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复旦大学信息科学与工程学院导师教师师资介绍简介-胡来归

本站小编 Free考研考试/2021-01-10

胡来归
微纳系统中心
职称:副研究员
职务:
电子邮件:laiguihu@fudan.edu.cn
办公地点:遗传楼313室
电话:
课题组主页:





研究兴趣
学术任职
获奖情况
学习工作经历
授课情况
代表性论文或专著


柔性光电子材料与器件;
有机铁电材料与器件;
有机光电子学;
二维材料与器件。



2016年----上海市浦江人才计划
2010年----浙江省钱江人才计划


2015.7至今 复旦大学信息学院微纳系统中心
2011.5 至2014.3 日本名古屋大学物质科学研究中心 博士后
2007.11至2010.4 日本名古屋大学化学系 博士后
2006.6至于2015.6 浙江工业大学应用物理系 讲师 副教授
2001.9 至2006.6 浙江大学物理系 博士
1997.9 至2001.7 浙江大学物理系 学士


《柔性电子器件》,硕士课程
《Energy Efficient Embedded Electronics》,工程硕士课程
《电子系统导论》,本科生课程

Selected publications:
1. Self-assembled non-volatile micro memory arrays of molecular ferroelectrics, Journal of Materials Chemistry C, 2020, 8:16742-16748. (Back cover, Corresponding author, 一区论文)
2. Direct laser writing of vertical junctions in graphene oxide films for broad spectral position-sensitive detectors, Nanophotonics, 2018, 7(9): 1563-1570.(Corresponding author, 一区论文)
3. Space-Charge-Stabilized Ferroelectric Polarization in Self-Oriented Croconic Acid Films, Advanced Functional Materials, 2018, 28:**. (1st & corresponding author, 一区论文)
4. Organic semiconductor/water interfaces for photoelectrical viscosity sensing, Electrochemistry Communications, 2018, 95:18-22. (Corresponding author, 一区论文)
5. Competing mechanisms for photocurrent induced at the monolayer–multilayer graphene junction”, Small, 2018, **. (一区论文)
6. Intrinsic excitonic emission and valley Zeeman splitting in epitaxial MS2 (M = Mo and W) monolayers on hexagonal boron nitride, Nano research (2018). https://doi.org/10.1007/s12274-018-2142-5 (一区论文)
7. Laser-scribed highly responsive infrared detectors with semi-reduced graphene oxide, 2018 Appl. Phys. Express, 11, 015101. (Corresponding author)
8. Photovoltage Reversal in Organic Optoelectronic Devices with Insulator-Semiconductor Interfaces, Materials, 2018, 11:1530 (Corresponding author)
9. Extending the Spectral Responsivity of MoS2 Phototransistors by Incorporating Up-Conversion Microcrystals, Adv. Optical Mater. 2018, ** (一区论文)
10. Anti-Stokes Photoluminescence of van der Waals Layered Semiconductor PbI2, Adv. Optical Mater. 2017, 5:** (一区论文)
11. Organic optoelectronic interfaces with anomalous transient photocurrent, Journal of Material Chemistry C 2015, 3:22-5135. (Review paper) (1st & corresponding author, 一区论文)
12. Storage of an electric field for photocurrent generation in ferroelectric-functionalized organic devices. Nature Communications, 2014, 5:3279. (1st & corresponding author, (一区论文)
13. Photocurrent Generation in Organic Photodetectors with Tailor-Made Active Layers Fabricated by Layer-by-Layer Deposition, ACS Applied Materials & Interfaces 2015, 7(13):7049-7053. (一区论文)
14. Interactive Radical Dimers in Photoconductive Organic Thin Films, Angew. Chem. Int. Ed., 2009, 48:4022-4024. (HOT PAPER, 一区论文)
154. Factors Affecting the Stability and Performance of Ionic Liquid-Based Planar Transient Photodetectors,Langmuir, 2015, 31(18):5235-5243.
16. Utilizing Photocurrent Transients for Dithiolene-Based Photodetection: Stepwise Improvements at Communications Relevant Wavelengths, Journal of the American Chemical Society, 2012, 134(30):12742-12750. (一区论文)
17. Effect of photoinduced charge displacement on organic optoelectronic conversion,Physical Review B,2011, 84(20):205329. (1st & corresponding author)
18. Optoelectronic Conversion by Polarization Current, Triggered bySpace Charges at Organic-based Interfaces, Applied Physics Letters, 2010, 96:243303. (1st & corresponding author)
19. Structuralchanges in soot particles induced by diode laser irradiation, Carbon, 2006, 44, 1725. (1st author, 一区论文)







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