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葛振华

更新日期:2019-09-02

              

葛振华

教授

博士

研究方向

热电材料,光催化材料,纳米材料的化学合成

通讯地址

云南省昆明市五华区学府路253号太阳成集团tyc234cc古天乐材料大楼333

联系电话


电子邮箱

ggzhh@qq.com

个人简介

葛振华,男,新疆兵团奎屯人,20131月在北京科技大学获得材料科学与工程专业工学博士学位,20132-20147月在美国南佛罗里达大学物理系从事博士后研究,20147月至20156月在南方科技大学物理系从事博士后研究,20157月太阳成集团tyc234cc古天乐第四层次人才引进,进入太阳成集团tyc234cc官网工作。20168月破格晋升为教授。2017年入选云南省学术和技术带头人后备人才和云岭英才计划云岭青年人才。2018年被遴选为博士研究生导师。截止目前,在Science, Joule, Nature Comm., Adv. Mater., J.   Am. Chem. Soc., EES, Adv. Energy Mater. Adv. Funct. Mater., Mater. Today,等期刊发表SCI收录论文170余篇,论文被引次数5500余次(google scholar),H影响因子40。获授权国家发明专利20余项,出版学术专著3部,指导硕士研究生12人,指导博士生4人,已毕业博士生1人,硕士生14人。

在研项目

1.太阳成集团tyc234cc古天乐高层次引进人才经费,120万,2015.1-2020.12,结题。

2.国家自然科学基金项目(51501086):Cu9S5基热电材料的制备及性能增强机理研究,23万,2016.1-2018.12 (主持),已结题。

3.国家自然科学基金项目(11764025):硫化铋基热电材料的晶界调控及输运性质研究,40万,2018.1-2021.12 (主持),在研。

4.国家自然科学基金项目(52162029):高性能铜硫基热电材料铜离子长程迁移的多尺度抑制机理研究,36.5万,2022.1-2025.12 (主持),在研。

5.云南省云岭青年人才后续支持项目,金属硫化物热电材料的制备和性能研究,100万,2019.1-2024.1 (主持),在研。

6.云南省专家工作站,90万,2020.1-2023.12 (主持),结题。

7.云南省应用基础研究重点项目,高性能硒化锡基热电材料的制备及性能研究,50万,2021.6-2024.6 (主持),在研。

8.云南省应用基础研究杰出青年项目,硫化物热电材料的制备及性能研究,50万,2022.6-2025.6 (主持),在研。

9.国家重点研发计划子课题,太阳抵近探测中的热防护技术研究,106万,2022.12-2027.11 (主持),在研。

10.云南中烟委托,快速热响应二维柔性加热器件研发,58万,2022.1-2022.12,(主持),结题。

11.云南中烟委托,新功能BOPP薄膜的研发,73万,2023.6-2024.6,(主持),在研。

科研成果

Selected Paper list (update to May 2024)

1. Dongrui   Liu, Dongyang Wang, Tao Hong, Ziyuan Wang, Yuping Wang, Yongxin Qin, Lizhong   Su, Tianyu Yang, Xiang Gao, Zhenhua Ge, Bingchao Qin*, Li-Dong   Zhao*, Lattice plainification   advances highly effective SnSe crystalline thermoelectricsScience, 380 (2023) 841-846.

2. Yongxin Qin, Bingchao Qin, Tao Hong, Xiao   Zhang, Dongyang Wang, Dongrui Liu, Zi-Yuan Wang, Lizong Su, Sining Wang,   Xiang Gao, Zhen-Hua Ge,   Li-Dong Zhao. Grid-plainification enables medium-temperature PbSe   thermoelectrics to cool better than Bi2Te3. Science, 2024, 383(6688):1204-1209.

3. Zhen-Hua Ge*,   Yi-Xin Zhang, Tian-Yu Yang, Dongsheng He, Yu Xiao, Hao Lai, Ying Wang,   Jiushuai Deng, Jing-Feng LI, Jing Feng*, Jiaqing He*, Li-Dong Zhao*. Highly   stabilized thermoelectric performance in natural minerals. Joule, 2024, 8(1).

4. Yi-Xin Zhang, Qin-Yuan Huang, Xi Yan,   Chong-Yu Wang, Tian-Yu Yang, Zi-Yuan Wang, Yong-Cai Shi, Quan Shan, Jing   Feng, Zhen-Hua Ge*. Synergistically   optimized electron and phonon transport in high-performance copper sulfides   thermoelectric materials via one-pot modulation. Nature Communications, 2024, 15(1):2736.

5. Yong-Cai Shi, Jianmin Yang, Yu Wang,   Zu-Gang Li, Tian-Yu Zhong, Zhen-Hua   Ge*, Jing Feng*, Jiaqing He*. Highly effective solid solution towards   high thermoelectric and mechanical performance in Bi-Sb-Te alloys via Trojan   doping. Energy & Environmental Science,   2024, 17(6):2326-2335.

6. Tian-Yu Yang, Shi-Wei Gu, Yi-Xin Zhang,   Fengshan Zheng, Deli Kong, Rafal E. Dunin-Borkowski, Di Wu, Zhen-Hua Ge*, Jing Feng*, Lei   Jin*. Pseudopolymorphic Phase Engineering for Improved Thermoelectric   Performance in Copper Sulfides. Advanced Materials,   2024, 36(7).

7. Zhen-Hua Ge*, Wen-Jie Li,   Jing Feng, Fengshan Zheng, Chun-Lin Jia, Di Wu,* and Lei Jin*Atomic-Scale Observation of Off-Centering Rattlers in Filled   Skutterudites, Adv. Energy Mater. 2022,   2103770

8. Lu-Yao   Lou, Jianmin Yang, Yu-Ke Zhu, Hao Liang, Yi-Xin Zhang, Jing Feng, Jiaqing He,   Zhen-Hua Ge,* and Li-Dong Zhao*, Tunable Electrical Conductivity and   Simultaneously Enhanced   Thermoelectric and Mechanical Properties in n-type Bi2Te3, Adv. Sci. (2022) 2203250.

9. Jun Guo, Jianmin Yang, Zhen-Hua Ge*,   Binbin Jiang, Yang Qiu, Yu-Ke Zhu, Xiao Wang, Ju Rong, Xiaohua Yu*, Jing   Feng*, and Jiaqing He*, Realizing High Thermoelectric Performance in   Earth-Abundant Bi2S3 Bulk Materials via Halogen Acid   Modulation, Adv. Funct. Mater., (2021)   2102838.

10. Yi-Xin   Zhang, Qing Lou, Zhen-Hua Ge , Shi-Wei Gu , Jun-Xuan Yang, Jun Guo, Yu-Ke Zhu,   Ying Zhou, Xiao-Hua Yu, Jing Feng, , Jiaqing He,Excellent thermoelectric   properties and stability realized in copper sulfides based composites via   complex nanostructuring, Acta Mater.,   233 (2022) 117972.

11. Yu-Ke Zhu, Jun Guo, Yi-Xin Zhang, Jian-Feng   Cai, Lin Chen, Hao Liang, Shi-Wei Gu, Jing Feng , Zhen-Hua Ge*,   Ultralow   lattice thermal conductivity and enhanced power generation efficiency   realized in Bi2Te2.7Se0.3/Bi2S3   nanocomposites, Acta Materiallia,   218 (2021) 117230.

12. J. Guo, Y.-X. Zhang, Z.-Y. Wang, F. Zheng, Z.-H.   Ge*, J. Fu and J. Feng, High   thermoelectric properties realized in earth-abundant Bi2S3   bulk via carrier modulation and multi-nano-precipitates synergy, Nano Energy, 78 (2020) 105227.

13. Z.-H. Ge, D. Song, X. Chong, F. Zheng, L. Jin, X.   Qian, L. Zheng, R. E. Dunin-Borkowski, Peng Qin, Jing Feng*, Li-Dong   Zhao*,   Boosting the thermoelectric performance of (Na, K)   co-doped polycrystalline SnSe by synergistic tailoring of the band structure and   atomic-scale defect phonon scattering, J.   Am. Chem. Soc. 139 (2017) 9714-9720.

14. Z.-H. Ge, X. Y. Liu, D. Feng, J. Y. Lin and J.Q.   He*, High Performance Thermoelectricity in Nanostructured Earth-abundant   Copper Sulfides Bulk materials, Adv. Energy   Mater. (2016) 1600607.

15. Z.-H. Ge, L. D. Zhao, D. Wu, B. P. Zhang, J. F. Li,   J. Q. He*, Low cost, abundant binary sulfides as promising   thermoelectric, Mater. Today,   19 (2016) 227-239.

16. Z.-H. Ge, Y. Qiu, Y.-X. Chen, X. Chong, J.   Feng, Z. Liu, and J. He, Multipoint   Defect Synergy Realizing the Excellent Thermoelectric   Performance of n-Type Polycrystalline SnSe via Re Doping, Adv. Funct. Mater. (2019) 1902893.




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