Extraordinary NO2 Removal by the Metal–Organic Framework UiO‐66‐NH2 GW Peterson, JJ Mahle, JB DeCoste, WO Gordon, JA Rossin Angewandte Chemie 128 (21), 6343-6346, 2016 | 208 | 2016 |
In situ probes of capture and decomposition of chemical warfare agent simulants by Zr-based metal organic frameworks AM Plonka, Q Wang, WO Gordon, A Balboa, D Troya, W Guo, CH Sharp, ... Journal of the American Chemical Society 139 (2), 599-602, 2017 | 196 | 2017 |
Long-lifetime luminescence of lanthanide-doped gadolinium oxide nanoparticles for immunoassays WO Gordon, JA Carter, BM Tissue Journal of Luminescence 108 (1-4), 339-342, 2004 | 184 | 2004 |
Broad‐Spectrum Liquid‐and Gas‐Phase Decontamination of Chemical Warfare Agents by One‐Dimensional Heteropolyniobates W Guo, H Lv, KP Sullivan, WO Gordon, A Balboa, GW Wagner, ... Angewandte Chemie 128 (26), 7529-7533, 2016 | 104 | 2016 |
Adsorption and Decomposition of Dimethyl Methylphosphonate on Y2O3 Nanoparticles WO Gordon, BM Tissue, JR Morris The Journal of Physical Chemistry C 111 (8), 3233-3240, 2007 | 90 | 2007 |
Infrared spectra and binding energies of chemical warfare nerve agent simulants on the surface of amorphous silica AR Wilmsmeyer, WO Gordon, ED Davis, D Troya, BA Mantooth, TA Lalain, ... The Journal of Physical Chemistry C 117 (30), 15685-15697, 2013 | 88 | 2013 |
Dimethyl methylphosphonate decomposition on fully oxidized and partially reduced ceria thin films DA Chen, JS Ratliff, X Hu, WO Gordon, SD Senanayake, DR Mullins Surface science 604 (5-6), 574-587, 2010 | 86 | 2010 |
Environmental effects on zirconium hydroxide nanoparticles and chemical warfare agent decomposition: implications of atmospheric water and carbon dioxide RB Balow, JG Lundin, GC Daniels, WO Gordon, M McEntee, GW Peterson, ... ACS applied materials & interfaces 9 (45), 39747-39757, 2017 | 77 | 2017 |
Temperature evolution of structure and bonding of formic acid and formate on fully oxidized and highly reduced CeO 2 (111) WO Gordon, Y Xu, DR Mullins, SH Overbury Physical Chemistry Chemical Physics 11 (47), 11171-11183, 2009 | 70 | 2009 |
Metal–organic framework-and polyoxometalate-based sorbents for the uptake and destruction of chemical warfare agents TG Grissom, AM Plonka, CH Sharp, AM Ebrahim, Y Tian, ... ACS applied materials & interfaces 12 (13), 14641-14661, 2020 | 56 | 2020 |
Adsorption and Reaction of Acetone over CeOx(111) Thin Films SD Senanayake, WO Gordon, SH Overbury, DR Mullins The Journal of Physical Chemistry C 113 (15), 6208-6214, 2009 | 55 | 2009 |
Chemical warfare agent surface adsorption: hydrogen bonding of sarin and soman to amorphous silica ED Davis, WO Gordon, AR Wilmsmeyer, D Troya, JR Morris The Journal of Physical Chemistry Letters 5 (8), 1393-1399, 2014 | 49 | 2014 |
Structure–activity relationship of Au/ZrO 2 catalyst on formation of hydroxyl groups and its influence on CO oxidation CJ Karwacki, P Ganesh, PRC Kent, WO Gordon, GW Peterson, JJ Niu, ... Journal of materials chemistry A 1 (19), 6051-6062, 2013 | 46 | 2013 |
Adsorption of substituted benzene derivatives on silica: Effects of electron withdrawing and donating groups J Abelard, AR Wilmsmeyer, AC Edwards, WO Gordon, EM Durke, ... The Journal of Physical Chemistry C 120 (24), 13024-13031, 2016 | 43 | 2016 |
Adsorption of 2-chloroethyl ethyl sulfide on silica: Binding mechanism and energy of a bifunctional hydrogen-bond acceptor at the gas–surface interface J Abelard, AR Wilmsmeyer, AC Edwards, WO Gordon, EM Durke, ... The Journal of Physical Chemistry C 119 (1), 365-372, 2015 | 38 | 2015 |
Effect of carbon dioxide on the degradation of chemical warfare agent simulant in the presence of Zr metal organic framework MOF-808 AM Plonka, TG Grissom, DG Musaev, A Balboa, WO Gordon, ... Chemistry of Materials 31 (23), 9904-9914, 2019 | 34 | 2019 |
Photoenhanced Degradation of Sarin at Cu/TiO2 Composite Aerogels: Roles of Bandgap Excitation and Surface Plasmon Excitation PA DeSario, WO Gordon, A Balboa, AM Pennington, CL Pitman, ... ACS Applied Materials & Interfaces 13 (10), 12550-12561, 2021 | 29 | 2021 |
Correlated multimodal approach reveals key details of nerve-agent decomposition by single-site Zr-based polyoxometalates Y Tian, AM Plonka, AM Ebrahim, RM Palomino, SD Senanayake, ... The Journal of Physical Chemistry Letters 10 (9), 2295-2299, 2019 | 26 | 2019 |
Atomic-level structural dynamics of polyoxoniobates during DMMP decomposition Q Wang, RC Chapleski Jr, AM Plonka, WO Gordon, W Guo, ... Scientific reports 7 (1), 773, 2017 | 26 | 2017 |
Mesoporous Copper Nanoparticle/TiO2 Aerogels for Room-Temperature Hydrolytic Decomposition of the Chemical Warfare Simulant Dimethyl Methylphosphonate M McEntee, WO Gordon, A Balboa, DJ Delia, CL Pitman, AM Pennington, ... ACS Applied Nano Materials 3 (4), 3503-3512, 2020 | 25 | 2020 |