教育经历:
2002-2006:加拿大多伦多大学 博士
工作经历:
2016-至今:上海交通大学材料科学与工程学院金属基复合材料国家重点实验室 双聘副教授
2013-至今:上海交通大学交大密西根学院 副教授
2011-2013:美国德克萨斯农机大学 助理教授
2008-2011:加拿大瑞尔森大学 副研究员
2007.4-2007.8:瑞士苏黎世联邦理工学院(ETH) 博士后
2006-2007:加拿大多伦多大学 博士后
·M. Eslamian, Inorganic and Organic Solution-Processed Thin Film Devices, Nano-Micro Letters. 2016, DOI: 10.1007/s40820-016-0106-4.
·M. Ahmadian-Yazdi, F. Zabihi, M. Habibi, M. Eslamian, Effects of Process Parameters on Characteristics of Mixed-Halide Perovskite Solar Cells Fabricated by Single-Step and Two-step Sequential Coating, Nanoscale Research Letters, 11 (2016) 408.
·M. Habibi, F. Zabihi, M.R. Ahmadian-Yazdi, M. Eslamian, Progress in Emerging Solution-Processed Thin Film Solar Cells- Part II: Perovskite Solar Cells, Renewable & Sustainable Energy Reviews, 62 (2016) 1012-1031.
·F. Zabihi, M. Ahmadian-Yazdi, M. Eslamian, Fundamental Study on the Fabrication of Planar Perovskite Solar Cells using Two-Step Sequential Substrate Vibration-Assisted Spray Coating (2S-SVASC), Nanoscale Research Letters, 11 (2016) 71.
·M. Habibi, A. Rahimzadeh, M. Eslamian, On Dewetting of Thin Films due to Crystallization (Crystallization Dewetting), European Physical Journal E, 39 (2016) 30.
·Q. Wang, M. Eslamian, Improving Uniformity and Nanostructure of Solution-Processed Thin Films using Ultrasonic Substrate Vibration Post Treatment (SVPT), Ultrasonics, 67 (2016) 55-64.
·Q. Wang, Y. Xie, F. Soltani-Kordshuli, M. Eslamian, Progress in Emerging Solution-Processed Thin Film Solar Cells- Part I: Polymer Solar Cells, Renewable & Sustainable Energy Reviews, 56 (2016) 347-361.
·M. Habibi, M. Eslamian, F. Soltani-Kordshuli, F. Zabihi, Controlled Wetting/Dewetting Through Substrate Vibration-Assisted Spray Coating (SVASC), Journal of Coatings Technology and Research, 13 (2016) 211-225.
·M. Eslamian, F. Zabihi, Ultrasonic Substrate Vibration-Assisted Drop Casting (SVADC) for the Fabrication of Photovoltaic Solar Cell Arrays and Thin-Film Devices, Nanoscale Research Letters 10 (2015) 462.
·Q. Wang, M-R. Ahmadian-Yazdi, M. Eslamian, Investigation of Morphology and Physical Properties of Modified PEDOT: PSS Films via In-Situ Grafting Method, Synthetic Metals, 209 (2015) 521-527.