1 |
The Kohn-Sham electronic density of states of liquid HCN: Tuning a long-range corrected exchange-correlation functional for predicting electron binding energies Cabral BJC Chemical Physics Letters, 724, 96, 2019 |
2 |
Spatially Resolved Characterization of the Gas Propagator in Monolithic Structured Catalysts Using NMR Diffusiometry Mirdrikvand M, Ilsemann J, Thoming J, Dreher W Chemical Engineering & Technology, 41(9), 1871, 2018 |
3 |
Study of Dispersion in Porous Media by Pulsed Field Gradient NMR: Influence of the Fluid Rheology Ferrari M, Moyne C, Stemmelen D Transport in Porous Media, 123(1), 101, 2018 |
4 |
Electron binding energies and the fundamental gap of a push-pull dye in a polar environment: p-nitroaniline in liquid water Cabral BJC Chemical Physics Letters, 667, 332, 2017 |
5 |
Optimization of the spin-component-scaled factor for electron propagator method Lim FH, Nishida M, Hori Y, Ida T, Mizuno M Chemical Physics Letters, 678, 159, 2017 |
6 |
Particle Motion in Two- and Three-Phase Fluidized-Bed Reactors Determined by Pulsed Field Gradient Nuclear Magnetic Resonance Zhang Q, Zhou YF, Wang JD, Jiang BB, Yang YR, Stapf S, Mattea C, Gong QX Chemical Engineering & Technology, 38(7), 1269, 2015 |
7 |
Dynamic Response of a Multilayered Poroelastic Half-Space to Harmonic Surface Tractions Zheng P, Ding BY, Zhao SX, Ding D Transport in Porous Media, 99(2), 229, 2013 |
8 |
Effective drift and diffusion of a particle jumping between mobile and immobile states Berezhkovskii AM, Bezrukov SM Journal of Electroanalytical Chemistry, 660(2), 352, 2011 |
9 |
Characterization of Single-Phase Flow Through Carbonate Rocks: Quantitative Comparison of NMR Flow Propagator Measurements with a Realistic Pore Network Model Zhao WS, Picard G, Leu G, Singer PM Transport in Porous Media, 81(2), 305, 2010 |
10 |
Quantification of the velocity acceleration factor for colloidal transport in porous media using NMR Creber SA, Pintelon TRR, Johns ML Journal of Colloid and Interface Science, 339(1), 168, 2009 |