The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy
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my.utm.479002017-08-14T00:52:59Z http://eprints.utm.my/id/eprint/47900/ The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy Aryanto, Didik Othaman, Zulkafli Ismail, Abd. Khamim QH Natural history 2013 Article PeerReviewed Aryanto, Didik and Othaman, Zulkafli and Ismail, Abd. Khamim (2013) The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy. Journal of Theoretical and Applied Physics, 7 (27). pp. 1-6. ISSN 2251-7235 |
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QH Natural history Aryanto, Didik Othaman, Zulkafli Ismail, Abd. Khamim The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy |
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Article |
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Aryanto, Didik Othaman, Zulkafli Ismail, Abd. Khamim |
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Aryanto, Didik Othaman, Zulkafli Ismail, Abd. Khamim |
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Aryanto, Didik |
title |
The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy |
title_short |
The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy |
title_full |
The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy |
title_fullStr |
The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy |
title_full_unstemmed |
The impact of ASH3 overflow time and indium composition on the formation of self-assembleINXGAa1 − xas quantum dots studied by atomic force microscopy |
title_sort |
impact of ash3 overflow time and indium composition on the formation of self-assembleinxgaa1 − xas quantum dots studied by atomic force microscopy |
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2013 |
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http://eprints.utm.my/id/eprint/47900/ |
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1643652402820153344 |