American Chemical Society 133 (27), 10382-10385, 2011 | 644 | 2011 |
Mercury nano-trap for effective and efficient removal of mercury (II) from aqueous solution B Li, Y Zhang, D Ma, Z Shi, S Ma Nature communications 5 (1), 5537, 2014 | 634 | 2014 |
Metal–metalloporphyrin frameworks: a resurging class of functional materials WY Gao, M Chrzanowski, S Ma Chemical Society Reviews 43 (16), 5841-5866, 2014 | 616 | 2014 |
Crystal Engineering of an nbo Topology Metal–Organic Framework for Chemical Fixation of CO2 under Ambient Conditions WY Gao, Y Chen, Y Niu, K Williams, L Cash, PJ Perez, L Wojtas, J Cai, ... Angewandte Chemie International Edition 53 (10), 2615-2619, 2014 | 564 | 2014 |
Recent advances in MOF-based photocatalysis: environmental remediation under visible light Q Wang, Q Gao, AM Al-Enizi, A Nafady, S Ma Inorganic Chemistry Frontiers 7 (2), 300-339, 2020 | 563 | 2020 |
A metal− organic framework with entatic metal centers exhibiting high gas adsorption affinity S Ma, HC Zhou Journal of the american chemical society 128 (36), 11734-11735, 2006 | 560 | 2006 |
Covalent organic frameworks as a decorating platform for utilization and affinity enhancement of chelating sites for radionuclide sequestration Q Sun, B Aguila, LD Earl, CW Abney, L Wojtas, PK Thallapally, S Ma Advanced Materials 30 (20), 1705479, 2018 | 539 | 2018 |
Rationally designed micropores within a metal− organic framework for selective sorption of gas molecules B Chen, S Ma, F Zapata, FR Fronczek, EB Lobkovsky, HC Zhou Inorganic chemistry 46 (4), 1233-1236, 2007 | 524 | 2007 |
Applications of metal-organic frameworks featuring multi-functional sites B Li, M Chrzanowski, Y Zhang, S Ma Coordination Chemistry Reviews 307, 106-129, 2016 | 523 | 2016 |
Opportunities of covalent organic frameworks for advanced applications Y Song, Q Sun, B Aguila, S Ma Advanced Science 6 (2), 1801410, 2019 | 500 | 2019 |
Metal‐Organic Frameworks for CO2 Chemical Transformations H He, JA Perman, G Zhu, S Ma Small 12 (46), 6309-6324, 2016 | 486 | 2016 |
Cobalt imidazolate framework as precursor for oxygen reduction reaction electrocatalysts S Ma, GA Goenaga, AV Call, DJ Liu Chemistry-A European Journal 17 (7), 2063, 2011 | 458 | 2011 |