1 |
Noncontact temperature-dependent fluorescence depicting phase transition in Nd3+-doped (K0.5Na0.5)NbO3 ceramics Wang HJ, Deng BY, Lin C, Wu X, Cheng Y, Lin TF, Zheng XH, Yu X Journal of the American Ceramic Society, 103(2), 784, 2020 |
2 |
Simulated non-contact atomic force microscopy for GaAs surfaces based on real-space pseudopotentials Kim M, Chelikowsky JR Applied Surface Science, 303, 163, 2014 |
3 |
Nonlinear dynamics of adhesive micro-spherical particles on vibrating substrates Vahdat AS, Azizi S, Cetinkaya C Journal of Adhesion Science and Technology, 27(15), 1712, 2013 |
4 |
Two-Dimensional Nanostructured Growth of Nanoclusters and Molecules on Insulating Surfaces Barth C, Gingras M, Foster AS, Gulans A, Felix G, Hynninen T, Peresutti R, Henry CR Advanced Materials, 24(24), 3228, 2012 |
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Mechanical distinction and manipulation of atoms based on noncontact atomic force microscopy Morita S, Yi I, Sugimoto Y, Oyabu N, Nishi R, Custance O, Abe M Applied Surface Science, 241(1-2), 2, 2005 |
6 |
Frequency shifts of cantilever in AFM Xie HY Applied Surface Science, 252(2), 372, 2005 |
7 |
Roughness and hydrophobicity studies of nanofiltration membranes using different modes of AFM Boussu K, Van der Bruggen B, Volodin A, Snauwaert J, Van Haesendonck C, Vandecasteele C Journal of Colloid and Interface Science, 286(2), 632, 2005 |
8 |
KPFM imaging of Si(111)5 root 3 x 5 root 3-Sb surface for atom distinction using NC-AFM Okamoto K, Yoshimoto K, Sugawara Y, Morita S Applied Surface Science, 210(1-2), 128, 2003 |
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Atom-resolved noncontact atomic force microscopic and scanning tunneling microscopic observations of the structure and dynamic behavior of CeO2(111) surfaces Namai Y, Fukui KI, Iwasawa Y Catalysis Today, 85(2-4), 79, 2003 |
10 |
Imaging of surface oxygen atoms and their defect structures on CeO2(111) by noncontact atomic force microscopy Fukui K, Namai Y, Iwasawa Y Applied Surface Science, 188(3-4), 252, 2002 |