童锐博士

作者: 时间:2020-09-18 点击数:

姓名:童锐

性别:男

职称:讲师

学历学位:博士研究生

/博士生导师:硕士生导师

研究方向:光电子能源材料与器件/(光)电催化

电话:

E-mailruitong@huat.edu.cn

 

个人简介

教育经历:

12017/08-2020/06,澳门大学,应用物理与材料工程专业,博士,导师:潘晖。

22014/09-2017/06,湖北大学,凝聚态物理专业,硕士,导师:王喜娜。

32010/09-2014/06,西安科技大学,高分子材料与工程专业,学士。

 

 

工作经历:

12020/09-至今,湖北汽车工业学院理学院,教师。

 

 

学术兼职:

 

 

教学情况

主讲或参与讲授的本科生及研究生课程情况

科技英语

 

 

 

研究课题

主持或参加科研项目情况

1、国家自然科学基金,新型全氧化物复合纳米结构光阳极的制备、光解水性能与界面动力学研究,2015/01参与

2、湖北省自然科学基金杰青项目,高效率低成本太阳能制氢催化剂的合成及性能研究,2017/01参与

3Science and Technology Development Fund from Macau SARElectrochemical reduction of N2 to ammonia using      MXenes as catalysts2019/12参与

4Science and Technology Development Fund from Macau SAR, Development      and industrialization of core technology and device for highly efficient      indoor air purification, 2019/12参与

5Multi-year research grant from the University of MacauExperimental and theoretical investigation on electrical      energy storage by nanosacle carbon-based supercapacitors2017/08参与

6Multi-year research grant from the University of MacauOxide perovskite solar cell designed by first-principles      calculations and fabricated by pulsed laser deposition2019/01参与

7Multi-year research grant from the University of MacauInvestigation of the chemical and physical properties of 2D      monolayers for their applications in electrolysis of water2018/01参与

 

 

获奖及专利

1. 童锐,王喜娜,周小龙,王浩, TiO2/BiVO4光阳极材料及其制备方法, 发明型, 专利号:      201510364684.8.

2. 童锐,王喜娜,王浩,周小龙,肖凌峰,郑铮,一种NiCoP纳米线电催化电极的制备方法, 发明型,

专利号: 201610296319.2.

3. 王喜娜,童锐,周小龙,汪汉斌,彭小牛,王浩, 三电极反应器及其应用, 发明型,专利号: 201610163606.6.

4. 王喜娜,童锐,王浩,周小龙,肖凌峰,郑铮,一种改善电催化产氢性能的表面处理方法, 发明型,

专利号: 201610315618.6.

5. 王喜娜,童锐,许扬,周小龙, 汪汉斌, 王浩,三电极反应器,实用型,专利号: CN201620220683.6.

 

 

主要论文及著作

1、第一作者及通讯作者文章:

1. Tong,      R.; Wang, X.; Zhou, X.; Liu, Q.; Wang, H.; Peng, X.; Liu, X.;      Zhang, Z.; Wang, H.; Lund, P. D. Cobalt-Phosphate modified TiO2/BiVO4      nanoarrays photoanode for efficient water splitting. International      Journal of Hydrogen Energy, 2017, 42 (8), 5496-5504. (JCR二区,IF = 4.084)

2. Wang,      X.; Tong, R.; Wang, Y.; Tao, H.; Zhang, Z.; Wang, H. Surface      Roughening of Nickel Cobalt Phosphide Nanowire Arrays/Ni Foam for      Enhanced Hydrogen Evolution Activity. ACS Applied Materials &      Interfaces, 2016, 8 (50), 34270-34279. (JCR一区,IF = 8.456)

3. Tong, R.; Sun, Z.; Wang, X.; Wang, S.; Pan, H.      Network-Like Ni1-xMox Nanosheets: Multi-Functional      Electrodes for Overall Water Splitting and Supercapacitor. ChemElectroChem,      2019, 6 (5), 1338-1343. (cover paperJCR三区IF = 3.975)

4. Tong, R.; Sun, Z.; Zhong, X.; Wang, X.; Xu, J.; Yang,      Y.; Xu, B.; Wang, S.; Pan, H. Enhancement of Visible-Light Photocatalytic      Hydrogen Production by CeCO3OH in g-C3N4/CeO2      System. ChemCatChem, 2019, 11 (3), 1069-1075. (JCR二区,IF = 4.495)

5. Tong, R.; Sun, Z.; Zhang, F.; Wang, X.; Xu, J.;      Shi, X.; Wang, S.; Pan, H. N and V Coincorporated Ni Nanosheets for      Enhanced Hydrogen Evolution Reaction. ACS Sustainable Chemistry &      Engineering, 2018, 6 (12), 16525-16531. (JCR一区,IF = 6.970)

6. Tong, R.; Sun, Z.; Wang, X.; Wang, S.; Pan, H.      Ultrafine WC1-x Nanocrystals: An Efficient Cocatalyst for the      Significant Enhancement of Photocatalytic Hydrogen Evolution on g-C3N4.      The Journal of Physical Chemistry C, 2019, 123 (43), 26136-26144. (JCR二区,IF = 4.309)

7. Tong, R.; Sun, Z.; Wang, X.; Yang, L.; Zhai, J.;      Wang, S.; Pan, H. Ni-Mo Nanosheet as High-Efficiency Co-catalyst for      Enhancing the Photocatalytic Hydrogen Production of g-C3N4.      International Journal of Hydrogen Energy, 2017, 42 (8), 5496-5504. (JCR二区IF = 4.084)

8. Tong, R.; Qu, Y.; Zhu, Q.; Wang, X.; Lu, Y.; Wang,      S.; Pan, H. Combined experimental and theoretical assessment on WXy      (X=C, N, S, P) for hydrogen evolution reaction. ACS Applied Energy Materials,      2019. (JCR二区,IF = 4.437)

 

2. 其它论文

1. Shi, J.; Tong,      R.; Zhou, X.; Gong, Y.; Zhang, Z.; Ji, Q.; Zhang, Y.; Fang, Q.; Gu,      L.; Wang, X.; Liu, Z.; Zhang, Y. Temperature-Mediated Selective Growth of      MoS2/WS2 and WS2/MoS2 Vertical      Stacks on Au Foils for Direct Photocatalytic Applications. Advanced      Materials, 2016, 28 (48), 10664-10672. (JCR一区,IF = 25.809)

2. Xie, L.; Tong,      R.; Zhang, W.; Wang, D.; Liu, T.; Li, Q.; Peng, X.; Wang, X.      MoFe-Codoped Ni3S2/Ni(OH)2 Nanosheets      with Large Sample Size toward High-Performance Oxygen Evolution. Energy      Technology, 2019, 7 (9), 1801053. (JCR二区,IF = 3.163)

3. Zhou, X.; Wang,      X.; Tong, R.; Xiao, L.; Zheng, Z.; Peng, X.; Wang, H.; Wang, H.      ZnO/CdS nanorod arrays decorated by layered double hydroxides for      efficient solar water oxidation. International Journal of Energy      Research, 2017, 41 (12), 1781-1789. (JCR二区,IF = 3.343)

4. Ying, Z.; Yang,      X.; Tong, R.; Zhu, Q.; Chen, T.; He, Z.; Pan, H. Enhancing the      Efficiency and Stability of NiOx-Based Silicon Photoanode via      Interfacial Engineering. ACS Applied Energy Materials, 2019, 2      (9), 6883-6890. (JCR二区,IF = 4.437)

5. Wang,      X.; Xu, Y.; Tong, R.; Zhou, X.; Li, Q.; Wang, H. Compositional      effects and optical properties of CdSeXTe1-X      alloyed nanotube arrays. CrystEngComm, 2015, 17 (4), 960-966. (JCR二区,IF = 3.382)

6. Zhu, Q.; Yao, L.; Tong,      R.; Liu, D.; Ng, K. W.; Pan, H. Cobalt/titanium nitride@N-doped      carbon hybrids for enhanced electrocatalytic hydrogen evolution and      supercapacitance. New Journal of Chemistry, 2019, 43 (36),      14518-14526. (JCR三区,IF      = 3.069)

7. Liu, Q.; Wang,      H.; Wang, X.; Tong, R.; Zhou, X.; Peng, X.; Wang, H.; Tao, H.;      Zhang, Z. Bifunctional Ni1-xFex layered double hydroxides/Ni      foam electrodes for high-efficient overall water splitting: A study on      compositional tuning and valence state evolution. International      Journal of Hydrogen Energy, 2017, 42 (8), 5560-5568. (JCR二区,IF = 4.084)

8. Shao, M.; Shao,      Y.; Ding, S.; Tong, R.; Zhong, X.; Yao, L.; Ip, W. F.; Xu, B.;      Shi, X. Q.; Sun, Y.-Y.; Wang, X.; Pan, H. Carbonized MoS2:      Super-Active Co-Catalyst for Highly Efficient Water Splitting on CdS. ACS      Sustainable Chemistry & Engineering, 2019, 7 (4), 4220-4229. (JCR二区,IF = 6.970)

9. Shao, M.; Shao,      Y.; Chen, W.; Ao, K. L.; Tong, R.; Zhu, Q.; Chan, I. N.; Ip, W.      F.; Shi, X.; Pan, H. Efficient nitrogen fixation to ammonia on MXenes. Physical      Chemistry Chemical Physics, 2018, 20 (21), 14504-14512. (JCR二区,IF = 3.567)

 

 

 

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