郭瑞,女,1979年11月,博士,副教授,硕士生导师。
联系方式
联系电话:15076015448
电子邮件:guorui@neuq.edu.cn;
研究方向
催化材料:光催化材料、光电催化材料
纳米材料:稀土纳米粉体、过渡金属纳米粉体
科研情况
【在研项目】
1.国家自然基金-面上项目,Z型光催化剂界面电流唯象方程构建及催化性能提升研究(52071072),2021-2024年,主持。
2.国家自然基金-青年基金,镁合金低温熔盐扩散铝涂层的热力学缺陷统计研究及其质量评价方法(51704064),2018-2020年,主持。
2. 中央高校基本科研业务费-国防重大培育项目,2020GFZD017, N2023001,2020-2022年,主持。
【结题项目】
1.中央高校基本科研业务费-探索导向重点项目,荧光辅助选择性光催化机理研究(N162302001),2017-2019年,主持。
2.河北省科技计划项目-应用基础研究计划重点基础项目,比表面积法对铝镁界面镀层缺陷形成机理研究及密度泛函计算(15961005D),2015-2017年,主持。
3.中央高校基本科研业务费-种子基金,动力学因素对铝镁界面缺陷形成机理的影响及密度泛函计算(N142304007),2015-2016年,主持。
4. 秦皇岛市科技计划项目,纳米材料与光电催化重点实验室(201601B063),2017-2018年,第二负责人。
5. 秦皇岛市科技计划项目,荧光辅助选择性光催化机理研究(201701B063),2017-2018年,主持。
6. 校内科研基金,比表面积法对镁表面镀铝层肖特基缺陷密度及分布研究(XNK201602),2016-2018年,主持。
奖励与荣誉
2019年 “河北省三三三人才第三层次”人选获得者
2010年,河北冶金科学技术奖,三等奖,(排名第五)
学术成果
副主编出版专著1部;发表Sci论文20余篇;获得国家专利20项;
《冶金电化学》化学工业出版社,2016年5月;
【代表性学术论文】
1. Shengqi Zhang, Tao Yu, Hui Wen, Zhiyuan Ni, Yan He, Rui Guo*, Junhua You,Xuanwen Liu *,The latest development of CoOOH two-dimensional materials used as OER catalysts,Chem. Commun., 2020,56, 15387 (IF ,5.958)
2. Rui Guo, Yan He*, Renchao Wang, Junhua You, Hongji Lin, Chiente Chen, Tingshan Chan, Xuanwen Liu *,Zhiwei Hu*,Uncovering the role of Ag in layer-alternating Ni3S2/Ag/Ni3S2 as an electrocatalyst with enhanced OER performance,INORGANIC CHEMISTRY FRONTIERS,2020,19(7)3627-3635 (IF ,5.958)
3. Zhiyuan Ni, Hui Wen, Shengqi Zhang, Rui Guo*, Na Su, Xuanwen Liu*, Chunming Liu*,Recent Advances in Layered Tungsten Disulfide as Electrocatalyst for Water Splitting,CHEMCATCHEM,2020, 12, 1–39 (IF ,4.853)
4. Shengqi Zhang, Tao Yu, Hui Wen, Rui Guo*, Juanjuan Xu,* Ruixia Zhong*,Xian Lia and Junhua You,Enhanced photocatalytic activity of a visible-lightdriven ternary WO3/Ag/Ag3PO4 heterojunction:a discussion on electron transfer mechanisms,RSC Advances,2020,29(10)16892-16903 (IF 3.119)
5. Rui Guo, Aiguo Yan , Juanjuan Xu , Botao Xu , Tingting Li , Xuanwen Liu *, Tingfeng Yi **, Shaohua Luo ***, Effects of morphology on the visible-light-driven photocatalytic and bactericidal properties of BiVO4/CdS heterojunctions: A discussion on photocatalysis mechanism, J. Alloy. Compd.,817 (2020) 153246.(IF= 4.175)
6. Guo, R; Han, GN; Yan, AG; He, Y; Su, N; Liu, XW; Yi, TF,Epitaxial growth of metastable phase a-Ag2MoO4 on WO3 surface:Visible light-driven photocatalysis, sterilization, and reaction mechanism, J. Alloy. Compd.,814 (2020) 152255.(IF= 4.175)
7. You,JH; Guo,YZ; Guo,R; Liu,XW,A review of visible light-active photocatalysts for water disinfection: Features and prospects,Chem. Eng. J.,2019,373:624-641(IF=8.35)
8. Liu, XW; Wang, RC; He, Y; Ni, ZY; Su, N; Guo, R*; Zhao, Y ;You, JH; Yi, TF,Construction of alternating layered quasi-three-dimensional electrode Ag NWs/CoO for water splitting: A discussion of catalytic mechanism,Electrochim. Acta,2019,317: 468-477(IF=5.38)
9. Liu, XW; Ni, ZY; He, Y; Su, N; Guo, R*; Wang, Q; Yi, TF,Ultrasound-assisted two-step water-bath synthesis of g-C3N4/BiOBr composites: visible light-driven photocatalysis, sterilization, and reaction mechanism,New J. Chem.,2019,43:22(IF=3.06)
10. Liu, XW; Xu, JJ; Ni, ZY; Wang, RC; You, JH; Guo, R*; Adsorption and visible-light-driven photocatalytic properties of Ag3PO4/WO3 composites: A discussion of the mechanism,Chem. Eng.,2019,356:22-23(IF=8.35)
11. Guo, R* ; Wang, RC; Ni, ZY ; Liu, XW;Synthesis and electrochemical performance of Co3O4 via a coordination method,Appl.Phys A-Mater.,2018,124:9(IF=1.78)
12. Liu, XW; Ni, ZY; Xie, CZ; Wang, RC; Guo, R*;Controlled Synthesis and Selective Adsorption Properties of Pr2CuO4 Nanosheets: a Discussion of Mechanism,Nanoscaleres Lett.,2018:13(IF=3.15)
13. Xuanwen Liu, Renchao Wang, Zhiyuan Ni, Wanlin Zhou, Yuchen Du , Zhiqi Ye , Rui Guo*,Facile synthesis and selective adsorption properties of Sm2CuO4 for malachite green: Kinetics, thermodynamics and DFT studies, J. Alloy. Compd., 2018, 743:17-25(IF=3.77)
14. Rui Guo, Junhua You, Fei Han, Chaoyang Li, Guiyuan Zheng, Weicheng Xiao, Xuanwen Liu*,Controlled synthesis, formation mechanism, and carbon oxidationproperties of Ho2Cu2O5 nanoplates prepared with acoordination-complex method,Appl. Surf. Sci., 2016.34396(IF=3.15)
15. Xuanwen Liu, Junhua You, Renchao Wang, Zhiyuan Ni, Fei Han, Lei Jin, Zhiqi Ye, Zhao Fang,Rui Guo*,Synthesis and Absorption Properties of Hollow-spherical Dy2Cu2O5 via a Coordination Compound Method with [DyCu(3,4-pdc)2(OAc)(H2O)2]•10.5H2O Precursor, Sci. Rep-uk., 2017, 396: 1076-1084(IF=4.12)
16. YOU Jun hua, MA Li, QU Ying dong, LI Rong de, LIU Xuan wen,GUO Rui*,UC/DC luminescence of Ho3+ doped pyrochlore structured La2(1–x)Yb2xTiO5 phosphor synthesized by sol-gel method,J. Rare Earth.,2016,34(3):235-239(IF=2.52)
17. Xuan-Wen Liu, Rui Guo, He Liu, Ye-Qi Yu, Xi-Wei Qi, Jing-Yuan Xu and Cheng-Zhi Xie. Two series of novel 3D potentially porous hetero-metallic Cu–Ln coordination frameworks assembled by 3,4-pyridinedicarboxylic acid with different topologies and channels: syntheses, structures, luminescence and magnetic properties,RSC Adv.,2015,5,15059(IF=2.93)
【专利】
1. 郭瑞、刘宣文、罗绍华、苏娜、王仁超,一种Ag支撑准三维结构嵌入式电极材料的电化学制备法,2020.7.10,中国,ZL201910972399.2
2. 郭瑞、刘宣文、王仁超、李婷婷、徐娟娟,一种电场下可控电容材料及其制备方法和应用,2020.08.11,中国,ZL201810889697.0
3. 郭瑞、刘宣文、徐娟娟、闫爱国、周婉琳、金磊、苏娜,一种复合镍酸镧光催化剂的制备方法及其应用,2020.08.11,中国,ZL201710998921.5
4. 郭瑞、刘宣文、倪志远、王仁超、叶志奇、杜雨宸,一种铜酸镧纳米吸附材料的制备,2019.04.12,中国,ZL201711112964.5
5. 郭瑞、刘宣文、刘朝斌、张杨、肖维城、苏娜,一种铒离子掺杂钴酸镧光催化剂粉体及其制备方法和应用,2019.04.23,中国,ZL201611219120.6
6. 郭瑞,刘宣文,叶志奇,房昭,金磊,李鑫,苏娜,一种铜酸镨纳米吸附材料的制备方法及其应用,2019.04.23,中国,ZL201710998958.8
7. 郭瑞,刘宣文,苏娜,刘朝斌,史晓杰,韩非,丁广超,一种铒掺杂钴酸锌光催化剂粉体的制备方法及应用,2019.07.12,中国,ZL201610834542.8
8. 郭瑞,罗绍华,刘宣文,苏娜,、闫爱国,一种纳米Ag嵌入式电极材料的电化学制备法,2019.10.25,中国,ZL201811236257.1
9. 郭瑞,刘宣文,周婉琳,齐靖宇,肖维城,郑贵元,杨翔,苏娜,一种选择性复合光催化剂粉体及其制备方法和应用,2018.09.18,中国,ZL201610986448.4
10. 郭瑞,贺望德,王仁超,敬海燕,李想,齐建全,刘宣文,一种Eu3+掺杂层状钙钛矿结构La2CuO4荧光粉体的制备及应用,2017.11.28,中国,ZL201510422935.3
11. 郭瑞,王燕燕,王仁超,何龙,齐建全,一种Sm3+为发光中心的钛酸镧红色荧光材料及其制备方法,2017.6.16,中国,ZL201510027764.4
12. 郭瑞,刘宣文,刘广,刘芳辰,李朝阳,齐靖宇,郑智文,周婉琳,一种铜酸钬纳米粉体的制备方法,2017.1.25,中国,ZL201610064032.7
13. 郭瑞,齐建全,陈霞,张杨,张晓雷,方圆,刘宣文, 铒掺杂钛酸镧的荧光化合物及其制备方法和应用, 2017.1.25,中国,ZL 201510331050.2
讲授课程情况
《冶金传输原理及反应工程》、《固体界面结构与材料性质》《电化学原理及应用》、《稀土材料现代研究方法》等。