Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites
碩士 === 國立高雄科技大學 === 化學工程與材料工程系 === 107 === In this study, the synthesis of magnesium hydroxide nanorods Mg(OH)2 on the surface of graphene oxide (GO) with Ethylenediamine was studied by Solvothermal process. And the synthesized product (Mg(OH)2 nanorods/GO, MG) is further functionalized with ethylen...
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ndltd-TW-107NKUS00630572019-11-30T17:21:56Z http://ndltd.ncl.edu.tw/handle/942755 Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites 功能性氫氧化鎂奈米柱/氧化石墨烯複合材料之防腐蝕性能研究 SU, TZU-CHI 蘇子其 碩士 國立高雄科技大學 化學工程與材料工程系 107 In this study, the synthesis of magnesium hydroxide nanorods Mg(OH)2 on the surface of graphene oxide (GO) with Ethylenediamine was studied by Solvothermal process. And the synthesized product (Mg(OH)2 nanorods/GO, MG) is further functionalized with ethylenediamine (FMG) and finally dispersed in a specific proportion in the epoxy resin primer. It was coated on the test steel plate from Q-PANEL, and the corrosion resistance effect was verified by Tafel curve. From the results, when the doping amount of FMG30 and 50 increased to 2 wt%, the corrosion rate decreased sharply from 1.4*10-2 mm/year of undoped FMG to 9.77*10-4 and 8.96*10-4 mm/year, and the corrosion rate of FMG10 reached 1.14*10-3 mm/year when the doping amount reached 2 wt%. From the conclusion, the doping of the FMG series can effectively improve the corrosion resistance. KAO, LI-HENG 高立衡 2019 學位論文 ; thesis 63 zh-TW |
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碩士 === 國立高雄科技大學 === 化學工程與材料工程系 === 107 === In this study, the synthesis of magnesium hydroxide nanorods Mg(OH)2 on the surface of graphene oxide (GO) with Ethylenediamine was studied by Solvothermal process. And the synthesized product (Mg(OH)2 nanorods/GO, MG) is further functionalized with ethylenediamine (FMG) and finally dispersed in a specific proportion in the epoxy resin primer. It was coated on the test steel plate from Q-PANEL, and the corrosion resistance effect was verified by Tafel curve. From the results, when the doping amount of FMG30 and 50 increased to 2 wt%, the corrosion rate decreased sharply from 1.4*10-2 mm/year of undoped FMG to 9.77*10-4 and 8.96*10-4 mm/year, and the corrosion rate of FMG10 reached 1.14*10-3 mm/year when the doping amount reached 2 wt%. From the conclusion, the doping of the FMG series can effectively improve the corrosion resistance.
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author2 |
KAO, LI-HENG |
author_facet |
KAO, LI-HENG SU, TZU-CHI 蘇子其 |
author |
SU, TZU-CHI 蘇子其 |
spellingShingle |
SU, TZU-CHI 蘇子其 Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites |
author_sort |
SU, TZU-CHI |
title |
Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites |
title_short |
Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites |
title_full |
Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites |
title_fullStr |
Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites |
title_full_unstemmed |
Study on Anti-corrosion Performance of Functional Magnesium Hydroxide Nanorods/Graphene Oxide Nanocomposites |
title_sort |
study on anti-corrosion performance of functional magnesium hydroxide nanorods/graphene oxide nanocomposites |
publishDate |
2019 |
url |
http://ndltd.ncl.edu.tw/handle/942755 |
work_keys_str_mv |
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