Highly active surfaces for CO oxidation on Rh, Pd, and Pt MS Chen, Y Cai, Z Yan, KK Gath, S Axnanda, DW Goodman Surface Science 601 (23), 5326-5331, 2007 | 450 | 2007 |
Using “tender” X-ray ambient pressure X-ray photoelectron spectroscopy as a direct probe of solid-liquid interface S Axnanda, EJ Crumlin, B Mao, S Rani, R Chang, PG Karlsson, ... Scientific reports 5 (1), 9788, 2015 | 356 | 2015 |
Importance of the metal–oxide interface in catalysis: In situ studies of the water–gas shift reaction by ambient‐pressure X‐ray photoelectron spectroscopy K Mudiyanselage, SD Senanayake, L Feria, S Kundu, AE Baber, ... Angewandte Chemie 125 (19), 5205-5209, 2013 | 347 | 2013 |
Hydrogenation of CO2 to Methanol on CeOx/Cu(111) and ZnO/Cu(111) Catalysts: Role of the Metal–Oxide Interface and Importance of Ce3+ Sites SD Senanayake, PJ Ramírez, I Waluyo, S Kundu, K Mudiyanselage, Z Liu, ... The Journal of Physical Chemistry C 120 (3), 1778-1784, 2016 | 206 | 2016 |
Direct observation of the energetics at a semiconductor/liquid junction by operando X-ray photoelectron spectroscopy MF Lichterman, S Hu, MH Richter, EJ Crumlin, S Axnanda, M Favaro, ... Energy & Environmental Science 8 (8), 2409-2416, 2015 | 195 | 2015 |
Direct work function measurement by gas phase photoelectron spectroscopy and its application on PbS nanoparticles S Axnanda, M Scheele, E Crumlin, B Mao, R Chang, S Rani, M Faiz, ... Nano letters 13 (12), 6176-6182, 2013 | 163 | 2013 |
Preparation and characterization of silica supported Au− Pd model catalysts K Luo, T Wei, CW Yi, S Axnanda, DW Goodman The Journal of Physical Chemistry B 109 (49), 23517-23522, 2005 | 119 | 2005 |
Aqueous solution/metal interfaces investigated in operando by photoelectron spectroscopy O Karslıoğlu, S Nemšák, I Zegkinoglou, A Shavorskiy, M Hartl, F Salmassi, ... Faraday discussions 180, 35-53, 2015 | 117 | 2015 |
Enhancement in Ethanol Electrooxidation by SnOx Nanoislands Grown on Pt(111): Effect of Metal Oxide–Metal Interface Sites WP Zhou, S Axnanda, MG White, RR Adzic, J Hrbek The Journal of Physical Chemistry C 115 (33), 16467-16473, 2011 | 108 | 2011 |
Atomic-scale assembly of a heterogeneous catalytic site P Han, S Axnanda, I Lyubinetsky, DW Goodman Journal of the American Chemical Society 129 (46), 14355-14361, 2007 | 103 | 2007 |
Intrinsic ligand effect governing the catalytic activity of Pd oxide thin films NM Martin, M Van den Bossche, A Hellman, H Gronbeck, C Hakanoglu, ... Acs Catalysis 4 (10), 3330-3334, 2014 | 99 | 2014 |
Observing the electrochemical oxidation of Co metal at the solid/liquid interface using ambient pressure X-ray photoelectron spectroscopy Y Han, S Axnanda, EJ Crumlin, R Chang, B Mao, Z Hussain, PN Ross, ... The Journal of Physical Chemistry B 122 (2), 666-671, 2018 | 84 | 2018 |
A kinase-cGAS cascade to synthesize a therapeutic STING activator JA McIntosh, Z Liu, BM Andresen, NS Marzijarani, JC Moore, NM Marshall, ... Nature 603 (7901), 439-444, 2022 | 69 | 2022 |
Direct mapping of band positions in doped and undoped hematite during photoelectrochemical water splitting A Shavorskiy, X Ye, O Karslıoğlu, AD Poletayev, M Hartl, I Zegkinoglou, ... The Journal of Physical Chemistry Letters 8 (22), 5579-5586, 2017 | 67 | 2017 |
PbS nanoparticles capped with tetrathiafulvalenetetracarboxylate: utilizing energy level alignment for efficient carrier transport M Scheele, D Hanifi, D Zherebetskyy, ST Chourou, S Axnanda, ... ACS nano 8 (3), 2532-2540, 2014 | 63 | 2014 |
Organometallic ruthenium nanoparticles as model catalysts for CO hydrogenation: A nuclear magnetic resonance and ambient-pressure X-ray photoelectron spectroscopy study LM Martínez-Prieto, S Carenco, CH Wu, E Bonnefille, S Axnanda, Z Liu, ... ACS Catalysis 4 (9), 3160-3168, 2014 | 47 | 2014 |
In situ characterizations of nanostructured SnO x/Pt (111) surfaces using ambient-pressure XPS (APXPS) and high-pressure scanning tunneling microscopy (HPSTM) S Axnanda, Z Zhu, W Zhou, B Mao, R Chang, S Rani, E Crumlin, ... The Journal of Physical Chemistry C 118 (4), 1935-1943, 2014 | 40 | 2014 |
CO oxidation on nanostructured SnO x/Pt (111) surfaces: unique properties of reduced SnO x S Axnanda, WP Zhou, MG White Physical Chemistry Chemical Physics 14 (29), 10207-10214, 2012 | 40 | 2012 |
Exploring the Environmental Photochemistry on the TiO2(110) Surface in Situ by Near Ambient Pressure X-ray Photoelectron Spectroscopy M Lampimäki, S Schreiber, V Zelenay, A Krepelova, M Birrer, ... The Journal of Physical Chemistry C 119 (13), 7076-7085, 2015 | 38 | 2015 |
Oxidation and reduction of size-selected subnanometer Pd clusters on Al2O3 surface BH Mao, R Chang, S Lee, S Axnanda, E Crumlin, ME Grass, SD Wang, ... The Journal of chemical physics 138 (21), 2013 | 38 | 2013 |