1 |
Photocatalytic plate-like La2Ti2O7 nanoparticles synthesized via liquid-feed flame spray pyrolysis (LF-FSP) of metallo-organic precursors Abe Y, Laine RM Journal of the American Ceramic Society, 103(9), 4832, 2020 |
2 |
Chemical modification in and on single phase [NiO](0.5)[Al2O3](0.5) nanopowders produces "chocolate chip-like" Ni-x@[NiO](0.5-x)[Al2O3](0.5) nanocomposite nanopowders Wang F, Sun K, Yi EY, Laine RM Journal of the American Ceramic Society, 102(12), 7145, 2019 |
3 |
Comparative analysis of liquid versus vapor-feed passive direct methanol fuel cells Abdelkareem MA, Allagui A, Sayed ET, Assad ME, Said Z, Elsaid K Renewable Energy, 131, 563, 2019 |
4 |
Study of Pt-free anode catalysts for anion exchange membrane fuel cells Sakamoto T, Asazawa K, Yamada K, Tanaka H Catalysis Today, 164(1), 181, 2011 |
5 |
ANALYSIS OF A TWO-FLUID SPRAYER AND ITS USE TO DEVELOP THE NUMBER SIZE DISTRIBUTION MOMENTS SPRAY MODEL, PART I: EXPERIMENTAL ANALYSIS Emekwuru NG, Watkins AP Atomization and Sprays, 20(6), 467, 2010 |
6 |
Fuel sensor-less control of a liquid feed fuel cell under dynamic loading conditions for portable power sources (II) Chang CL, Chen CY, Sung CC, Liou DH, Chang CY, Cha HC Journal of Power Sources, 195(5), 1427, 2010 |
7 |
Fermented pig liquid feed: nutritional, safety and regulatory aspects Plumed-Ferrer C, von Wright A Journal of Applied Microbiology, 106(2), 351, 2009 |
8 |
Liquid Feed Injection in a High-Density Riser Gehrke S, Wirth KE Chemical Engineering & Technology, 31(11), 1701, 2008 |
9 |
Fuel sensor-less control of a liquid feed fuel cell under dynamic loading conditions for portable power sources (I) Chang CL, Chen CY, Sung CC, Liou DH Journal of Power Sources, 182(1), 133, 2008 |
10 |
Fuel sensor-less control of a liquid feed fuel cell system under steady load for portable applications Chang CL, Chen CY, Sung CC, Liou DH Journal of Power Sources, 164(2), 606, 2007 |