1、近五年年第一作者和通讯作者论文 (1)Fabrication of Ag decorated g-C3N4/LaFeO3Z-scheme heterojunction as highly efficient visible-light photocatalyst for degradation of methylene blue and tetracycline hydrochloride,Journal of Alloys and Compounds 864 (2021) 158914,工程技术2区,IF=4.65(通讯作者) (2)Graphene decorated iron oxide negative electrodes with high capacity, excellent rate performance, and wide working voltage for aqueous battery-supercapacitor hybrid devices,Journal of Alloys and Compounds 864 (2021) 158147,工程技术2区,IF=4.65(通讯作者) (3)One-step synthesis of NiCo2S4with high electrochemical performance used for hybrid capacitor,Journal of Alloys and Compounds 832 (2020) 155037(1-7)工程技术2区,IF=4.65(通讯作者) (4)Intrinsic Energy-Storage Mechanism of Low Crystallinity Nickel-cobalt Sulfide as Anode Material for Supercapacitors, Journal of Power Sources, 2020, 451: 227822.工程技术1区,IF=7.467(通讯作者) (5)Z-scheme g-C3N4/BiVO4 Photocatalysts with RGO as Electron Transport Accelerator, Journal of Materials Science-Materials in Electronics, 2020, 31(1): 667-676.(通讯作者) (6)Heterojunction Cu2O/RGO/BiVO4ternary nanocomposites with enhanced photocatalytic activities towards degradation of rhodamine B and tetracycline hydrochloride, New Journal of Chemistry, 2019, 43(46): 18240-18250.(第一作者) (7)Theoretical insight into the hydrogen adsorption on MoS2(MoSe2) monolayer as a function of biaxial strain/external electric field, Applied Surface Science , 2019, 478: 857-865.工程技术2区,IF=5.155(第一作者) (8) Sensing and absorbing of sulfur mustard using Pt-decorated graphene from first-principles calculations, Physica E -Low-Dimensional Systems & Nanaostructures, 2019, 114: 113634.(第一作者) (9)Nanosheet-Assembled LaMnO3@NiCo2O4Nanoarchitecture Growth on Ni Foam for High Power Density Supercapacitors, Electrochimica Acta, 2019, 318: 651-659.材料科学2区,IF=5.383(通讯作者) (10)Battery-like MnCo2O4electrode materials combined with active carbon for hybrid supercapacitors, Electrochimica Acta, 2019, 306: 599-609.材料科学2区,IF=5.383(第一作者2020年1、2月ESI高被引论文) (11)Ag nanoparticles decorated perovskite La0.85Sr0.15MnO3as electrode materials for supercapacitors, Materals Leeters, 2019, 243: 34-37.(通讯作者) (12)Recent advances in perovskite oxides for anion-intercalation supercapacitor: A review, Materials Science in Emeiconductor Processing, 2019, 94: 35-50.(通讯作者,ESI高被引论文) (13)Rational design of La0.85Sr0.15MnO3@NiCo2O4Core-Shell Architecture Supported on Ni Foam for High Performance Supercapacitors, Journalof Power Sources, 2018,402: 213-220.工程技术1区,IF=7.467(通讯作者) (14)Influence of Calcium Doping on Performance of LaMnO3Supercapacitors, Ceramics International, 2018, 44(8): 9733-9741.材料科学2区,IF=3.45(通讯作者) (15)Supercapacitor Performance of Perovskite La1-xSrxMnO3, Dalton Transactions, 2017, 46(40): 13720-13730.化学2区,IF=4.052(通讯作者,英国皇家化学学会Top1%高被引作者) 2、科研获奖及荣誉称号 (1)吉林省第16批有突出贡献专家,吉林省政府,2020. (2)吉林省第六届拔尖创新人才,吉林省政府,2017年。 (3)边缘氧化扶手型石墨烯纳米带的金属-半导体相转变,吉林省自然科学学术成果奖二等奖,吉林省科协,2012年。(第一获奖人) (4)碱金属原子光谱,吉林省首届“微课”比赛二等奖,2012年。(第一获奖人) (5)若干低维纳米材料表面改性的理论研究,吉林省自然科学三等奖,吉林省科技厅,2018年。(第二获奖人) (6)氧原子在ZnO (000-1)表面吸附和扩散的理论研究,吉林省自然科学学术成果三等奖,吉林省科学技术协会,2015年。(第四获奖人) (7)碱金属吸附对石墨烯结构和场发射性能的影响,吉林省自然科学学术成果奖三等奖,吉林省科协,2013年。(第五获奖人) (8)量子混沌系统中自旋压缩性质研究,吉林省科技进步三等奖,吉林省科技厅,2011年。(第三获奖人) 3、授权专利: (1)一种石墨烯和碳纳米管复合材料的制备方法,中国专利,授权号:ZL2013 1 0400909.1。 |