马新国

发布时间:2020年12月30日 09:14 阅读人数:
姓名:马新国 研究方向: 1、二维材料与集成电路 2、硅光芯片界面与互联 3、车载智能传感 4、北斗芯片
导师类型:博士生导师 主讲硕士生课程: 1.集成电路原理 2.半导体器件与工艺
职称:教授 主讲博士生课程:
专业:微电子学与固体电子学 联系方式:maxg@hbut.edu.cn

个人简介

马新国,男,教授,博士,博士生导师/硕士生导师,湖北省级人才、香江学者、南湖学者,副院长。2010年获华中科技大学电子科学与技术博士学位,先后在清华大学、香港城市大学、德国不莱梅大学、美国密苏里大学堪萨斯分校长期开展科学研究工作。专注于二维材料与集成电路、射频芯片、光通信芯片等领域,提出了表/界面形成能精确算法、接触电阻抑制、新型电路架构等多项原创性成果。主持和参加国家自然科学基金、国际合作重点专项等20余项。先后完成的企业项目涉及领域包括智能感知探测器、光谱调制器、滤波器芯片和北斗芯片等,成功投片10余次,实现了量产。在ACS Nano、IEICE Electronics、Angew等杂志发表论文120余篇,被引超8100次,5篇为ESI高被引论文,1篇为ESI热点论文,国家专利8项。担任多个学术期刊编委,中国电子学会高级会员,高端芯片产业创新发展联盟理事会理事,湖北省半导体行业协会理事,上海集成电路行业产教融合就业育人联盟专家。获2024年湖北省科学技术(自然)二等奖(排1),2024年科创中国·湖北省优秀项目二等奖(排1),2025年第七届国际材料科学家奖“Best Researcher Award”。连续入选2023和2024年度“全球前2%顶尖科学家榜单”。

科研项目:

1.武汉市重点研发计划:集成屏下人脸识别功能的AMOLED显示屏关键技术研究,在研

2.深圳企业项目“XXXX MHz/XXXXMHz北斗抗烧毁模块开发,在研

3.武汉市重点研发计划:基于硅光集成的钛酸钡薄膜电光调制器关键技术研发,在研

4.深圳某公司委托项目,智能感知关键技术开发及智慧产业应用,在研,主持

5.浮法玻璃新技术国家重点实验室:包覆型Mo掺杂二氧化钒薄膜制备及 热致变色性能研究,在研,主持

6.校绿色工业科技引领计划杰出青年基金,5G领域的XXXX设计与工艺技术,在研,主持

7.武汉某公司委托项目,面向XX薄膜体声波谐振器和XX若干问题研究,结题,主持

8.黄冈某公司委托项目,XX关键制备工艺优化,结题,主持

9.湖北省高等学校优秀中青年科技创新团队:聚光太阳能高效利用技术,在研,参与

10.中科院结构化学国家重点实验室开放课题,基于能带工程的二维非对称纳米人工结构,在研,主持

11.深圳某公司委托项目,XX功能材料研究,结题,主持

12.国家自然科学基金委面上项目:g-C3N4/磷酸盐杂化材料体系的微结构调控及光生载流子迁移性质研究,结题,主持

13.国家自然科学基金青年项目:磷酸盐半导体光催化材料微结构调控及高活性机理研究,结题,主持

14.中英研究与创新桥计划合作项目:新型薄膜光伏真空玻璃关键技术及产业化合作研究,结题,参与

15.校绿色工业科技引领计划优秀青年基金:全光谱异质结光催化剂的微结构设计及光电性能研究,结题,主持

16.校人才基金:层状聚合物半导体的分子结构设计与光催化活性机理,结题,主持

17.省协同创新中心开放基金:碳基复合对钙钛矿太阳能电池转化效率的影响,结题,主持

18.省协同创新中心开放基金:全固态钛纤维基钙钛矿太阳能电池的界面调控,结题,主持

学术论文(部分)

(1)Youyou Guo,Xinguo Ma*, Zhijie Deng, Zhengwang Cheng, Feng Zhang, Nan Ma.A novel monolayer 2D isomer Ga4O4Cl2X2and Ga2O2ClX (X=Cl, F) predicted using first-principles: Potential for high efficiencyUV detection.Surfaces and Interfaces, 2025, 62, 106273.

(2)Jinyi Zhu,Xinguo Ma,*Tian Xie, Yijing Ren and Yujin Liu. Two-dimensional Janus X2SSe (X=Al, Ga or In) monolayers: potential photocatalysts with low effective mass,Phys. Chem. Chem.Phys.,2025, DOI: 10.1039/d4cp04372c.

(3)Jiang, M.,Ma, X. G.,*Huang, C. Y. et al.Effect of Ti-doped LaAlO3on microwave dielectric properties.J Mater Sci: Mater Electron, 2025, 36, 520.

(4)Youyou Guo,Xinguo Ma,Jiaqi Wang,Yingtao Wu.Stress modulation of electronic and optical properties for two-dimensional Janus M2S2ClF (M=Al, Ga, and In): density functional theory, Proc. SPIE 13549, International Conference on Optoelectronic Materials and Devices, 135491U (2025);https://doi.org/10.1117/12.3058827.

(5)Yujin Liu,Xinguo Ma,*Tian Xie, Yijing Ren, Jinyi Zhu, Nan Ma, Jingjing Lu, Jeongmin Hong*. Tunable electronic and optical properties of Janus Al2M2ClBr(M=O, S) monolayers for UV photodetector application.New J. Chem., 2024, 48,18826-18835.

(6)Youyou Guo,Xinguo Ma,*Tian Xie, Shida Yao, Jiajun Liao, Yijing Ren and Nan Ma.Theoretical evidence of the piezoelectric property enhancement for ScY- or CaTi-codoped wurtzite AlN.J. Mater. Chem. C, 2024, 12, 4103.

(7)Yijing Ren,Xinguo Ma,*Gang Yuan, Jiajun Liao, Nan Ma, Di Li and Hui Lv. Two-dimensional tetragonal AlOX(X=Cl, Br, or I) monolayers with promising photocatalytic performance: first-principles investigations.Phys. Chem. Chem. Phys., 2024, 26, 16765.

(8)Shida Yao,Xinguo Ma,*Chuyun Huang, Youyou Guo, Yijing Ren, Nan Ma.Tuning the electronic and piezoelectric properties of Janus Ga2XY(X/Y=S, Se, Te) monolayers: A first-principles calculation.Materials Science in Semiconductor Processing, 2024, 178, 108367.

(9)邹维,李鹏程,张馨予,程正旺,王妹,张力,马新国*,邹雪城.射频前端滤波器研究,微纳电子与智能制造.6,19(2024).

(10)Wantao Gan,Xinguo Ma,*Jiajun Liao, Tian Xie, Nan Ma, Jingjing Lu, and Jeongmin Hong*. Emergence of In-Plane and Out-of-Plane Piezoelectricity in Flexible Janus MoXSiN2(X=S, Se, and Te) Monolayers.ACS Applied Electronic Materials,20246(8), 5951-5960.

(11)Wantao Gan,Xinguo Ma,*Jiajun Liao, Tian Xie and Nan Ma. First-principles calculation of in-plane and out-ofplane piezoelectric properties of two-dimensional Janus MoSSiX2(X=N, P, As) monolayers.New J. Chem., 2024, 48, 6780.

(12)Li Liu*, Tinghui Liu, Can Xu, Wanyi Zhao, Junping Fan, Jing Liu,Xinguo Ma,*and Wensheng Fu* FeCoCuMnRuB Nanobox with Dual Driving of High-Entropy and Electron-Trap Effects as the Efficient Electrocatalyst for Water Oxidation,Nano Lett.2024, 24, 9, 2831–2838.

(13)Li Liu, Jinming Cao, Siqi Hu, Tinghui Liu, Can Xu, Wensheng Fu*,Xinguo Ma*, Xiaohui Yang*. Antagonism effect of residual S triggers the dual-path mechanism for water oxidation.Journal of Energy Chemistry, 93, 2024, 568-579.

(14)Xiaoqiang Wu,Xinguo Ma,*Gang Yuan, Nan Ma, Ruoyue Fan, Chuyun Huang. Two-dimensional Janus B2P6 as potential gas sensors for NO and NO2detection: A first-principles study. Materials Chemistry and Physics,2024, 311, 128497.

(15)Ma X G,Liu Z W, Guo Y Y, Ren Y J. Sixth International Conference on Optoelectronic Science and Materials (ICOSM 2024), Proc. of SPIE Vol. 13446, 1344606-1, doi: 10.1117/12.3052594.

(16)Wei Zou, Lei Li, Zhengwang Cheng, LiZhang, Mei Wang,Xinguo Ma,and Xuecheng Zou.“A 3.83–5.55 GHz high frequency resolution DCO with optimized switched-capacitor ladder and low-coupled eight-shaped transformer,” Int. J. Circuit Theory Appl., 51, 5555(2023).

(17)Tian Xie,Xinguo Ma,*Youyou Guo, Gang Yuan, JiaJun Liao, Nan Ma, and Chuyun Huang. A graphene/Janus B2P6heterostructure with a controllable Schottky barrier via interlayer distance and electric field.Phys. Chem. Chem. Phys.,2023, 25, 31238-31248.

(18)任怡静,马新国,*张锋,陆晶晶,张力,王晗.BaTiO3薄膜的制备及其在电光调制器的应用,人工晶体学报,2023,52,688-699.

(19)Ma X G,*Bo H T, Gong X, Yuan G, Peng Z*, Lu J J, Xie Q H*.Tunable Schottky barrier of WSi2N4/graphene heterostructure via interface distance and external electric field.Appl. Surf. Sci.,2023, 615, 156385.

(20)Yuan G,Ma X G,*Liao J J, Xie T, Xie Q H, Yuan Z Y.First-principles calculations of 2D Janus WSSiN2monolayer for photocatalytic water splitting.ACS Appl. Nano Mater.,2023, 6, 1956.(与南开大学合作论文)

(21)Liao J J,Ma X G*, Yuan G, Xu P, Yuan Z Y. Coexistence of in- and out-of-plane piezoelectricity in Janus XSSiN2monolayers.Appl. Surf. Sci.,2023, 610, 155586.(与南开大学合作论文)

(22)Cheng Z W, Wang A B, Bo H T, Wang M, He J, Zou W,Ma X G*. Preparation and structural investigation of ultrauniform Mo Films on a Si/SiO2wafer by the direct-current magnetron sputtering method.Cryst. Growth Des.,2023, 23, 1014.

(23)马新国*,程正旺,王妹,贺晶,邹维,邓水全.适用声波谐振器的磁控溅射制备AlN薄膜优化技术,材料导报, 2023, 37(6A): 21080275.

(24)Mei Wang, Huating Bo, Aobo Wang, Zhengwang Cheng*, Shengjia Li, Wei Zou, Jing He,Xinguo Ma. High-quality c-axis oriented Al(Sc)N thin films prepared by magnetron sputtering, Thin Solid Films, 781 (2023) 140000.

(25)丁文波,徐鹏,李劲,周明睿,章景恒,马新国,吕辉.FBAR滤波器TRL校准的仿真与测试.中国测试,已在线出版。

(26)Mei Wang, Ruoyue Fan, Huating Bo, Zhengwang Cheng*, Wei Zou,Jing He,Xinguo Ma. Tuning the photovoltaic performance of perovskite solar cells by simple incorporation of ZnO QDs into the mesoporous titania layer, J Mater Sci. Energy materials, 2023, 58, 6267–6280.

(27)Wei Zou, Haotian Chen, Daming Ren, Xinyu Zhang, LiZhang, Zhengwang Cheng,Xinguo Ma,Chuyun Huang and Xuecheng Zou. A 45 MHz-2.5 GHz broadband CMOS up-conversion mixer with a bisymmetric class-AB input stage, IEICE Electronics Express, 19,1(2022).

(28)Liao J J, Cheng Z W,MaX G*, Wan F D, Duan W Y, Cheng Y H, Wang M. Theoretical evidence of piezoelectric constant enhancement of M-doped AlN(M=Sc, Er).J. Cryst. Growth,2022, 599, 126889.

(29)Pei R,Ma X G*, Xie Q H, Chen C, Wang M, Deng S Q, Bo H T, Dong X R. Self-cleaning characteristics of mesoporousnano-crystalline TiO2–SiO2thin films.J. Nanoelectron. Optoelectron.,2022, 17, 853.(与中科院物质结构所合作论文)

(30)Weng Y X,Ma X G*, Yuan G, Lv H, Yuan Z Y. Novel Janus MoSiGeN4nanosheet: adsorption behaviour and sensing performance for NO and NO2gas molecules.RSC Adv., 2022, 12, 24743. (与南开大学合作论文)

(31)Cheng Z W*, Hu Z L, Liu Z F, Han C C, Wang M, He J, Zou W,Ma X G*. Non-noble plasmonic MoO2as photosensitizer of 1D TiO2nanorods forenhancing visible-light photoelectrochemical performance.Surfaces and Interfaces,2022, 31, 102082.

(32)Peng Z, Han C C, Huang C Y, Dong Z H*,Ma X G*.Preventing surface passivation of transition metal nanoparticles in oxygen electrocatalyst to extend the lifespan of Zn-air battery.Journal of Materials Science & Technology,2022, 128, 205.(与华中科技大学合作论文)

(33)Cheng Y H,Ma X G*, Huang C Y*, Yuan G, Liao J J. The effect of functional groups (O, F, or OH) onreversible hydrogen storage properties of Ti2X (X=C or N) monolayer.International Journal of Hydrogen Energy,2022, 47, 28969.

(34)GongX, YuanG,Ma X G*, LvH, ZhangF, HeJ, Zou W. A novel C6BN/graphene heterostructure: Tunable Schottky barrier via interlayer spacing and external electric field.Diamond and Related Materials,2022, 128, 109206.

(35)Wei Zou, Xinyu Zhang, Zhengwang Cheng, MeiWang andXinguo Ma.Design and analysis of a low phase noise low power ring-VCO, IEICE Electronics Express, 20,1(2023).

(36)Wan F D,Ma X G*, Liao J J, Gong X,Lv H, Deng S Q, Chen X B. A sensitive photodetector: tuning the electronic structure of Cu2O/MoS2heterojunction by controlling the interlayer spacing or electric field.Journal of Materials Research,2022, 37, 1679. (与中科院物质结构所、美国密苏里州大学堪萨斯分校合作论文)

(37)Yuan G, Cheng Z W*, Cheng Y H, Duan W Y, Lv H, Liu Z F, Han C C,Ma X G*. Highly sensitive band alignment of the Graphene/MoSi2N4heterojuction via an external electric field.ACS Appl. Electron. Mater.,2022, 4, 2897.

(38)Pei R,Ma X G*, Han C C, Liu Z F, Cheng Z W, Dong X. The valence conversion mechanism for Mo-doped VO2enhanced thermochromic properties.Journal of Inorganic and General Chemistry,2022, 648, e202200132.

(39)龚雪,马新国*,万锋达,段汪洋,杨小玲,朱进容.二维单层MoSi2X4(X=N, P, As)的电子结构及光学性质研究.化学学报, 2022, 80, 510.

(40)袁罡,马新国*,贺华,邓水全,段汪洋,程正旺,邹维.平面应变对二维单层MoSi2N4能带结构和光电性质的影响.无机材料学报, 2022, 37(5), 527.(与中科院物质结构所合作论文)

(41)程悦桓,马新国*,黄楚云*,廖家俊,段汪洋.硼掺杂单层MoSi2N4锂离子吸附与扩散行为的第一性原理研究.无机化学学报, 2021, 37, 2167.

(42)Chen Z Z,Ma X G*, Hu J S, Wan F D, Xu P, Wang G Y, Wang M, Deng S Q, Huang C Y*. Band alignment of Zr2CO2/MoS2heterostructures under an electric field.RSC New J. Chem.,2021, 45, 16520.(与中科院物质结构所合作论文)

(43)Hu J S, Liu J, Chen Z Z,Ma X G*, Liu Y, Wang S Q, Liu Z F, Huang C Y. Insights into the mechanism of the enhanced visible-light photocatalytic activity of a MoS2/BiOI heterostructure with interfacial coupling.RSC Phys. Chem. Chem. Phys.,2020, 22, 22349.

(44)Hu J S,Ma X G*, Duan W Y, Liu Z F, Liu T, Lv H, Huang C Y, Miao L, Jiang J J. First-principles calculations of graphene-coated CH3NH3PbI3toward stable perovskite solar cells in humid environments.ACS Appl. Nano Mater.,2020, 3, 7704.(与华中科技大学合作论文)

(45)Zheng M K,Ma X G*, Hu J S, Zhang X X, Li D, Duan W Y.Novel recyclable BiOBr/Fe3O4/ RGO composites with remarkable visible-light photocatalytic activity.RSC adv.,2020, 10,19961.

(46)Chen X J, Xu Y,Ma X G, Zhu Y F. Large dipole moment induced efficient bismuth chromate photocatalysts for wide-spectrum driven water oxidation and complete mineralization of pollutants.National Science Review,2020, 7, 652.(与清华大学合作论文)

(47)Ma X G*, Hu J S, Zheng M K, Li D,Lv H, He H,Huang C Y. N2reduction using single transition-metal atom supported on defective WS2monolayer as promising catalysts: A DFT study.Appl. Surf. Sci.,2019, 489, 684.

(48)Ma X G*, Chen C, Hu J S,Zheng M K, Wang H H, Dong S J, Huang C Y, Chen X B*.Evidence of direct Z-scheme g-C3N4/WS2nanocomposite under interfacial coupling: first-principles study.J. Alloys Comp.,2019,788, 1.

(49)Xu Y,Ma X G*, Hu J S, Xu A, Wang Z R,Huang C Y*. Structures and energetics of low-index stoichiometric BiPO4surfaces.CrystEngComm,2019,21, 4730.

(50)Fu W W, Wang Y W, Hu J S, Zhang H J, Luo P, Sun F,Ma X G, Huang Z Y, Li J, Guo Z P*, Wang Y*. Surface-electron coupling for efficient hydrogen evolution.Angewandte Chemie International Edition,2019, 58, 2.(与重庆大学合作论文)

(51)Hu J S, Duan W Y, He H,Lv H,Huang C Y,Ma X G*. A promising strategy to tune the schottky barrier of MoS2(1-x)Se2x/graphene heterostructure by asymmetric Se doping.J. Mater. Chem. C,2019, 7, 7798.

(52)Ma X G*, Hu J S, He H, Dong S J, Huang C Y, Chen X B*.New understanding on enhanced photocatalytic activity of gC3N4/BiPO4heterojunctions by effective interfacial coupling.ACS Appl. Nano Mater.,2018, 1(10), 5507.

(53)Hua X T,Ma X G*, Hu J S, He H, Xu G W, Huang C Y, Chen X B*. Controlling electronic properties of MoS2/graphene oxide heterojunctions for enhancing photocatalytic performance: the role of oxygen.Phys. Chem. Chem. Phys.,2018, 20, 1974.

(54)Hu J S, Ji G P,Ma X G*, He H, Huang C Y. Probing interfacial electronic properties of graphene/CH3NH3PbI3heterojunctions: A theoretical study.Appl. Surf. Sci.,2018, 440, 35.

(55)Wei Z, Hu J S, Zhu K J, Wei W Q,Ma X G, Yongfa Zhu*. Self-assembled polymer phenylethnylcopper nanowires for photoelectrochemical and photocatalytic performance under visible light.Appl. Catal. B: Environ.,2018, 226, 616.

(56)马新国,徐国旺,黄楚云,王贝,宋振,倪晓宇,吕辉.纤铁矿型TiO2纳米片层结构的稳定性与电子结构研究.原子与分子物理学报,2017, 34(1), 124.

(57)Ma X G*, Wei Y, Wei Z, He H, Huang C Y, Zhu Yongfa. Probing π-π stacking modulation of g-C3N4/graphene heterojunctions and corresponding role of graphene on photocatalytic activity.J. Colloid Interf. Sci.,2017, 508, 274.

(58)Wei Z, Liu D, Wei W Q, Chen X J, Han Q,Ma X G*, Zhu Y F*. Ultrathin TiO2(B) nanosheets as the inductive agent for transfrering H2O2into superoxide radicals.ACS Applied Materials & Interfaces,2017, 9(18), 15533.

(59)Yuxuan Chen(学生),Xinguo Ma*(通讯作者), Di Li, Huihu Wang and Chuyun Huang. Mechanism of enhancing visible-light photocatalytic activity of BiVO4via hybridization of graphene based on a first-principles study.RSC Adv., 2017, 7, 4395–4402. SCI

(60)ZHU Lin(学生),MA Xin-Guo(通讯作者), WEI Yang, CHU Liang, WANG Hui-Hu, HUANG Chu-Yun.Origin of Photocatalytic Activity of BiPO4: the First-principles Calculations.Chinese J. Struct. Chem.2017, 36, 1299–1306. SCI

(61)Mei F(学生),Ma X G(通讯作者), Bie Y, Xu G W. Probing hydrogen adsorption behaviors of Ti-and Ni-decorated carbon nanotube by density functional theory.Journal of Theoretical and Computational Chemistry, 2017, 16 1750065-14.SCI

(62)刘娜(学生),危阳,马新国(通讯作者),祝林,徐国旺,楚亮,黄楚云.钙钛矿APbI3结构稳定性及光电性质的理论研究.物理学报, 2017, 66, 057103–9.

(63)危阳(学生),马新国(通讯作者),祝林,贺华,黄楚云.二硫化钼/石墨烯异质结的界面结合作用及其对带边电位影响的理论研究.物理学报, 2017,66, 087101–10.

(64)Fan-qiang WANG, Hui-hu WANG, Jian WANG, Jia LU, Ping LUO, Ying CHANG,Xin-guo MA(马新国), Shi-jie DONG. Effects of low melting point metals (Ga, In, Sn) on the hydrolysis properties of aluminum alloys. Trans. Nonferrous Met. Soc. China 26 (2016) 152−159. SCI

(65)Liang Chu, Zhengfei Qin, Liu Wei,Ma Xin’guo(通讯作者).Inhibition of Charge Recombination for Enhanced Dye-Sensitized Solar Cells and Self-powered UV Sensors by Surface Modification.Applied Surface Science. 2016, 389, 802-809. SCI, 1

(66)Daluo Peng, Huihu Wang, Kun Yu, Ying Chang,Xinguo Ma(马新国)andShijie Dong.Photochemical preparation of the ternary composite CdS/Au/g-C3N4with enhanced visible light photocatalytic performance and its microstructure.RSC Adv., 2016,6, 77760-77767. SCI, 2

(67)祝林,马新国(通讯作者),刘娜,徐国旺,黄楚云.碱金属修饰g-C3N4的能带结构调控与载流子迁移过程.物理化学学报. 2016, 32 (10), 2488-2494. SCI

(68)LIU Na, HUANG Chu-Yun, XU Guo-Wang, CHU Liang,MA Xin-Guo(通讯作者).Organic Cation Effect on the Physical Properties of CH3NH3PbI3Perovskite from the First-principles Study. Chinese J. Struct. Chem. 2016, 35, 1297-1305. SCI

(69)Ma Xinguo, Yan Jie, Liu Na, Zhu Lin, Wang Bei, Huang Chuyun, Lv Hui. Effect of relaxation on the energetics and electronic structure of clean Ag3PO4(111) surface.Journal of Semiconductors2016, 37, 033001-6 EI

(70)X G Ma(马新国), Y F Liu, N Liu, J C Ren, G W Xu, L Chu, H Lv, C Y Huang and Y F Zhu.Magnetic mediation effect of C impurity in Mn-doped Zn12O12nanocluster: a case of multiple exchange interactions.J. Phys.: Condens. Matter.201527: 6~362.SCI

(71)马新国,刘娜,祝林,徐国旺,黄楚云*.立方相Ag3PO4(111)面原子几何及弛豫结构的第一性原理计算.原子与分子物理学报,2015, 6, 1064.

(72)马新国,严杰,陈紫梦,祝林,徐国旺,黄楚云*,吕辉.贵金属Pt和Au修饰锐钛矿型TiO2(101)面的第一性原理研究.无机材料学报,2016, 31, 291.

(73)Yanfang Liu, Wenqing Yao, Di Liu, Ruilong Zong, Mo Zhang,Xinguo Ma, Yongfa Zhu. Enhancement of Visible Light Mineralization Ability and Photocatalytic Activity of BiPO4/BiOI via Charge Transfer,Applied Catalysis B: Environmental,163 (2015) 547–553.SCI 高被引

(74)Di Li, Xiaojuan Bai, Jing Xu,Xinguo Ma.Synthesis of CdWO4nanorods and investigation of the photocatalytic activity,Phys. Chem. Chem. Phys.,2014, 16 (1), 212 – 218. SCI

(75)Xu Wenhui,Ma Xinguo(通讯作者), Wu Tong, He Zhiqi, Wang Huihu, and Huang Chuyun. First-principles study on the synergistic effects of codoped anatase TiO2photocatalysts codoped with N/V or C/Cr. Journal of Semiconductors, 2014, 35(10):102002~1020028. EI

(76)Xinguo Ma, Ying Wu, Yanhui Lv, and Yongfa Zhu. Correlation Effects on Lattice Relaxation and Electronic Structure of ZnO within the GGA+U Formalism.J. Phys. Chem. C,2013, 117,26029~26039. SCICited202

(77)Xinguo Ma, Yanhui Lv, Jing Xu, Yanfang Liu, Ruiqin Zhang,andYongfa Zhu*. A Strategy of Enhancing the Photoactivity of g-C3N4via Doping of Nonmetal Elements: A First-principles Study.J. Phys. Chem. C,2012,116(44), 23485~23493.SCICited721

(78)LIU Yan-Fang,MA Xin-Guo*, YI Xin, ZHU Yong-Fa*. Controllable Synthesis and Photocatalytic Performance of Bismuth Phosphate Nanorods.Acta Phys. Chim. Sin.,2012,28(03): 654~660.Cited36

(79)Yanhui Lv, Chengsi Pan,Xinguo Ma, Ruilong Zong, Xiaojuan Bai, Yongfa Zhu. Production of visible activity and UV performance enhancement of ZnO photocatalyst via vacuum deoxidation.Applied Catalysis B:Environmental, 2013, 139-139, 26~32.Cited223

(80)Xinguo Ma, Ying Wu, Yanhui Lu, Jing Xu,Yongfa Zhu*. Effect of Compensated Codoping on the Photoelectrochemical Properties of Anatase TiO2Photocatalyst.J. Phys. Chem. C,2011, 115(34), 16963~16969.Cover PaperSCICited163

(81)Lu, Bin,Xinguo Ma, Chengsi Pan,Yongfa Zhu*. Photocatalytic and photoelectron- chemical properties of in situ carbon hybridized BiPO4films.Applied Catalysis A, General, 2012, 93(6): 435-436 (ISSN: 0926-860X). SCI.Cited44

(82)Chengsi Pan, Di Li,Xinguo Ma, Yi Chen and Yongfa Zhu*.Effects of distortion of PO4 tetrahedron on the photocatalytic performances of BiPO4.Catal. Sci. Technol.,2011, 1, 1399~1405. SCICited177

(83)Xinguo Ma, Bin Lu, Di Li, Rui Shi, Chenshi Pan,Yongfa Zhu*.Origin of Photocatalytic Activation of Silver Orthophosphate from first-principles.J. Phys. Chem. C2011, 115(11), 4680~4687. SCICited333

(84)XinGuo Ma, JianJun Jiang*, Pei Liang, ZhongYou Wang and ChuanKun Zhang, Electronic structure and magnetism of Fe3Al1-xSixalloys.Intermetallics2010, 18: 2399~2403. SCI

(85)Xinguo Ma, Ling Miao, Shaowei Bie, and Jianjun Jiang*. Synergistic Effect of V/N-Codoped Anatase TiO2Photocatalysts.Solid State Communications.2010, 150: 689~692. SCI

(86)XinGuo Ma, JianJun Jiang*, PeiLiang, Juan Wang, Qiang Ma and QuanKun Zhang, Structural stability and magnetism of γ'-Fe4N and CoFe3N Compounds.Journal of Alloys and Compounds, 2009, 480: 475~480.SCI

(87)XinGuo Ma,P Liang, L Xu, Q K Zhang, L Miao, J J Jiang*. Theoretical Study of Pressure-induced Phase Transition and Elastic Properties of TiO2Polymorphs.Phys. Status Solidi (B), 2009, 246, 9: 2132~2139. SCI

(88)Xin-guo Ma, Jian-jun Jiang*, Pei Liang. Theory study of native point defects on anatase TiO2(101) surface.Acta Phys. Sin., 2008, 57: 3120~3125.

......(部分文献未列)

近期参加的学术会议:

(1) Ma Xinguo, Yuan Gang; Interfacial barrier modulation of novel two-dimensional Janusheterostructures, 2022 International Symposium on Semiconductor and Electronic Technology, Fuzhou City, Fujian Province, August 12, 2022 to August 14, 2022 (Invited Report)

(2) Ma Xinguo, Asymmetricnanostructuredrivendownloadstreamfastmigrationmechanism andbandregulation, 2nd Energy Chemistry Youth Forum of the Chinese Chemical Society, Chengdu, Sichuan, October 27, 2023 to October 29, 2023 (Invited Report)

(3) Ma Xinguo, Probing the stability and piezoelectric properties of cation–doped AlN thin films by first–principles calculations, The 4th International Conference on Electrochemical Energy Systems, Nanchang, Jiangxi, October 22, 2023 (Invited Report)

(4) Ma Xinguo, Two-dimensional Janus monolayers: mechanism of photocatalytic hydrogen production from water using first-principles study. Seminar on Environment and Energy Catalysis for Carbon Neutrality from November 24, 2024 to November 26, 2024 (Conference Report)

(5) Ma Xinguo, Preparation of AlScN Piezoelectric Thin Films and Application of RF Devices, Chair of the 5th National Conference on Optoelectronic and Photonic Materials and Devices in 2024, Kunming, December 7, 2024 (Invited Report)

(6) Ma X G , Surface interface hybridization induces rapid separation of photogenerated charge carriers and band regulation mechanism, Sixth International Conference on Optoelectronic Science and Materials (ICOSM 2024), July 29, 2024 (Invited Report)


指导学生工作业绩:


指导的多名本科生获“湖北省大学生科研成果奖”等,指导的多名研究生获“校毕业生优秀十佳”、“校研究生优秀学术新星”等称号,以及10余人次研究生国家奖学金等。欢迎报考本团队的硕士生/博士生。

联系方式:maxg@hbut.edu.cn;北三楼(太阳能大楼)205