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1983年出生,江苏南通人。东南大学副教授,博士生导师,仲英青年学者,国家自然科学基金通讯评审专家。2011年博士毕业于东南大学材料学院,师从中国工程院院士孙伟教授。主要研究方向为混凝土中钢筋的腐蚀行为与腐蚀机理表征。第一/通讯作者发表SCI论文50篇,EI论文17篇。
担任Corrosion Science, Cementand Concrete Composites, Electrochimica Acta, Progress in Organic Coatings, Composites Part B, Journal ofMaterials in Civil Engineering (ASCE), Construction and Building Materials, Journalof Cleaner Production,建筑材料学报,复合材料学报等40余个国内外学术期刊的论文评审专家。
[1] 国家自然科学青年基金“钢筋-混凝土界面区缺陷对钢筋腐蚀行为的影响与修复方法研究(51208098)” 2013/01-2015/12,结题。
[2] 国家自然科学面上基金“海洋环境下低合金钢筋在碱激发矿渣混凝土中的耐腐蚀性与腐蚀机理(51678144)” 2017/01-2020/12,结题。
[3] 江苏省自然科学基金面上项目“碱激发胶凝材料中耐腐蚀钢筋的电化学行为与腐蚀产物研究(BK 20161420)” 2016/07-2019/06,结题。
发表SCI论文41篇(一作兼通讯27篇,唯一通讯14篇),EI论文17篇(一作15篇,通讯2篇),一作与通讯SCI论文累计影响因子IF> 200,Google他引500余次,H因子18。
代表性论文:
[1] Shi Jinjie*, Wu Miao, Ming Jing. Long-term corrosionresistance of reinforcing steel in alkali-activated slag mortar exposure tomarine environments. Corrosion Science, 2021, 179, 109175.(IF=7.205)
[2] Shi Jinjie*, Li Man, Wu Miao, Ming Jing. Role of red mud innatural passivation and chloride-induced depassivation of reinforcing steels inalkaline concrete pore solutions. Corrosion Science, 2021, 190, 109669.(IF=7.205)
[3] Shi Jinjie*, Zou Yiqing, Ming Jing, Wu Miao. Effect of DC straycurrent on electrochemical behavior of low-carbon steel and 10%Cr steel insaturated Ca(OH)2 solution. Corrosion Science, 2020, 169,108610. (IF=7.205)
[4] Shi Jinjie*, Ming Jing, Wang Danqian, Wu Miao. Improvedcorrosion resistance of a new 6% Cr steel in simulated concrete pore solutioncontaminated by chlorides. Corrosion Science, 2020, 174, 108851.(IF=7.205)
[5] Shi Jinjie*, Wu Miao, Ming Jing. Degradation effect ofcarbonation on electrochemical behavior of 2304 duplex stainless steel insimulated concrete pore solutions. Corrosion Science, 2020, 177, 109006. (IF=7.205)
[6] Shi Jinjie*, Ming Jing, Sun Wei. Electrochemicalperformance of reinforcing steel in alkali-activated slag extract in thepresence of chlorides. Corrosion Science, 2018, 133:288-299. (IF=7.205)
[7] Shi Jinjie*, Ming Jing, Wu Miao. Passivation and corrosionbehavior of 2304 duplex stainless steel in alkali-activated slag materials. Cementand Concrete Composites, 2020, 108, 103532. (IF=7.586)
[8] Shi Jinjie*, Ming Jing, Wu Miao. Electrochemical behavior andcorrosion products of Cr-modified reinforcing steels in saturated Ca(OH)2solution with chlorides. Cement and Concrete Composites, 2020,110, 103587. (IF=7.586)
[9] Shi Jinjie*, Ming Jing, Zhang Yamei, Jiang Jinyang. Corrosionproducts and corrosion-induced cracks of low-alloy steel and low-carbon steelin concrete. Cement and Concrete Composites, 2018, 88: 121-129. (IF=7.586)
[10] Shi Jinjie*, Ming Jing, Sun Wei. Electrochemical behaviour ofa novel alloy steel in alkali-activated slag mortars. Cement and Concrete Composites,2018, 92: 110-124. (IF=7.586)
[11] Wu Miao, ShiJinjie*. Beneficial and detrimental impacts of molybdate on corrosionresistance of steels in alkaline concrete pore solution with high chloridecontamination. Corrosion Science, 2021, 183, 109326. (IF=7.205)
[12] Wu Miao, Ma Haifeng, Shi Jinjie*. Beneficial and detrimental effects of molybdateas an inhibitor on reinforcing steels in saturated Ca(OH)2 solution:Spontaneous passivation. Cement and Concrete Composites, 2021,116, 103887. (IF=7.586)
[13] Ming Jing, Wu Miao, Shi Jinjie*. Passivefilm modification by concrete carbonation: Re-visiting a corrosion-resistantsteel with Cr and Mo. Cementand Concrete Composites, 2021,123, 104178. (IF=7.586)
[14] Wang Danqian, Ming Jing, Shi Jinjie*. Enhanced corrosion resistanceof rebar in carbonated concrete pore solutions by Na2HPO4and benzotriazole.Corrosion Science, 2020, 174, 108830. (IF=7.205)
[15] Wu Miao, Ma Haifeng, Shi Jinjie*. Enhanced corrosion resistance of reinforcingsteels in simulated concrete pore solution with low molybdate to chlorideratios. Cement and Concrete Composites, 2020, 110, 103589. (IF=7.586)
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