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张耀辉

发布时间:2020年06月28日 14:11    作者:    来源:     点击率:

学科:动力工程及工程热物理

出生年月: 1993.11                                                            

最高学位:  工学博士

专业技术职务:副教授

政治面貌:   中共党员

电子信箱: zhangyaohui@nuc.edu.cn

通讯地址(邮编):山西省太原市学院路3号,bet体育365官网正规(030051)


简历:

2019.06-至今,中北大学,bet体育365官网正规,讲师

2014.09-2019.06,太原理工大学,材料科学与工程,工学博士

2010.09-2014.06,武汉工程大学,材料成型及控制工程,工学学士


研究方向:

1. 高性能二次电池负极材料的研发

2. 金属硫化物作为钠离子电池负极材料的机理研究


科研项目:主持山西省自然科学基金(青年)1项


期刊论文:

1. YaoHui Zhang*, Nana Wang, Zhongchao Bai*. The progress of Cobalt-based anode materials for lithium ion batteries and sodium ion batteries. Applied Science, 2020, 10(9): 3098.

2. YaoHui Zhang, Nana Wang, Zhenxiao Lu, Pan Xue, Yuanlin Liu, YanJun Zhai, Bin Tang, Meiqing Guo*, Lin Qin, Zhongchao Bai*. Hierarchical Assembly and Superior Lithium/Sodium Storage Properties of a Flowerlike C/SnS@C Nanocomposite. Electrochimica Acta, 2019, 296, 891-900.

3. Yaohui Zhang, Nana Wang, Pan Xue, Yuanlin Liu, Bin Tang, Zhongchao Bai*, Shixue Dou. Co9S8@carbon nanospheres as high-performance anodes for sodium ion battery. Chemical Engineering Journal, 2018, 343: 512-519.

4. Yaohui Zhang, Nana Wang, Changhui Sun, Zhenxiao Lu, Pan Xue, Bin Tang,Zhongchao Bai*, Shixue Dou. 3D spongy CoS2 nanoparticles/carbon composite as high-performance anode material for lithium/sodium ion batteries. Chemical Engineering Journal, 2018, 332: 370-376.

5. Yaohui Zhang, Chunli Guo, Bin Tang, Xiaomin Wang, Zhongchao Bai*. Porous ZnMn2O4 nanowires as an advanced anode material for lithium ion battery. Electrochimica Acta, 2015, 182: 1140–1144.

6. Yaohui Zhang, Zhenxiao Lu, Meiqing Guo, Zhongchao Bai*, Bin Tang. Porous CoC2O4 Nanorods as High Performance Anode Material for Lithium Ion Batteries. JOM, 2016, 68(11): 2952-2957.

7. Zhongchao Bai*, Zhang yaohui, Zhang yuwen, Guo chunli, Tang bin, Sun di. MOFs-derived porous Mn2O3 as high-performance anode material for Li-ion battery. Journal of Materials Chemistry, A, 2015,3(10): 5266-5269.

8. Zhongchao Bai*; Zhang yaohui; Zhang yuwen; Guo chunli; Tang bin. Hierarchical MoS2@carbon microspheres as advanced anodes for Li-ion batteries. Chemistry-A European Journal, 2015, 21(50): 18187-18191.
9. Xue Pan, Wang NaNa, Wang Yunxiao, Zhang Yaohui, Liu Yuanlin, Tang Bin, Bai Zhongchao*, Dou Shixue. Nanoconfined SnS in 3D interconnected microporous carbon as durable anodes for lithium/sodium ion batteries. Carbon, 2018, 134:222-231.
10. Lu Zhenxiao, Wang NaNa, Zhang Yaohui, Xue Pan, Guo Meiqing, Tang Bin, Bai Zhongchao*, Dou Shixue*. Pyrite FeS2@C nanorods as smart cathode for sodium ion battery with ultra-long lifespan and notable rate performance from tunable pseudocapacitance. Electrochimica Acta, 2018, 260: 755-761.
11. Lu Zhenxiao, Wang NaNa, Zhang Yaohui, Xue Pan, Guo Meiqing, Tang Bin, Xun Xu, Wenxian Wang, Bai Zhongchao*, Dou Shixue*. Metal–Organic Framework-Derived Sea-Cucumber-like FeS2@C Nanorods with Outstanding Pseudocapacitive Na-Ion Storage Properties. ACS Applied Energy Materials, 2018, 1(11): 6234-6241.
12. Bai Zhongchao*, Zhang Yuwen, Zhang Yaohui, Guo Chunli, Tang Bin. A large-scale, green route to synthesize of leaf-like mesoporous CuO as high-performance anode materials for lithium ion batteries. Electrochimica Acta, 2015, 159: 29-34.

13. Zhenxiao Lu, Yanjun Zhai, Nana Wang, Yaohui Zhang, Pan Xue, Meiqing Guo, Bin Tang, Di Huang*, Wenxian Wang*, Zhongchao Bai*, Shixue Dou. FeS2 nanoparticles embedded in N/S co-doped porous carbon fibers as anode for sodium ion batteries. Chemical Engineering Journal, 2020, 380: 122455.


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