学习工作经历
2010.09-2014.06,山东大学,应用化学专业,攻读学士学位
2014.09-2016.06,山东大学,材料学专业,攻读硕士学位
2016.09-2019.06,山东大学,材料学专业,攻读博士学位
2019.09-至今,山东建筑大学材料科学与工程学院,(目前)讲师
研究领域
1. 催化材料的设计与制备,及其在太阳能转换为化学能,电能转换为化学能方面的性质研究;
2. 二维材料(氮化硼,二硫化钨,二硫化钼,氮化碳,石墨烯)的制备及应用研究。
学术成果
1.科研奖励
国家自然科学基金、52002226、激光辐照诱导二维过渡金属硫化物材料中的缺陷产生,物理机制及其应用,2021/01-2023/12,24万元,在研,主持。
2.主要学术专著/论文
[1] Yueyao Zhong, Gang Zhao, Fukun Ma, Yongzhong Wu, Xiaopeng Hao. Utilizing photocorrosion-recrystallization to prepare a highly stable and efficient CdS/WS2 nanocomposite photocatalyst for hydrogen evolution. Applied Catalysis B-Environmental, 2016, 199, 466-472. (SCI收录)
[2] Yueyao Zhong, Yongliang Shao, Fukun Ma, Yongzhong Wu, Baibiao Huang, Xiaopeng Hao. Band-gap-matched CdSe QD/WS2 nanosheet composite: Size-controlled photocatalyst for high-efficiency water splitting. Nano Energy, 2017, 31, 84-89. (SCI收录)
[3] Yueyao Zhong, Yongliang Shao, Baibiao Huang, Xiaopeng Hao, Yongzhong Wu. Combining ZnS with WS2 nanosheets to fabricate a broad-spectrum composite photocatalyst for hydrogen evolution. New Journal of Chemistry, 2017, 41, 12451-12458. (SCI收录)
[4] Yueyao Zhong, Bin Chang, Yongliang Shao, Yongzhong Wu, Xiaopeng Hao. A Photo-responsive Electrocatalyst: CdSe Quantum Dots Sensitized WS2 Nanosheets for Hydrogen Evolution in Neutral Solution. New Journal of Chemistry, 2018, 42, 18021-18027. (SCI收录)
[5] Yueyao Zhong, Bin Chang, Yongliang Shao, Chengwei Xu, Yongzhong Wu, Xiaopeng Hao. Regulating Phase Conversion from Ni3Se2 to NiSe in Bifunctional Electrocatalyst for Overall Water Splitting Enhancement. ChemSuSChem, 2019, 12, 2008 – 2014. (SCI收录)
[6] Yueyao Zhong, Yongzhong Wu, Bin Chang, Zizheng Ai, Kang Zhang, Yongliang Shao, Lei Zhang and Xiaopeng Hao. A CoP/CdS/WS2 p–n–n tandem heterostructure: a novel photocatalyst for hydrogen evolution without using sacrificial agents. J. Mater. Chem. A, 2019, 7, 14638–14645. (SCI收录)
[7] Zizheng Ai, Gang Zhao, Yueyao Zhong, Yongliang Shao, Baibiao Huang, Yongzhong Wu, Xiaopeng Hao. Phase junction CdS: High efficient and stable photocatalyst for hydrogen generation. Applied Catalysis B-Environmental, 2018, 221, 179-186. (SCI收录)