Lamellar aluminophosphates with surface patterns that mimic diatom and radiolarian microskeletons S Oliver, A Kuperman, N Coombs, A Lough, GA Ozin Nature 378 (6552), 47-50, 1995 | 463 | 1995 |
Design and self-assembly of open, regular, 3D mesostructures TL Breen, J Tien, SRJ Oliver, T Hadzic, GM Whitesides Science 284 (5416), 948-951, 1999 | 398 | 1999 |
Non-aqueous synthesis of giant crystals of zeolites and molecular sieves A Kuperman, S Nadimi, S Oliver, GA Ozin, JM Garcés, MM Olken Nature 365 (6443), 239-242, 1993 | 374 | 1993 |
A new model for aluminophosphate formation: Transformation of a linear chain aluminophosphate to chain, layer, and framework structures S Oliver, A Kuperman, GA Ozin Angewandte Chemie International Edition 37 (1‐2), 46-62, 1998 | 343 | 1998 |
Reversible anion exchange and catalytic properties of two cationic metal− organic frameworks based on Cu (I) and Ag (I) H Fei, DL Rogow, SRJ Oliver Journal of the American Chemical Society 132 (20), 7202-7209, 2010 | 287 | 2010 |
Ni Foam-Supported Fe-Doped β-Ni(OH)2 Nanosheets Show Ultralow Overpotential for Oxygen Evolution Reaction T Kou, S Wang, JL Hauser, M Chen, SRJ Oliver, Y Ye, J Guo, Y Li ACS Energy Letters 4 (3), 622-628, 2019 | 281 | 2019 |
A new paradigm for anion trapping in high capacity and selectivity: crystal-to-crystal transformation of cationic materials H Fei, MR Bresler, SRJ Oliver Journal of the American Chemical Society 133 (29), 11110-11113, 2011 | 268 | 2011 |
Cationic inorganic materials for anionic pollutant trapping and catalysis SRJ Oliver Chemical Society Reviews 38 (7), 1868-1881, 2009 | 230 | 2009 |
A Robust Sulfonate-Based Metal–Organic Framework with Permanent Porosity for Efficient CO2 Capture and Conversion G Zhang, G Wei, Z Liu, SRJ Oliver, H Fei Chemistry of Materials 28 (17), 6276-6281, 2016 | 209 | 2016 |
Aluminophosphate chain-to-layer transformation S Oliver, A Kuperman, A Lough, GA Ozin Chemistry of materials 8 (9), 2391-2398, 1996 | 163 | 1996 |
A cationic metal–organic solid solution based on Co (II) and Zn (II) for chromate trapping H Fei, CS Han, JC Robins, SRJ Oliver Chemistry of Materials 25 (5), 647-652, 2013 | 138 | 2013 |
Mesoporous silica nanoparticles for high capacity adsorptive desulfurization JM Palomino, DT Tran, JL Hauser, H Dong, SRJ Oliver Journal of Materials Chemistry A 2 (36), 14890-14895, 2014 | 96 | 2014 |
Light-triggered eradication of acinetobacter baumannii by means of NO delivery from a porous material with an entrapped metal nitrosyl BJ Heilman, J St. John, SRJ Oliver, PK Mascharak Journal of the American Chemical Society 134 (28), 11573-11582, 2012 | 91 | 2012 |
Synthesis and Crystal Structures of Two Novel Anionic Aluminophosphates: A One-Dimensional Chain, UT-7 ([Al3P5O20H] 5-[C7H13NH3+] 5), and a Layer Containing Two Cyclic Amines … S Oliver, A Kuperman, A Lough, GA Ozin Inorganic chemistry 35 (22), 6373-6380, 1996 | 90 | 1996 |
Mesoscale self-assembly: capillary bonds and negative menisci N Bowden, SRJ Oliver, GM Whitesides The Journal of Physical Chemistry B 104 (12), 2714-2724, 2000 | 88 | 2000 |
Skeletons in the beaker: synthetic hierarchical inorganic materials GA Ozin, S Oliver Advanced Materials 7 (11), 943-947, 1995 | 84 | 1995 |
Rapid eradication of human breast cancer cells through trackable light-triggered CO delivery by mesoporous silica nanoparticles packed with a designed photoCORM I Chakraborty, SJ Carrington, J Hauser, SRJ Oliver, PK Mascharak Chemistry of Materials 27 (24), 8387-8397, 2015 | 77 | 2015 |
Synthesis and characterization of a fluorinated anionic aluminophosphate framework UT-6, and its high-temperature dehydrofluorination to AlPO 4-CHA S Oliver, A Kuperman, A Lough, GA Ozin Journal of Materials Chemistry 7 (5), 807-812, 1997 | 70 | 1997 |
Zirconia-silica based mesoporous desulfurization adsorbents JM Palomino, DT Tran, AR Kareh, CA Miller, JMV Gardner, H Dong, ... Journal of Power Sources 278, 141-148, 2015 | 69 | 2015 |
Reversible, selective trapping of perchlorate from water in record capacity by a cationic metal–organic framework IR Colinas, RC Silva, SRJ Oliver Environmental Science & Technology 50 (4), 1949-1954, 2016 | 67 | 2016 |