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周艳红

作者:周艳红  来源:理学院   时间:2020-04-17  点击:




一、周艳红个人简介

博士,校聘教授,硕士生导师


取得成就:

主持国家自然科学基金4项(地区基金3项,青年基金1项)、其中3项已经结题,江西省科技厅自然基金4项(其中一项为杰出青年基金),其中3项已经结题。在国内外权威期刊发表SCI 论文40余篇,其中一区6篇,二区18篇,论文引用次数达到400余次。获得2019年江西省科技厅自然科学奖三等奖(排名第一)。指导学生2019年获得江西省大学物理竞赛二等奖和2021年全国大学生物理实验大赛二等奖。指导学生获批和完成国家创新创业项目2项。

二、主要研究方向

1.纳米材料的光电特性

2.光电纯自旋流器件(光电池)设置

3.低微体系的几何结构与电子结构计算

4.多功能电子器件

5.纳米器件中的集成问题

、主要科研项目

[1]国家自然科学基金委员会,地区项目,12264014 , 二维反铁磁体系中的光致纯自旋流研究,2023/01-2026/12在研,主持

[2]国家自然科学基金委员会,青年项目,11804093,并行分子器件中的基尔霍夫叠加定律及量子相干性研究,2019/01-2021/12,已结题,主持

[3]国家自然科学基金委员会,地区项目,61764005,石墨炔多功能器件第一性原理设计及电荷传输机理,2018/01-2021/12,已结题,主持

四、近期著作与论文

[1]Leitao Lei(研究生), Xiaohong ZhengYan-Hong Zhou(通讯作者, Keqiu Chen, High tunneling electroresistance in ferroelectric tunnel junctions based on two-dimensional bilayer ferroelectric CuInP2Se6/Ga2O3 van der Waals heterostructureIEEE Transactions on Electron Devices, 2024,doi: 10.1109/TED.2024.3411576.

[2]Shida Pei(研究生), Rufeng Cao, Yan-Hong Zhou*(通讯作者), Xiaohong Zheng* and Caiyun WangTunable Band Alignment and Optical Properties in Van der Waals Heterostructures based on two-dimensional materials Janus-MoSSe and C3N4New J. Phys. 202426 043014. DOI 10.1088/1367-2630/ad3c65

[3]Leitao Lei(研究生), Yan-Hong Zhou(通讯作者)*, Xiaohong Zheng*, Wenqiang Wan,  WeiyangWang, High tunneling electroresistance in ferroelectric tunnel junctions based on two-dimensional α-In2Se3/MoTe2 van der Waals heterostructures, Physical Chemistry Chemical Physics, 2024, 26, 3253 - 3262

[4]Xiaofei Shang(本科生), Yuejun Li, Rufeng Cao, Yan-Hong Zhou*(通讯作者), Wenqiang Wan, Xiaohong Zheng, Light-induced pure spin current in carbon hexagonal-connected zigzaggraphene nanoribbons via magnetic field modulation, Opt. Express, 2023, 31, 36263-36272

[5]Yuejun Li(研究生), Xiaofei Shang, Yan-Hong Zhou*(通讯作者)and Xiaohong Zheng*The effect of light-irradiated area on the spin dependent photocurrent in zigzag graphene nanoribbon junctions, Phys. Chem. Chem. Phys., 2023, 25, 24428 - 24435, https://doi.org/10.1039/D3CP01176C (SCI 区)

[6]Yuejun Li(研究生), Hua Hao, Xiaofei Shang, Yan-Hong Zhou*(通讯作者)and Xiaohong Zheng*Realizing pure spin current with photogalvanic effect in zigzag graphene nanoribbon junctions: the roles of tetragon and hexagon connectors,IEEE Transactions on Electron Devices, IEEE Transactions on Electron Devices, 2023, 70(7), 3908-3914(SCI 区)

[7]Yuejun Li(研究生), Xiaofei Shang, Yan-Hong Zhou*(通讯作者)and Xiaohong Zheng*,Realizing pure spin current by the photogalvanic effect in armchair graphene nanoribbons with nano-constriction engineering, Phys. Chem. Chem. Phys., 2023, 25, 2890 (SCI 区)

[8]Wei Xiao, Lili Kang, Hua Hao, Yanhong Zhou, *Xiaohong Zheng, *Lei Zhang and Zhi Zeng, Giant tunneling electroresistance induced by interfacial doping in Pt/BaTiO3/Pt ferroelectric tunnel junctions, Phys. Rev. Applied 17, 044001 (2022)

[9]Qingqing Chen, *Xiaohong Zheng, Peng Jiang, Yan-Hong Zhou, Lei Zhang, and Zhi Zeng, Electric field induced tunable half-metallicity in an A-type antiferromagnetic bilayer LaBr2Phys. Rev. B 106, 245423 (2022)

[10]Yanhong Zhou(*); Yuejun Li; Xiaohong Zheng; Keqiu Chen(*),The effects of     covalent coupling strength on the electron transport properties and rectification in graphene/porphine/graphene molecular junctions,Physica E: Low-dimensional Systems and Nanostructures, 2021, 134(06): 114867.(SCI 二区)

[11]Yan-Hong Zhou, Shaohui Yu, Yuejun Li, Xin Luo, Xiaohong Zheng, Lei Zhang, Pure spin current generation with photogalvanic effect in graphene interconnect junctions,2021,Nanophotonics, 2021, 10(06): 0646 (SCI 一区)

[12]L. Kang, P. Jiang, H. Hao, Yanhong. Zhou, X. Zheng, L. Zhang, Z. Zeng, Giant tunnel electroresistance in ferroelectric tunnel junctions with metal contacts to two-dimensional ferroelectric materials, PHYSICAL REVIEW B 103 , 125414 ( 2021 ).  

[13]Wei Xiao, Lili Kang, Hua Hao, Yanhong Zhou, *Lei Zhang, *Xiaohong Zheng, and Zhi Zeng, Giant tunneling electroresistance arising from reversible partial metallization of barrier in NaTiO3/BaTiO3/LaTiO3 ferroelectric tunnel junction, Phys. Chem. Chem. Phys. 23, 16349-16356 (2021)

[14]Lili Kang, Peng Jiang, Hua Hao, Yanhong Zhou, *Xiaohong Zheng, *Lei Zhang, and Zhi Zeng, Giant tunneling electroresistance in two-dimensional ferroelectrictunnel junctions with out-of-plane ferroelectric polarization, Phys. Rev. B,(2020), 101, 014105

[15]Yanhong Zhou,Shaohui Yu, Xiaohong Zheng*, Edge passivation control of graphene nanoribbons for robust pure spin current generation with  photogalvanic effect, Carbon 170 (2020) 361–367. (SCI 一区)

[16]Yanhong Zhou,Xiaohong Zheng*, Generating pure spin current with spin-dependent Seebeck effect in ferromagnetic zigzag graphene nanoribbons,   J. Phys.: Condens. Matter 2019, 31, 315301-11

[17]Yanhong Zhou, Xiaohong Zheng*, Zi-Qiang Cheng, Ke-Qiu Chen*,Current Superposition Law Realized in Molecule Devices Connected in Parallel, J. Phys. Chem. C 2019, 123(16), 10462−10468

[18]Jing Zeng*; Yanhong Zhou; Semiconductor-to-metallic spin-filtering and positive and negative magnetoresistance effects in C3N with nickel electrodes, Physica E: Low-dimensional Systems and Nanostructures, 2019 , 118(1):113861-7. 

[19]Yan-Hong Zhou, Xiang Zhang, Cheng Ji, Zhi-Min Liu, Ke-Qiu Chen*, The length and hydrogenation effects on electronic transport properties of carbon-based molecular wires. Organic Electronics, 51, 332-340, 2017(SCI一区)

[20]Yan-Hong Zhou, Chang-Yong Chen, Bo-Lin Li, Ke-Qiu Chen*,Characteristics of classical Kirchhoff's superposition law in carbon atomic wires connected in parallel. Carbon, 95, 503-510 2015 (SCI 一区)

[21]Yan-Hong Zhou, Jing Zeng, Ke-Qiu Chen*,Spin filtering effect and magneto-resistance in zigzag 6, 6, 12-graphyne nanoribbon system. Carbon, 76, 175–182,2014(SCI 一区)

[22]Yan-Hong Zhou, Shi-hua Tan, Ke-Qiu Chen*, Enhance the stability of α-graphyne nanoribbons by dihydrogenation. Organic Electronics, 15(11), 3392–3398 2014 (SCI 一区)

[23]Yan-Hong Zhou, Jing Zeng, Li-Ming Tang, Ke-Qiu Chen*, W.P. Hu, Giant magnetoresistance effect and spin filters in phthalocyanine-based molecular devices. Organic Electronics, 14, 11, :2940–2947, 2013(SCI)

[24]Yan-hong Zhou, L. Z. Yuan, and Xiao-hong Zheng*, Ab Initio Study of the Transport Properties of A Light-Driven Switching Molecule Azobenzene Substituent. Computational Materials Science,61: 145-149,2012(SCI)

[25]Yan-hong Zhou*, Chong Xing, You-lin Peng, Transport properties of carbon atomic wire in the environment of H2O molecules: An ab initio study. Physica  B, 406:1189-1193, 2011(SCI)

[26]Yan-hong Zhou*, Xiao-hong Zheng, Ying Xu, and Zhao-yang Zeng, First-principles Study on the Differences of the Equilibrium Conductance between Carbon and Silicon atomic wires. Journal of Physics: Condensed Matter, 20045225-6, 2008(SCI)

[27]Yan-hong Zhou, Xiao-hong Zheng, Ying Xu*,and Zhao-yang Zeng,Current rectification by asymmetric molecules: An ab initio study. Journal of Chemical Physics, 125, 244701 (2006) SCI

[28]Yan-hong Zhou, Xiao-hong Zheng, Ying Xu,and Zhao-yang Zeng,Zhi Zeng,Effects of Relative Orientation of Molecules on Electron Transport  in Molecular Devices. Chin. Phys. Lett. 23,2609 (2006),SCI

[29]Chang-Ming Tan, Yan-Hong Zhou, Chang-Yong Chen, Ji-Feng Yu, Ke-Qiu Chen*,Spin filtering and rectifying effects in the zinc methyl phenalenyl molecule between graphene nanoribbon leads. Organic Electronics,28,244-251 (2016)

[30]Jun Peng, Yan-Hong Zhou, Ke-Qiu Chen*, Influence of boundary types on rectifying behaviors in hexagonal boron-nitride/graphene nanoribbon heterojunctions. Organic Electronics, 27 (2015) 137–142 (SCI一区)

[31]Bo Jiang, Yan-Hong Zhou, Chang-Yong Chen, Ke-QiuChen*, Designing multi-functional devices based on two benzene rings molecule modulated with Co and N atoms. Organic Electronics,23,133–137(2015) SCI

[32]Chen-Chen Zhao, Shi-Hua Tan, Yan-Hong Zhou, Rong-Ji Wang, Xin-Jun Wang *, Ke-Qiu Chen*, Half-metallicity and high spin-filtering effect of magnetic atoms embedded zigzag 6, 6, 12-graphyne nanoribbon. Carbon, 113 (2017) 170-75 SCI

[33]Yu-Cheng Ling,Feng Ning,Yan-hong Zhou,Ke-Qiu Chen*,Rectifying behavior and negative differential resistance in triangular graphene p–n junctions induced by vertex B–N mixture doping. Organic Electronics,19, 92-97 (2015) SCI

、科技奖励与专利

[1] 周艳红,郑小宏,曾晶,纳米与分子器件的量子输运调控方法及机理研究,2019年江西省自然科学奖,三等奖(Z-18-3-18-R01

、社会兼职与活动

现为《Organic Electronics》、《Carbon》、《Journal of Applied Physics》、《Physical B》等国外权威刊物审稿人,江西省科技厅科技专家库成员,国家自然科学基金,江西省自然科学基金,湖南省自然科学基金项目评审专家。

七、教学工作

[1]教授课程:《大学物理》,《电动力学》,《大学物理实验》,《数学物理方法》光学教程》,《模拟电路》,《数字电路

[2]指导学生2019年获得江西省大学物理竞赛二等奖和2021年全国大学生物理实验大赛二等奖。

[3]指导学生获批和完成国家创新创业项目2项。