1 |
Silicon epitaxy epitaxy on H-terminated Si (100) surfaces at 250 degrees C Deng X, Namboodiri P, Li K, Wang XQ, Stan G, Myers AF, Cheng XB, Li TB, Silver RM Applied Surface Science, 378, 301, 2016 |
2 |
Silver nanometer-scale thin films by electroless deposition on insulating surfaces activated by gold nanoparticles Inberg A, Livshits P, Zalevsky Z, Levi M, Shacham-Diamand Y Electrochimica Acta, 113, 792, 2013 |
3 |
Growth of epitaxially oriented Ag nanoislands on air-oxidized Si(111)-(7 x 7) surfaces: Influence of short-range order on the substrate Roy A, Bhattacharjee K, Ghatak J, Dev BN Applied Surface Science, 258(7), 2255, 2012 |
4 |
Precipitation of gold nanoparticles on insulating surfaces for metallic ultra-thin film electroless deposition assistance Livshits P, Inberg A, Shacham-Diamand Y, Malka D, Fleger Y, Zalevsky Z Applied Surface Science, 258(19), 7503, 2012 |
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Growth of oriented Ag nanocrystals on air-oxidized Si surfaces: An in-situ reflection high energy electron diffraction study Roy A, Bhattacharjee K, Dash JK, Dev BN Thin Solid Films, 520(2), 853, 2011 |
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Growth of oriented crystalline Ag nanoislands on air-exposed Si(001) surfaces Roy A, Bhattacharjee K, Dash JK, Dev BN Applied Surface Science, 256(2), 361, 2009 |
7 |
Comparative study of self-assembled ZnO nanostructures in polystyrene-acrylic acid) diblock copolymers - [PS](m)/[PAA](n) - on Si and SiO2/Si surfaces Ali HA, Iliadis AA Thin Solid Films, 469-470, 425, 2004 |
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STM Investigation of Nano-structures Fabricated on Passivated Si Surfaces Ha JS, Park KH, Park KW, Yun WS Korean Journal of Chemical Engineering, 20(1), 169, 2003 |
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Non-radiative recombination at reconstructed Si surfaces Dittrich T, Bitzer T, Rada T, Timoshenko VY, Rappich J Solid-State Electronics, 46(11), 1863, 2002 |
10 |
Characterization of low-temperature wafer bonding by infrared spectroscopy Milekhin A, Friedrich M, Hiller K, Wierner M, Gessner T, Zahn DRT Journal of Vacuum Science & Technology B, 18(3), 1392, 2000 |