SCHOOL OF CHEMICAL ENGINEERING

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副教授

张翠娟

现任职称/职务:副教授,硕导
通讯地址:天津大学化工学院50楼
电子邮箱:cjzhang@tju.edu.cn
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论著专利:



Xin Yong, Cuijuan Zhang*, Miao Wei, Pingping Xie, Yongdan Li*. Promotion of the performance of Cu-SSZ-13 for selective catalytic reduction of NOx by ammonia in the presence of SO2 during high temperature hydrothermal aging. Journal of Catalysis, 2020, https://doi.org/10.1016/j.jcat.2020.06.041

Pingping Xie, Xin Yong, Miao Wei, Yongdan Li, Cuijuan Zhang*. High performance catalysts BaCoO3-CeO2 prepared by the one-pot method for NO direct decomposition. ChemCatChem, 2020, https://doi.org/10.1002/cctc.202000701 (Cover Feature)

Jiashu Yuan, Cuijuan Zhang*, Tao Liu, Yihan Zhen, Zhen-Ze Pan, Yongdan Li*. Two-dimensional metal-organic framework nanosheets-modified porous separator for non-aqueous redox flow batteries. Journal of Membrane Science, 2020, 612, 118463.

Cuijuan Zhang, Kevin Huang*. A comprehensive review on the development of solid-state metal-air batteries operated on oxide-ion chemistry. Advanced Energy Materials, 2020, 2000630.

Lili Pan, Qingqing Wang, Yongdan Li, Cuijuan Zhang*. Amorphous cobalt-cerium binary metal oxides as high performance electrocatalyst for oxygen evolution reaction. Journal of Catalysis, 2020, 384, 14-21.

Yihan Zhen, Cuijuan Zhang*, Jiashu Yuan, Yicheng Zhao, Yongdan Li*. A high-performance all-iron non-aqueous redox flow battery. Journal of Power Sources, 2020, 445, 227331.

Jiashu Yuan, Cuijuan Zhang*, Yihan Zhen, Yicheng Zhao, Yongdan Li*. Enhancing the performance of an all-organic non-aqueous redox flow battery. Journal of Power Sources, 2019, 443, 227283

Yuhan Ma, Huawang Zhao, Cuijuan Zhang*, Yingnan Zhao, Hong Chen, Yongdan Li*. Enhanced hydrothermal  stability of Cu-SSZ-13 catalytic reduction of nitrogen oxides with ammonia. Catalysis Today,  doi: 10.1016/j.cattod.2019.03.057.


Cuijuan Zhang*, Xinyue Zhang, Katelynn Daly, Curtis P. Berlinguette, Simon Trudel*. Water oxidation catalysis: Tuning the electrocatalytic properties of amorphous lanthanum cobaltite through calcium doping. ACS Catalysis, 2017, 7, 6385-6391.

Cuijuan Zhang*, Kevin Huang*. MOF-derived iron as an active energy storage material for intermediate-temperature solid oxide iron-air redox batteries. Chemical Communications, 2017, 53, 10564-10567.

 Cuijuan Zhang, Kevin Huang*. A new composite cathode for intermediate temperature solid oxide fuel cells with zirconia-based electrolytes. Journal of Power Sources, 2017, 342, 419-426.

Cuijuan Zhang, Chengxiang Ji, Wensheng Wang, Doug Schmidt, Xinfang Jin, John P. Lemmon, Kevin Huang*. A dynamic solid oxide fuel cell empowered by the built-in iron-bed solid fuel. Energy Environmental Science, 2016, 9, 3746-3753.

Cuijuan Zhang, Kevin Huang*. An intermediate-temperature solid oxide iron–air redox battery operated on O2--chemistry and loaded with Pd-catalyzed iron-based energy storage material. ACS Energy Letters, 2016, 1, 1206-1211.

 Cuijuan Zhang, Curtis P. Berlinguette, Simon Trudel*. Water oxidation catalysis: An amorphous quaternary Ba-Sr-Co-Fe oxide as a promising electrocatalyst for the oxygen evolution reaction. Chemical Communications, 2016, 52, 1513-1516.

Cuijuan Zhang, Min Chen, Scott C. Paulson, Richard G. Rateick Jr., Viola I. Birss*. New insights into the early stages of thermal oxidation of carbon/carbon composites using electrochemical methods. Carbon, 2016, 108, 178-189.

 Cuijuan Zhang, Randal D. Fagan, Rodney D. L. Smith, Stephanie A. Moore, Curtis P. Berlinguette, Simon Trudel*. Mapping the performance of amorphous ternary metal oxide water oxidation catalysts containing aluminum. Journal of Materials Chemistry A, 2015, 3, 756-761.

 Cuijuan Zhang, Hailei Zhao*. A novel cobalt-free cathode material for proton-conducting solid oxide fuel cells. Journal of Materials Chemistry, 2012, 22, 18387-18394.

 https://s2.sci-hub.org.cn/citations?user=lBE1R7IAAAAJ&hl=zh-TW&oi=ao