1 |
Correlating furfural reaction pathways with interactions between furfural and monometallic surfaces Xiong K, Chen JGG Catalysis Today, 339, 289, 2020 |
2 |
Oxygen bonding configurations and defects on differently oxidized diamond surfaces studied by high resolution electron energy loss spectroscopy and X-ray photoelectron spectroscopy measurements Li FN, Akhvlediani R, Kuntumalla MK, Hoffman A Applied Surface Science, 465, 313, 2019 |
3 |
The (001) 3C SiC surface termination and band structure after common wet chemical etching procedures, stated by XPS, LEED, and HREELS Tengeler S, Kaiser B, Ferro G, Chaussende D, Jaegermann W Applied Surface Science, 427, 480, 2018 |
4 |
TPD and HREELS study of the reaction of guaiacol on Zn-decorated Pt(111) Shi DM, Vohs JM Catalysis Today, 302, 272, 2018 |
5 |
The use of bimetallics to control the selectivity for the upgrading of lignin-derived oxygenates: Reaction of anisole on Pt and PtZn catalysts Shi DM, Arroyo-Ramirez L, Vohs JM Journal of Catalysis, 340, 219, 2016 |
6 |
Investigation of the adsorption properties of borazine and characterisation of boron nitride on Rh(111) by electron spectroscopic methods Farkas AP, Torok P, Solymosi F, Kiss J, Konya Z Applied Surface Science, 354, 367, 2015 |
7 |
Low Energy Pathways and Precursor States in the Catalytic Oxidation of Water and Carbon Dioxide at Metal Surfaces and Comparisons with Ammonia Oxidation Roberts MW Catalysis Letters, 144(5), 767, 2014 |
8 |
Reaction of glyceraldehyde and glucose on Zn-modified Pt(111) surfaces McManus JR, Martono E, Vohs JM Catalysis Today, 237, 157, 2014 |
9 |
Preparation of clean and well-ordered hydrogen-terminated Si(110)-(1 x 1) surfaces and the measurements of vibrational modes Suto S, Matsui K, Matsushita SY, Kato H, Nakaya H, Taoka T, Kasuya A, Yamada T Applied Surface Science, 267, 90, 2013 |
10 |
Trend in the C=C and C=O bond hydrogenation of acrolein on Pt-M (M = Ni, Co, Cu) bimetallic surfaces Murillo LE, Menning CA, Chen JG Journal of Catalysis, 268(2), 335, 2009 |