1 |
Microstructure and thermodynamic properties of aqueous alumina nanofluids Gomez-Merino AI, Arjona-Escudero JL, Santos-Raez IM, Rubio-Hernandez FJ Powder Technology, 353, 509, 2019 |
2 |
Rheological properties of alumina slurries: Effect of deflocculant addition Papo A, Piani L Particulate Science and Technology, 25(4), 375, 2007 |
3 |
Diffusing-wave spectroscopy of concentrated alumina suspensions during gelation Wyss HM, Romer S, Scheffold F, Schurtenberger P, Gauckler LJ Journal of Colloid and Interface Science, 241(1), 89, 2001 |
4 |
Effects of microstructure on the compressive yield stress Channell GM, Miller KT, Zukoski CF AIChE Journal, 46(1), 72, 2000 |
5 |
Effect of ionic strength on the adsorption of cationic polyelectrolytes onto alumina studied using electroacoustic measurements Greenwood R, Kendall K Powder Technology, 113(1-2), 148, 2000 |
6 |
A multivariate analysis on the sedimentation of aqueous silica suspensions as studied by means of time domain dielectric spectroscopy Pettersen BH, Nodland E, Sjoblom J Journal of Colloid and Interface Science, 214(1), 1, 1999 |
7 |
Searching for thermodynamic relations in ion adsorption at oxide/electrolyte interfaces studied by using the 2-pK protonation model Rudzinski W, Charmas R, Piasecki W Langmuir, 15(25), 8553, 1999 |
8 |
The flow behavior of submicron alpha-Al2O3 aqueous suspensions Zaman AA, Moudgil BM, Rajagopalan R Chemical Engineering Communications, 169, 203, 1998 |
9 |
Dispersion characteristic of nano-sized ceramic powder in an aqueous medium Liu DM Journal of Materials Science Letters, 17(3), 207, 1998 |
10 |
Calorimetric effects accompanying ion adsorption at the charged metal oxide/electrolyte interfaces : Effects of oxide surface energetic heterogeneity Rudzinski W, Charmas R, Piasecki W, Thomas F, Villieras F, Prelot B, Cases JM Langmuir, 14(18), 5210, 1998 |