Direct observation of the initial process of Ostwald ripening using spherical aberration-corrected transmission electron microscopy.
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[1] L. Marks. Experimental studies of small particle structures , 1994 .
[2] M. Haider,et al. Correction of the spherical aberration of a 200 kV TEM by means of a hexapole-corrector , 1995 .
[3] N. Tanaka,et al. Beryllium Oxide Specimen Supporting Films for High Resolution Electron Microscopy and Their Application to the Observation of Fine Gold Particles , 1976 .
[4] P. Batson. Characterizing probe performance in the aberration corrected STEM. , 2006, Ultramicroscopy.
[5] O. L. Krivanek,et al. Sub-ångstrom resolution using aberration corrected electron optics , 2002, Nature.
[6] J Ringnalda,et al. Breaking the spherical and chromatic aberration barrier in transmission electron microscopy. , 2005, Ultramicroscopy.
[7] J. Silcox,et al. Full recovery of electron damage in glass at ambient temperatures. , 2006, Physical review letters.
[8] A. Petford-Long,et al. Dynamic Atomic-Level Rearrangements in Small Gold Particles , 1986, Science.
[9] H. W. Hartog,et al. Radiation damage of NaCl: dose rate effects , 1985 .
[10] D. Cockayne,et al. A study of the relationship between lattice fringes and lattice planes in electron microscope images of crystals containing defects , 1971 .
[11] P. Batson. Motion of Gold Atoms on Carbon in the Aberration-Corrected STEM , 2007, Microscopy and Microanalysis.
[12] L. Hobbs. Application of Transmission Electron Microscopy to Radiation Damage in Ceramics , 1979 .
[13] N. Tanaka. Present status and future prospects of spherical aberration corrected TEM/STEM for study of nanomaterials∗ , 2008, Science and technology of advanced materials.
[14] J. Wagner,et al. Aberration corrected and monochromated environmental transmission electron microscopy: Challenges and prospects for materials science , 2010 .
[15] S. Iijima. Electron Microscopy of Small Particles , 1985 .