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可再生能源系

叶丁丁

2018-03-29 11:01  点击:[]

[中文版]

姓名

叶丁丁

性别

所在部门

新能源系

职称

教授

职务

联系电话

023-65103102

邮箱

dingdingye@cqu.edu.cn

 

*个人简介:

2009年获澳门大学动力工程及工程热物理专业工学博士学位。2016年受国家留学基金委的资助作为访问学者赴加拿大多伦多大学进行为期一年的访问研究。作为项目负责人承担了国家自然科学基金青年基金1项、面上项目2项、澳门自然科学基金项目1项、澳门留创计划创新类优秀项目1项、中央高校基本科研业务费2项,并参与国家自然科学基金多项。在国内外学术刊物及学术会议上发表研究论文70余篇,其中SCI收录50余篇、EI收录20篇,合作申请发明专利20余项,已授权发明专利8项。

入选澳门英才计划青年拔尖人才、澳门大学科研后备拔尖人才培育计划(青年人才)。国家自然科学基金评审专家、中国博士后科学基金评审专家;《Biosensors and Bioelectronics》优秀审稿人Journal of Power Sources》、《Applied Energy》、《Electrochimica Acta》、《International Journal of Hydrogen Energy》、《International Journal of Thermal Sciences》、《Biochemical Engineering Journal》等国际期刊审稿人。

 

教育经历:

2004-2009    澳门大学动力工程学院  博士

2000-2004    澳门大学动力工程学院  学士

*研究方向:

1.        能源与环境技术中的关键热物理问题

2.        燃料电池与传输现象

3.        微尺度传输理论及微能源系统

4.        新能源技术及新能源动力装置系统

招收以上及相关方向动力工程及工程热物理专业博士、硕士研究生,欢迎报考!

 

研究生培养:

毕业硕士研究生8人,博士研究生2人(副导师)。

       所培养的学生获国家奖学金、唐立新奖学金等15人次。

 

科研项目:

1.        国家自然科学基金面上项目,62万,2018-2021,负责人

2.        国家自然科学基金面上项目,80万,2014-2017,负责人

3.        国家自然科学基金青年基金,20万,2011-2013,负责人

4.        澳门留学人员回国创业创新支持计划创新类优秀项目,8万,2019-2020,负责人

5.        澳门自然科学基金,5万,2011-2014,负责人

6.        澳门大学2017年度科研后备拔尖人才培育计划(青年人才),40万,2018-2020,负责人

7.        中央高校基本科研业务费工程学部重点项目,20万,2014-2016,负责人

8.        中央高校基本科研业务费自然科学类项目,7.5万,2011-2012,负责人

获奖情况:

1.        2018年度高等学校科学研究优秀成果奖(科学技术)自然科学一等奖(排名第九)

2.        2016年度澳门大学优秀青年教师

3.        2012年澳门科学技术奖自然科学奖二等奖(排名第五)

4.        2011年中国工程热物理学会传热传质学术会议青年优秀论文二等奖

5.        2010年澳门优秀博士学位论文

6.        2010年澳门大学优秀博士学位论文

 

*发表论文:

国际期刊论文:

[1]      Zhenfei Liu, Dingding Ye*, Rong Chen, Biao Zhang, Xun Zhu, Qiang Liao. A dual-functional three-dimensional herringbone-like electrode for a membraneless microfluidic fuel cell. Journal of Power Sources, 2019, 438: 227058.

[2]      Xin Chen, Rong Chen*, Xun Zhu, Qiang Liao, Yuxin Zhang, Dingding Ye*, Biao Zhang, Youxu Yu, Jinwang Li. A solar responsive cubic nanosized CuS/Cu2O/Cu photocathode with enhanced photoelectrochemical activity. Journal of Catalysis, 2019, 372: 182-192.

[3]      ZHANG Biao, WANG HaoNan, ZHU Xun*, YE DingDing*, LIAO Qiang, SUI PangChieh, DJILALI Ned, JIANG Li, FU YaLu. Effect of geometrical configurations on alkaline air-breathing membraneless microfluidic fuel cells with cylinder anodes. SCIENCE CHINA Technological Sciences, 2019, 62(3):388-396.

[4]      Zhenfei Liu, Dingding Ye*, Rong Chen, Biao Zhang, Xun Zhu*, Jun Li, Qiang Liao. A woven thread-based microfluidic fuel cell with graphite rod electrodes. International Journal of Hydrogen Energy, 2018, 43(9): 22467-22473.

[5]      Dingding Ye*, Pengqing Zhang, Xun Zhu*, Yang Yang, Jun Li, Qian Fu, Rong Chen, Qiang Liao, Biao Zhang. Electricity generation of a laminar-flow microbial fuel cell without any additional power supply. RSC Advances. 2018, 8(59), 33637-33641.

[6]      Yang Yang, Dingding Ye, Xun Zhu*, Qiang Liao, Jun Li, Rong Chen. Boosting power density of microfluidic biofuel cell with porous three-dimensional graphene@nickel foam as flow-through anode. International Journal of Hydrogen Energy, 2018, 43(39), 18516-18520.

[7]      Yang Yang, Tianyu Liu, Qiang Liao, Dingding Ye*, Xun Zhu, Jun Li, Pengqing Zhang, Yi Peng, Shaowei Chen, Yat Li**. A three-dimensional nitrogen-doped graphene aerogel-activated carbon composite catalyst that enables low-cost microfluidic microbial fuel cells with superior performance. Journal of Material Chemistry A. 2016, 4(41), 15913-15919. (IF=8.867) 封底文章

[8]      Dingding Ye*, Bowen Deng, Jun Li, Wentian Zou, Chuan Ke, Zhi Yuan, Xun Zhu, Qiang Liao. Electricity production of a microbial fuel cell stack integrated in a sink drain pipe. Research on Chemical Intermediates. 2016, 42(11): 7689-7700. (IF=1.369)

[9]      Yang Yang, Dingding Ye (co-first author), Jun Li, Xun Zhu*, Qiang Liao, Biao Zhang. Microfluidic microbial fuel cells: from membrane to membrane free. Journal of Power Sources, 2016, 324: 113-125. (IF=6.395)

[10]  Yang Yang, Tianyu Liu, Xun Zhu*, Feng Zhang, Dingding Ye, Qiang Liao, Yat Li*. Boosting power density of microbial fuel cells with 3D nitrogen-doped graphene aerogel electrode. Advanced Science. 2016, 3(8),1600097. (IF=9.034)

[11]  Yang Yang, Dingding Ye*, Qiang Liao**, Pengqing Zhang, Xun Zhu, Jun Li, Qian Fu. Enhanced biofilm distribution and cell performance of microfluidic microbial fuel cells with multiple anolyte inlets. Biosensors and Bioelectronics. 2016, 79: 406-410.  (IF=7.78)

[12]  Dingding Ye, Yang Yang, Jun Li, Xun Zhu, Qiang Liao*, Biao Zhang. A laminar flow microfluidic fuel cell for detection of hexavalent chromium concentration. Biomicrofluidics. 2015, 9(6): 064110. (IF=2.535)

[13]  Biao Zhang, Ding-ding Ye*, Jun Li, Xun Zhu, Qiang Liao. Air-breathing microfluidic fuel cells with a cylinder anode operating in acidic and alkaline media. Electrochimica Acta. 2015, 177: 264-269. (IF=4.798)

[14]  Yang Yang, Dingding Ye*, Jun Li, Xun Zhu, Qiang Liao, Biao Zhang. Biofilm distribution and performance of microfluidic microbial fuel cells with different microchannel geometries. International Journal of Hydrogen Energy. 2015, 40(35): 11983-11988. (IF=3.582)

[15]  Ding-Ding Ye, Biao Zhang, Xun Zhu*, Pang-Chieh Sui, Ned Djilali, Qiang Liao, Computational modeling of alkaline air-breathing microfluidic fuel cells with an array of cylinder anodes, Journal of Power Sources, 2015, 288: 150-159. (IF=6.395)

[16]  Dingding Ye, Pu Jin, Jun Li, Xun Zhu, Qiang Liao. Effect of inert particle concentration on the operation of a microbial fuel cell. International Journal of Hydrogen Energy, 2014, 39(33): 19355-19360.

[17]  Dingding Ye, Yang Yang, Jun Li, Xun Zhu*, Qiang Liao, Bowen Deng, Rong Chen. Performance of a microfluidic microbial fuel cell based on graphite electrodes. International Journal of Hydrogen Energy, 2013, 38(35): 15710-15715.

[18]  Dingding Ye, Xun Zhu, Qiang Liao, Jun Li, Qian Fu. Two-dimensional two-phase mass transport model for methanol and water crossover in air-breathing direct methanol fuel cells. Journal of Power Sources, 2009, 192(2): 502-514.

[19]  Biao Zhang, Ding-ding Ye, Pang-Chieh Sui, Ned Djilali, Xun Zhu*. Computational modeling of air-breathing microfluidic fuel cells with flow-over and flow-through anodes. Journal of Power Sources, 2014, 259: 15-24.

[20]  Biao Zhang, Dingding Ye, Jun Li, Xun Zhu*, Qiang Liao. Electrodeposition of Pd catalyst layer on graphite rod electrodes for direct formic acid oxidation. Journal of Power Sources, 2012, 214: 277-284.

[21]  Jun Li, Ding-ding Ye, Xun Zhu, Qiang Liao, Yu-dong Ding, Xin Tian. Effect of wettability of anode microporous layer on performance and operation duration of passive air breathing direct methanol fuel cells. Journal of Applied Electrochemistry, 2009, 39(10):1771-1778.

部分发明专利:

1.         叶丁丁,吴锐,朱恂,张彪,陈蓉,李俊,付乾,张亮,廖强. 一种基于棉线的被动式微流体燃料电池. 专利号:ZL 201710675613.9. 授权公告日:2019-08-30.

2.         叶丁丁, 杨扬, 李俊, 朱恂, 廖强, 王宏, 陈蓉, 王永忠, 丁玉栋. 基于石墨电极的无膜微流体微生物电池. 专利号:ZL201310081648.1.授权公告日:2015-04-08.

3.         叶丁丁, 张彪, 李俊, 朱恂, 廖强, 王宏, 王永忠, 丁玉栋, 陈蓉. 曲面电极催化剂层制备方法. 专利号:ZL 201110221227.5. 授权公告日:2013-11-06.

4.         叶丁丁,张彪,朱恂,李俊,廖强,王宏,陈蓉,王永忠,丁玉栋. 容积式三维阳极催化的自呼吸微流体燃料电池. 专利号:ZL201110181457.3. 授权公告日:2013-08-07.

 


 

[English version]

Dingding Ye received her PhD degree (2009) in Engineering Thermophysics from Chongqing University, China. Now she is a professor at Chongqing University. Prof. Dingding Ye has been to the University of Toronto in Canada for a year of research supported by China Scholarship Council. As a project leader, she has undertaken 3 research projects supported by the National Natural Science Fundation of China and 1 research project supported by the Natural Science Foundation of Chongqing. Besides, Prof. Ye is the communication evaluation expert of National Natural Science Fundation of China and China Postdoctoral Science Foundation, reviewer of national and international journals "Biosensors and Bioelectronics", "Applied Energy", "Journal of Power Sources", "Electrochimica Acta", "International Journal of Hydrogen Energy", "International Journal of Thermal Sciences", "Biochemical Engineering Journal", "Journal of Engineering Thermophysics", etc.

Her research mainly focuses on key issues about thermal physics in energy and environmental technology, fuel cell and transport phenomena, microscale transmission theory and micro energy system, new energy technology and new energy power equipment system.

 

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