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最小化 最大化

姓名:王慧如

籍贯:山东济宁

目前年级:博士后

电子邮箱:hw918716@ohio.edu

教育及工作背景:

2023.08~至今                  中国科学院化学研究所            博士后

2017.09~2023.08             俄亥俄大学                          博士

2014.09~2017.01             北京科技大学                        硕士

2010.09~2014.06             武汉理工大学                     学士

研究方向:有机金属框架材料,离子传输,金属腐蚀与防护

发表论文:

1. Wang L1, Wang H1, Seyeux A, Zanna S, Pailleret A, Nesic S & Marcus P*. “Adsorption mechanism of quaternary ammonium corrosion inhibitor on carbon steel surface using ToF SIMS and XPS”, Corrosion Science, 213 (2023).

2. Wang H, Sharma S, Pailleret A*, Brown B & Nesic S*. “Investigation of corrosion inhibitor adsorption on mica and mild steel using electrochemical atomic force microscopy and molecular simulations”, Corrosion journal, 78 (2022).

3. Wang H, Du C*, Liu Z, Wang L, Ding D. “Effect of alternating current on the cathodic protection and interface structure of X80 steel”, Materials, 10 (2017) 851. (IF= 3.623)

4. Wang H, Brown B, Pailleret A & Nesic S, “Effect of Inhibitor Concentration on the Adsorption and Inhibition Mechanism for Mica and Carbon Steel Studied by In Situ Atomic Force Microscopy”, AMPP 2023, #19200.

5. Wang H, Brown B, Pailleret A & Nesic S, “In Situ Atomic Force Microscopy Study of Microstructure Dependent Inhibitor Adsorption Mechanism on Carbon Steel”, AMPP 2022, #17739.

6. Wang H, Brown B, Pailleret A & Nesic S, “Investigation of Inhibitor Adsorption Mechanism by in Situ Tapping Mode Atomic Force Microscopy”, AMPP 2021, #16610.

7. Wang H, Brown B, Pailleret A & Nesic S, “Investigation of Organic Inhibitor on Mild Steel using In Situ Atomic Force Microscopy and Electrochemical Measurement”, NACE 2020, #14792.