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北京理工大学化学与化工学院研究生导师白羽介绍如下:
姓名:白羽
性别:女
出生年月:1982年12月
职务职称:准聘教授/博导
电子邮箱:baiyu@bit.edu.cn
研究方向:主要从事电化学与新能源材料领域的研究,在关键纳米电催化剂材料设计和制备、新型光伏器件、纳米界面特性及电化学过程研究等方面有多年的研究工作积累。
学习与工作简历:
2017 年03月-至今 北京理工大学,准聘教授、博士生导师
2015 年03月-2015年08月 多伦多大学,访问学者
2013 年01月-2017年02 月 哈尔滨工业大学,教授、博士生导师
2012 年02月-2012年12 月 哈尔滨工业大学,副教授
2006 年09月-2012年01 月 中国科学院长春应用化学研究所,博士
2002 年09月-2006年08 月 哈尔滨工业大学,学士
主要成果:文章发表在 Nature Materials、J. Am. Chem. Soc.、Chem. Commun.、
Chem. Rev.等国际知名期刊,文章总引用 2500 余次。研究工作被 Nature、Chem.
&Eng. News、Chemistry World、Nature China、Nature Chemistry、NPG Asia Materials 和 MIT Technology Review 评述。研究成果入选“中国百篇最具影响优秀国际学术论文”。
发表论文:
1.Y. Bai, Y. Cao, J. Zhang, M. Wang, R. Li, P. Wang,* S. M. Zakeeruddin and M.Grätzel* High-performance dye-sensitized solar cells based on solvent-free electrolytes produced from eutectic melts. Nat. Mater., 2008, 7, 626.
2.Y. Bai, J. Zhang, D. Zhou, Y. Wang, M. Zhang, and P. Wang* Engineering of organic sensitizers for iodine-free dye-sensitized solar cells: a red-shifted current response concomitant with an attenuated charge recombination.J. Am. Chem. Soc., 2011, 133, 11442.
3.Y. Bai, Q. Yu, N. Cai, Y. Wang, M. Zhang and P. Wang* High-efficiency organic
dye-sensitized mesoscopic solar cells with a copper redox shuttle.Chem. Commun., 2011, 47, 4376.
4.Y. Bai, J. Zhang, Y. Wang, M. Zhang and P. Wang* Lithium modulated conduction band edge shifts and charge-transfer dynamics in dye-sensitized solar cells based on a dicyanamideionic liquid. Langmuir, 2011, 27, 4749.
5.Y. Bai, I. Mora-Seró, F. De-Angelis, J. Bisquert, P. Wang* Titanium dioxide nanomaterials for photovoltaic applications. Chem. Rev., 2014, 114, 10095.
6.L. Sun, Y. Bai,* K. Sun* Organic molecule controlled synthesis of three-dimensional rhododendra-like cobalt sulfide hierarchitectures as counter electrodes for dye-sensitized solar cells. RSC Adv., 2014, 4, 42087.
7.L.Sun, Y. Bai,* N. Zhang, K. Sun* The facile preparation of a cobalt disulfide-reduced graphene oxide composite film as an efficient counter electrode for dye-sensitized solar cells. Chem. Commun., 2015, 51, 1846.
8.Y.Bai, Z. Liu, N. Zhang,* K. Sun,* One-pot synthesis of 3-D dandelion-like architectures constructed by rutile TiO2 nanorods grown along [001] axis for high-rate lithium ion batteries. RSC Adv., 2015, 5, 21285.
9.G. Zhang, Y. Bai, R. Li, D. Shi, S. Wenger, S. M. Zakeeruddin, M.Grätzel and P. Wang,* Employ the bisthienothiophen linker to construct an organic chromophore for efficient and stable dye-sensitized solar cells. Energy Environ. Sci., 2009, 2, 92.
10.Y. Cao, Y. Bai, Q. Yu, Y. Cheng, S. Liu, D. Shi, F. Gaoand Peng Wang,* Dye-sensitized solar cells with a high absorptivity ruthenium sensitizer featuring a 2-(hexylthio)thiophene conjugated bipyridine. J. Phys. Chem. C, 2009, 113, 6290.
11.D. Zhou, Y. Bai, J. Zhang, N. Cai, Y. Wang, M. Zhang and P. Wang,* Anion effects in organic dye-sensitized mesoscopic solar cells with ionic liquid electrolytes: tetracyanoborate versus dicyanamide. J. Phys. Chem. C, 2011, 115, 816.
12.Y. Cao, J. Zhang,Y. Bai, R. Li, S. M. Zakeeruddin, M.Grätzel, and P. Wang,* Dye-sensitized solar cells with solvent-free ionic liquid electrolytes. J. Phys. Chem. C, 2008, 112, 13775.
13.W. Zeng, Y. Cao, Y. Bai, Y. Wang, Y. Shi, M. Zhang, C. Pan and P. Wang,* Efficient dye-sensitized solar cells with an organic photosensitizer featuring orderly conjugated ethylenedioxythiophene and dithienosiloleblocks. Chem. Mater., 2010. 22, 1916.
14.M. Zhang, J. Zhang, Y. Bai, Y. Wang, M. Su, P. Wang,* Anion-correlated conduction band edge shifts and charge transfer kinetics in dye-sensitized solar cells with ionic liquid electrolytes. Phys. Chem. Chem. Phys., 2011, 13, 3788.
15.L. Sun, L. Lu, Y. Bai,K. Sun,* Three-dimensional porous reduced graphene oxide/sphere-like CoS hierarchical architecture composite as efficient counter electrodes for dye-sensitized solar cells. J. Alloy. Compd., 2016,654, 196.
16.D. Zhou, Q. Yu, N. Cai, Y. Bai, Y. Wang, P. Wang,* Efficient organic dye-sensitized thin-film solar cells based on the tris(1,10-phenanthroline)cobalt(II/III) redox shuttle. Energy Environ. Sci., 2011, 4, 2030.
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