纺织学院

张坤研究员

 

    

    张坤,研究员,2014年博士毕业于得克萨斯理工大学工业工程专业,2015年在得克萨斯农工大学从事博士后研究,2016年受聘东华大学纺织学院特聘研究员/博士生导师,201710月受聘纺织工程系主任。主持国家自然科学基金面上/青年项目、上海市自然科学基金面上项目、企业技术开发项目等项目18项,作为项目骨干参与国家重点研发青年科学家项目,承担科研经费800余万元。获得第三届中科协青年人才托举工程、国际先进材料协会科学家奖章和会士等荣誉称号。共发表学术论文70余篇,其中以通讯作者在Energy & Environmental Science, Advanced Energy Materials, Advanced Functional Materials, Materials Today Physics发表学术论文40余篇被引3500余次,H指数27。授权专利5项,参编中英文专著/教材5本。担任《Chin. Chem. Lett.》、《纺织高校基础科学学报》青年编委及《Reviews on Advanced Materials Science》、《东华大学学报(英文版)》编委。担任新加坡ICMAT国际会议等分会主席(6次)、欧洲International E-Textiles Conference指导委员会委员、中纺学青委会委员、中纺学电子纺织材料与制品科研基地主任。

 

研究方向:

1、低维热电纳米材料的热电输运性质

2、热电纤维/织物/服装

3、基于人工智能的多模态柔性传感阵列

4、碳基电化学储能纤维及织物 

荣誉及获奖情况:

1. 2017年中科协青年人才托举工程2017

2. 国际先进材料协会会士(Fellow of IAAM),2023

3. 国际先进材料协会科学家奖章(IAAM Scientist Medal),2023

4. Wiley期刊Energy & Environmental Materials 年度最佳论文,2020

5. Wiley中国开放科学高贡献作者奖,2023

6.《东华大学学报(英文版)2023年度优秀编委,2023

7. 美国MRS 秋季会议最佳海报提名奖,指导教师,2019

8.《纺织高校基础科学学报》优秀青年编委,2023/2024

9. 中国SAMPE学会轻质复合材料桥梁竞赛,第一名,2009

其他

1. 2020年度中国纺织工程学会纺织优秀硕士学位论文奖,指导教师,2020

2. 2019年全国大学生挑战杯三等奖,指导教师,2019

3. 2019年上海大学生挑战杯特等奖,指导教师,2019

4. “创青春上海市大学生创业大赛铜奖,指导教师,2019

5. 上海市青少年陈嘉庚发明奖二等奖,指导教师,2019

6. 上海科创杯二等奖,2009 

近年来承担的主要科研项目:

1、能量过滤对多重有机/无机异质结纳米线热电输运性质的作用机理研究,国家自然科学基金面上项目,2020-2023,主持

2PEDOT纳米线复合薄膜的构筑及其热电功率因子增强机制研究,国家自然科学基金青年科学基金项目,2017-2019,主持

3、体温调控与发电一体化的热电纤维织物,科技部国家重点研发青年科学家项,2023-2026,骨干参与单位

4、无机半导体/碳纳米管皮芯结构的界面调控对其柔性高有序热电纱线的热电输运性能研究,上海市自然科学基金面上项目,2023-2026,主持

5、控温服装研究,企业技术研发项目,2024-2025,主持

近年来发表的代表性论著、专利:

论文

1. Yuanyuan Jing, Jun Luo, Xue Han, Jiawei Yang, Qiulin Liu, Yuanyuan Zheng, Xinyi Chen, Fuli Huang, Qinliang Zhuang, Yanan Shen, Haisheng Chen, Huaizhou Zhao*, G. Jeffrey Snyder, Guodong Li*, Ting Zhang*, Kun Zhang*, Scalable manufacturing of a durable, tailorable, and recyclable multifunctional woven thermoelectric textile system, Energy & Environmental Science, 2023, 16, 4334-4344.     

2. Yuanyuan Zheng, Xue Han, Jiawei Yang, Yuanyuan Jing, Xinyi Chen, Qianqian Li, Ting Zhang, Guodong Li*, Hangtian Zhu, Huaizhou Zhao, G. Jeffrey Snyder, Kun Zhang*, Durable, stretchable and washable inorganic-based woven thermoelectric textiles for power generation and solid-state cooling, Energy & Environmental Science, 2022, 15, 2374-2385 (Inside Back Cover).

3. Yuanyuan Zheng, Qihao Zhang, Wenlong Jin, Xinyi Chen, Yuanyuan Jing, Xue Han, Qinye Bao, Yanping Liu, Xinhou Wang, Shiren Wang, Yiping Qiu, Chong-an Di*, Kun Zhang*, Carbon nanotube yarn based thermoelectric textiles for harvesting thermal energy and powering electronics, Journal of Materials Chemistry A, 2020,8, 2984-2994 (Inside Back Cover, JMCA HOT paper).

4. Minzhi Du, Yue Wen, Zhijun Chen, Yichen Xu, Jie Qin, Hanlin Cheng*, Yong Du*, Kun Zhang*, Sunmi Shin, Jianyong Ouyang*, A polymer film with very high Seebeck coefficient and overall thermoelectric properties by secondary doping, dedoping engineering and ionic energy filtering, Advanced Functional Materials 2024, 2411815.

5. Juan Zhang, Wenwen Liu, Minzhi Du, Qingli Xu, Henry Hung, Ruifang Xiang, Meng Liao, Xinhou Wang*, Bingjie Wang*, Aiping Yu*, Kun Zhang*, Kinetic investigation of energy storage process in graphene fiber supercapacitors: unraveling mechanisms, fabrications, property manipulation, and wearable applications, Carbon Energy, 2024, e625.     

6. Juan Zhang, Rui Gao, Xiaona Yang, Qianyi Ma, Haoze Zhang, Weinan Zhao, Qingli Xu, Aixi Pan, Xinyi Chen, Jian Wang, Ning Chen, Xinhou Wang*, Aiping Yu*, Kun Zhang*, Nanoconfined and chemically bonded MnO@Mn2O3 heterojunctions within carbon nanotubes for fiberous supercapacitor with ultra-long cycle stability, Advanced Functional Materials, 2025, 2418734.

7. Qingli Xu#, Haoyin Zhong#, Qi Zhang, Ting Xiong, Junchen Yu, Chao Wu, Shibo Xi, Zhigen Yu, Mengjuan Zhou, Xiaona Yang, Xiaopeng Wang, Kun Zhang*, Wee Siang Vincent Lee*, Junmin Xue*, Concomitant mitigation of VO6 octahedron distortion and band broadening in V2O3 for high-performing flexible supercapacitors, Advanced Functional Materials, 2024, 2406595  .

8. Qingli Xu, Jiusi Chen, Jiong Rui Loh, Haoyin Zhong, Kun Zhang*, Lee Wee Siang Vincent*, Junmin Xue*Fiber-shaped batteries towards high performance and perspectives of corresponding integrated powerful textiles, Advanced Energy Materials, 2023, 2302536.     

9. Xue Han, Xiao Yang, Zhen Sun, Minzhi Du, Yong Du*, Ting Zhang*, Kun Zhang*, A general design framework of flexible thermoelectric devices bridging power requirements for wearable electronics, Materials Today Physics, 2024, 46, 101530.   

10. Xinyi Chen, Wen Shi, Kun Zhang*,Observation of energy-dependent carrier scattering in conducting polymer nanowires blends for enhanced thermoelectric performance, ACS Applied Materials & Interfaces, 2020, 12(30), 34451-34461.     

著作

1. Kun Zhang*, Yuanyuan Zheng, Xinyi Chen, Xue Han, Minzhi Du, Xinzhi Hu, Liming Wang, Jilong Wang and Chunhong Lu, Chapter 9: Flexible Organic-based Thermoelectric Devices, Organic Thermoelectric Materials, Editor: Dr. Zhiqun Lin, Dr. Ming He, RSC, Print ISBN:978-1-78801-470-0.

2. Xinyi Chen, Xue Han, Yuanyuan Zheng, Yuanyuan Jing, Kun Zhang*, Chapter 7: Low-dimensional Thermoelectric Materials, Flexible Thermoelectric Materials and Systems, Editor: Dr. Jianyong Ouyang, Wiley, 2022, ISBN: 9781119550723

3. Yuanyuan Zheng, Chunhong Lu, Minzhi Du, Jilong Wang, Kun Zhang*, Chapter 3 Wearable power generation via thermoelectric textile, Low-Grade Thermal Energy Harvesting: Advances in Materials, Devices, and Emerging Applications, Editor: Dr. Shiren Wang, Elsevier, 2022, ISBN: 9780128236901

专利

1、一种皮芯型多孔石墨烯纤维与超级电容器的制备方法,CN201810204242.0,张坤、孟洁

2、一种真空热电管,ZL201810385856.3  ,张坤、陈馨逸

3、一种无机热电材料基柔性热电转换器件,ZL201810386975.0  ,张坤、韩雪

4、一种石墨烯基串联线状超级电容器的制备方法,ZL201810204410.6张坤,张娟

主要学术兼职:

1. 学术期刊青年编委:Chinese Chemical Letters,纺织高校基础科学学报

2. 学术期刊编委:Reviews on Advanced Materials Science (Section Editor),东华大学学报(英文版)

3. 中国纺织工程学会青委会委员

4. 中国纺织工程学会“电子纺织材料与制品”科研基地,主任

5. 欧洲E-Textiles International Conference指导委员会委员

国际交流与合作:

美国、英国、新加坡、日本、加拿大、中国等高校及研究所等保持长期合作与交流

联系电话:021-67792672           E-MAILkun.zhang@dhu.edu.cn


关于东华大学

东华大学是教育部直属、国家“211工程”、国家“双一流”建设高校。学校秉承“崇德博学、砺志尚实”的校训,不断开拓奋进,
已发展成为以纺织、材料、设计为优势,特色鲜明的多科性、高水平大学。

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