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樊慧庆

姓名 樊慧庆
性别
学校 西北工业大学
部门 材料学院
学位 工学博士学位
学历 博士研究生毕业
职称 正高
联系方式 029-88494463
邮箱 hqfan@nwpu.edu.cn
   
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个人经历 personal experience 工作经历 教育经历 樊慧庆  教授、博士生导师,从事光电功能材料与器件研究。ResearcherID:F-5795-2011ORCID iD:0000-0002-1405-9279谷歌学术:https://scholar.google.com/citations?user=BykwQ5YAAAAJ&hl=en 2012.02-   至今  :国际学术期刊 Journal of Alloys and Compounds(IF=6.371 冶金工程1区 Top期刊)的 Editor2017.03-   至今  :国际学术期刊 Scientific Reports(IF=4.996 综合期刊3区 Nature开刊)的 Editor2023.01-   至今  :国际学术期刊 Materials Science and Engineering B(IF=3.407 材料科学3区)的 Editor2003.05-   至今  :西北工业大学 博士生导师2003.03-   至今  :西北工业大学 教授2002.09-2003.03:西北工业大学 副教授2002.02-2002.08:Seoul National University, BK 21 Assistant Professor2000.02-2002.01:Seoul National University, Post-Doc Research Fellow1998.06-2000.02:西北工业大学 凝固技术国家重点实验室 博士后 1995.03-1998.06:西安交通大学 电子材料与元器件 工学博士  1992.09-1995.03:西安交通大学 电子材料与元器件 工学硕士  1988.09-1992.07:西安交通大学 应用物理 理学学士

教育教学

教育教学 Education and teaching 教育教学 主讲本科生《电子信息材料》(现《智能与敏感材料》)、硕士生《固体化学》和博士生《功能介质理论基础》课程。已培养了出站博士后9人、毕业博士42人、毕业硕士78人。50余位在读博士、硕士研究生相继获得国家奖学金、优秀毕业生、校院等各类奖学金。与法国巴黎中央理工大学(刘来君博士,合作人:H Dammak教授、MP Thi博士)、英国谢菲尔德大学(任鹏荣博士,合作人:AR West教授)、利兹大学(时婧博士,合作人:AJ Bell教授)、曼彻斯特大学(贾晓华博士,合作人:PO' Brien教授)、克兰菲尔德大学(彭彪林博士,合作人:Q Zhang教授)、玛丽女王大学(刘霄博士,合作人:F Carpi教授  )、美国北卡罗来纳大学(介燕妮博士,合作人:W You教授)、宾州州立大学(陈雷博士,合作人:TR Shrout教授及SJ Zhang教授)、新加坡国立大学(张明昌博士,合作人:JM Xue教授)、南洋理工大学(方佳文硕士,合作人:LB Kong教授)、香港理工大学(柯善明博士、谭晓惠硕士、马龙涛硕士,合作人:HT Huang教授)开展了联合培养博士、硕士研究生。 西北工业大学优秀博士学位论文指导教师:柯善明,《高介电常数材料的电学行为与介电弛豫研究》,2012年;龙昌柏,《高性能铋层状材料成分调控与结构研究》,2016年;彭彪林,《钙钛矿弛豫铁电体的制备与强场电学性能研究》,2016年;田海林,《氧化锌异质结纳米材料制备及传感器特性研究》,2020年。西北工业大学优秀硕士学位论文指导教师:陈秀丽,《铅基钙钛矿铁电材料的水热制备技术研究》,2006年;李创,《自由空间左手材料设计及其电磁波传输特性研究》,2008年;张苗华,《铌酸钾钠基织构压电陶瓷制备与表征》,2009年;任鹏荣,《钛酸钡基介电调谐材料的制备与性能研究》,2011年;晏韦,《纳米Fe2O3的低温合成及其改性研究》,2012年;黄丽梅,《多维多级纳米氧化锌的低温合成及改性研究》,2013年;蔡雨,《多级多孔ZnO纳米结构的低温制备与性能研究》,2014年;郭昱辰,《钛酸铋钠基无铅压电陶瓷的制备与改性研究》,2015年;方佳文,《类石墨氮化碳与纳米氧化锌的制备及其催化性能研究》,2016年;赵玉伟,《铋层状铁电材料的成分调控与工艺改性研究》,2017年;王超,《纳米氮化碳的组织构筑与光催化性能研究》,2019年;闫奔奔,《钛酸铋钠基弛豫铁电陶瓷的电学性能研究》,2021年;侯丁伟,《铋层状结构铁电体制备及其高温压电性能的研究》,2023年。指导教师:Xiaohu Ren,  Huiqing Fan, Weijia Wang, Excellence Award for the Best Presentation of A Young Scientist (1 Prize ), Alternative Energy PhD Students Innovation Forum, ASRTU SUMMIT 2018, July 9-16, 2018, Yekaterinburg, Russia.任鹏荣,樊慧庆,海报最佳报告奖,中国物理学会2010秋季学术会议,2010年9月16-19日,南开大学,天津。2  西北工业大学青年学者奖,2009年度。 2  西北工业大学奖教金,2006-2007学年。 2  西北工业大学优秀青年教师,2004年度。 2  华秦奖教金一等奖,2004-2006学年。 2  华秦奖教金一等奖,2006-2007学年。 2  华秦奖教金二等奖,2007-2008学年。 2  华秦奖教金二等奖,2008-2009学年。

荣誉获奖

荣誉获奖 Awards Information 1、陕西高等学校科学技术奖(一等奖、2021、第一完成人)2、陕西省自然科学优秀学术论文奖(一等奖、2017、通讯作者)3、广西科技奖励-自然科学奖(二等奖、2017、第二完成人)4、陕西高等学校科学技术奖(一等奖、2016、第一完成人)5、陕西省优秀博士学位论文(2人、2016、指导教师)6、陕西省中青年科技创新领军人才(2015)7、陕西省科学技术奖(二等奖、2013、第一完成人)8、陕西高等学校科学技术奖(一等奖、2010、第一完成人)9、陕西省自然科学优秀学术论文奖(三等奖、2010、通讯作者)10、陕西省优秀留学回国人员(2009)11、中国航空学会青年科技奖(2007)12、陕西省科学技术奖(三等奖、2007、第一完成人)13、陕西高等学校科学技术奖(一等奖、2006、第一完成人)14、教育部新世纪人才(2005)15、陕西青年科技奖(2004)16、教育部优秀青年教师(2003)17、陕西省优秀博士学位论文(1999)

科学研究

科学研究 Scientific Research 主持国家重点研发计划、国家自然科学基金等项目40余项,在Advanced Functional Materials、Nano Energy、Advanced Electronic Materials、Journal of Materials Chemistry A和Scientific Reports等期刊发表学术论文650篇,被SCI收录630篇、并被引用2万余次,15篇论文入选ESI高被引论文,2篇论文入选ESI热点论文,获授权国家发明专利45项, 出版《电子信息材料》、《功能介质理论基础》、《固体化学》和《材料物理》,培养出站博士后9位、毕业博士、硕士研究生130余位。

学术成果

社会兼职 Social Appointments 中国物理学会终身会员中国材料研究学会高级会员中国光学学会会员及光电技术专业委员会委员中国电子学会高级会员及气湿敏专业委员会委员中国仪表功能材料学会电子元器件关键材料与技术专业委员会常务委员中国航空学会会员西安纳米科技学会理事《电子元件与材料》编委《Materials Science & Engineering B》编辑《Nanomaterials》编辑《International Journal of Applied Ceramic Technology》编辑《Scientific Reports》编辑30余次的国际学术会议国际顾问委员会委员、组织委员会委员、分会主席和邀请报告人20余次的国内学术会议分会主席和邀请报告人

综合介绍

学术成果 Academic Achievements  H因子为78,引用次数超过78次的78篇代表论文如下标题引用次数年份[1].      Nitrogen self-doped graphitic carbon nitride as efficient visible light   photocatalyst for hydrogen evolutionJ Fang, H Fan, M Li, C LongJournal of Materials Chemistry A 3   (5), 13819-138264552015[2].      Zeolitic imidazolate framework coated ZnO nanorods as molecular sieving   to improve selectivity of formaldehyde gas sensorH Tian, H Fan, M Li, L MaACS sensors 1 (3), 243-2503982016[3].      A giant electrocaloric effect in nanoscale antiferroelectric and   ferroelectric phases coexisting in a relaxor Pb0. 8Ba0. 2ZrO3 thin film at   room temperatureB Peng, H Fan, Q ZhangAdvanced Functional Materials 23 (23),   2987-29923532013[4].      Multilayered ZnO nanosheets with 3D porous architectures: synthesis and   gas sensing applicationJ Li, H Fan, X JiaThe Journal of Physical Chemistry C   114 (35), 14684-146913442010[5].      Pt-decorated zinc oxide nanorod arrays with graphitic carbon nitride   nanosheets for highly efficient dual-functional gas sensingH Tian, H Fan, J Ma, Z Liu, L Ma, S   Lei, J Fang, C LongJournal of hazardous materials 341,   102-1112702018[6].      Protonation of Graphitic Carbon Nitride (g-C3N4)   for an Electrostatically Self-Assembling Carbon@g-C3N4 Core–Shell   Nanostructure toward High Hydrogen …L Ma, H Fan, K Fu, S Lei, Q Hu, H   Huang, G HeACS Sustainable Chemistry &   Engineering 5 (8), 7093-71032562017[7].      Effects of depositing temperatures on structure and optical properties   of TiO2 film deposited by ion beam assisted electron beam evaporationC Yang, H Fan, Y Xi, J Chen, Z LiApplied Surface Science 254 (9),   2685-26892362008[8].      Giant strain with low hysteresis in A-site-deficient (Bi0. 5Na0. 5)   TiO3-based lead-free piezoceramicsT Li, X Lou, X Ke, S Cheng, S Mi, X   Wang, J Shi, X Liu, G Dong, H Fan, ...Acta Materialia 128, 337-3442342017[9].      The n-ZnO/n-In2O3 heterojunction formed by a surface-modification and   their potential barrier-control in methanal gas sensingL Ma, H Fan, H Tian, J Fang, X QianSensors and Actuators B: Chemical 222,   508-5162252016[10].   Flexible Lead-Free BiFeO3/PDMS-Based Nanogenerator as   Piezoelectric Energy HarvesterX Ren, H Fan, Y Zhao, Z LiuACS applied materials & interfaces   8 (39), 26190-261972152016[11].   Water-assisted ions in situ intercalation for porous polymeric   graphitic carbon nitride nanosheets with superior photocatalytic hydrogen   evolution performanceL Ma, H Fan, J Wang, Y Zhao, H Tian, G   DongApplied Catalysis B: Environmental   190, 93-1022072016[12].   Giant electric energy density in epitaxial lead‐free thin   films with coexistence of ferroelectrics and antiferroelectricsB Peng, Q Zhang, X Li, T Sun, H Fan, S   Ke, M Ye, Y Wang, W Lu, H Niu, ...Advanced Electronic Materials 1 (5),   15000522062015[13].   Sol–gel derived CaCu3Ti4O12 ceramics: synthesis, characterization and   electrical propertiesL Liu, H Fan, P Fang, X ChenMaterials Research Bulletin 43 (7),   1800-18071992008[14].   Perovskite stabilization and electromechanical properties of   polycrystalline lead zinc niobate–lead zirconate titanateH Fan, HE KimJournal of Applied physics 91 (1),   317-3221962002[15].   Large energy storage density and high thermal stability in highly   textured (111)-oriented Pb0. 8Ba0. 2ZrO3 relaxor thin film with coexistence   of antiferroelectric and …B Peng, Q Zhang, X Li, T Sun, H Fan, S   Ke, M Ye, Y Wang, W Lu, HB Niu, ...ACS applied materials & interfaces   7 (24), 13512–135171942015[16].   3D hierarchical CoWO4/Co3O4 nanowire arrays for asymmetric   supercapacitors with high energy densityM Zhang, H Fan, N Zhao, H Peng, X Ren,   W Wang, H Li, G Chen, Y Zhu, ...Chemical Engineering Journal 347,   291-3001852018[17].   Surface defects control for ZnO nanorods synthesized by quenching and   their anti-recombination in photocatalysisJ Fang, H Fan, Y Ma, Z Wang, Q ChangApplied Surface Science 332, 47-541832015[18].   Hierarchical Co3O4/PANI hollow nanocages: synthesis and application for   electrode materials of supercapacitorsX Ren, H Fan, J Ma, C Wang, M Zhang, N   ZhaoApplied Surface Science 441, 194-2031792018[19].   Large Electrostrictive Strain in (Bi0. 5Na0. 5) TiO3–BaTiO3–(Sr0. 7Bi0.   2) TiO3 Solid SolutionsJ Shi, H Fan, X Liu, AJ BellJournal of the American Ceramic   Society 97 (3), 848-851602014[20].   Relaxor behavior in CaCu3Ti4O12 ceramicsS Ke, H Huang, H FanApplied Physics Letters 89 (18)1582006[21].   Energy storage properties of NaNbO3-CaZrO3 ceramics with coexistence of   ferroelectric and antiferroelectric phasesZ Liu, J Lu, Y Mao, P Ren, H FanJournal of the European Ceramic   Society 38 (15), 4939-49451542018[22].   Synthesis of Cu 2 O/ZnO hetero-nanorod arrays with enhanced visible   light-driven photocatalytic activityX Zou, H Fan, Y Tian, S YanCrystEngComm 16 (6), 1149-11561522014[23].   Colossal permittivity and impedance analysis of niobium and aluminum   co-doped TiO 2 ceramicsG Liu, H Fan, J Xu, Z Liu, Y ZhaoRSC advances 6 (54), 48708-487141412016[24].   Preparation of partially-cladding NiCo-LDH/Mn3O4 composite by   electrodeposition route and its excellent supercapacitor performanceN Zhao, H Fan, M Zhang, C Wang, X Ren,   H Peng, H Li, X Jiang, X CaoJournal of Alloys and Compounds 796,   111-1191392019[25].   Composition‐ and Temperature‐Dependent Large Strain in (1?x)(0.8Bi0.5Na0.5TiO3–0.2Bi0.5K0.5TiO3)– xNaNbO3 CeramicsG Dong, H Fan, J Shi, M LiJournal of the American Ceramic   Society 98 (4), 1150-11551382015[26].   Giant strain response and structure evolution in (Bi0. 5Na0. 5) 0.945?   x (Bi0. 2Sr0. 7□ 0.1) xBa0. 055TiO3 ceramicsJ Shi, H Fan, X Liu, Q LiJournal of the European Ceramic   Society 34 (15), 3675-36831332014[27].   Space-charge relaxation and electrical conduction in K0.5Na0.5NbO3 at   high temperaturesL Liu, Y Huang, C Su, L Fang, M Wu, C   Hu, H FanApplied Physics A 104, 1047-10511332011[28].   Vibration catalysis of eco-friendly Na0. 5K0. 5NbO3-based   piezoelectric: an efficient phase boundary catalystA Zhang, Z Liu, B Xie, J Lu, K Guo, S   Ke, L Shu, H FanApplied Catalysis B: Environmental   279, 1193531302020[29].   Electrical heterogeneity in CaCu3Ti4O12 ceramics fabricated by sol–gel   methodL Liu, H Fan, P Fang, L JinSolid state communications 142 (10),   573-5761272007[30].   Average vs. local structure and composition-property phase diagram of   K0. 5Na0. 5NbO3-Bi?Na?TiO3 systemL Liu, M Knapp, H Ehrenberg, L Fang, H   Fan, LA Schmitt, H Fuess, ...Journal of the European Ceramic   Society 37 (4), 1387-13991252017[31].   Enhanced energy-storage performance and dielectric characterization of   0.94 Bi0. 5Na0. 5TiO3–0.06 BaTiO3 modified by CaZrO3Q Li, J Wang, Y Ma, L Ma, G Dong, H   FanJournal of Alloys and Compounds 663,   701-7071202016[32].   Structural, electronic and optical properties of BiFeO3 studied by   first-principlesK Liu, H Fan, P Ren, C YangJournal of Alloys and Compounds 509   (5), 1901-19051192011[33].   Microstructures and electrical responses of pure and chromium-doped   CaCu3Ti4O12 ceramicsQ Zheng, H Fan, C LongJournal of alloys and compounds 511   (1), 90-941182012[34].   Study of pseudocapacitive contribution to superior energy storage of 3D   heterostructure CoWO4/Co3O4 nanocone arraysM Zhang, H Fan, X Ren, N Zhao, H Peng,   C Wang, X Wu, G Dong, C Long, ...Journal of Power Sources 418, 202-2101162019[35].   Noble metal-free modified electrode of exfoliated graphitic carbon   nitride/ZnO nanosheets for highly efficient hydrogen peroxide sensingH Tian, H Fan, J Ma, L Ma, G DongElectrochimica Acta 247, 787-7941152017[36].   Towards high areal capacitance, rate capability, and tailorable   supercapacitors: Co 3 O 4@ polypyrrole core–shell nanorod bundle array   electrodesL Ma, H Fan, X Wei, S Chen, Q Hu, Y   Liu, C Zhi, W Lu, JA Zapien, ...Journal of Materials Chemistry A 6   (39), 19058-190651142018[37].   Gas-sensing and electrical properties of perovskite structure p-type   barium-substituted bismuth ferriteG Dong, H Fan, H Tian, J Fang, Q LiRSC Advances 5 (38), 29618-296231142015[38].   Li-substituted K0. 5Na0. 5NbO3-based piezoelectric ceramics: crystal   structures and the effect of atmosphere on electrical propertiesC Long, T Li, H Fan, Y Wu, L Zhou, Y   Li, L Xiao, Y LiJournal of Alloys and Compounds 658,   839-8471132016[39].   Measurement of piezoelectric coefficients of lead zirconate titanate   thin films by strain-monitoring pneumatic loading methodGT Park, JJ Choi, J Ryu, H Fan, HE KimApplied physics letters 80 (24),   4606-46081132002[40].   Effects of Na/K evaporation on electrical properties and intrinsic   defects in Na0. 5K0. 5NbO3 ceramicsL Liu, H Fan, L Fang, X Chen, H   Dammak, MP ThiMaterials Chemistry and Physics 117   (1), 138-1411112009[41].   Wind energy harvester based on coaxial rotatory freestanding   triboelectric nanogenerators for self-powered water splittingX Ren, H Fan, C Wang, J Ma, H Li, M   Zhang, S Lei, W WangNano energy 50, 562-5701092018[42].   Magnetic force driven noncontact electromagnetic-triboelectric hybrid   nanogenerator for scavenging biomechanical energyX Ren, H Fan, C Wang, J Ma, S Lei, Y   Zhao, H Li, N ZhaoNano Energy 35, 233-2411082017[43].   Room-temperature solid state synthesis of Co3O4/ZnO p–n heterostructure   and its photocatalytic activityGM Reda, H Fan, H TianAdvanced Powder Technology 28 (3),   953-9631082017[44].   Intrinsic electric field assisted polymeric graphitic carbon nitride   coupled with Bi4Ti3O12/Bi2Ti2O7 heterostructure nanofibers toward enhanced   photocatalytic hydrogen evolutionY Zhao, H Fan, K Fu, L Ma, M Li, J   FangInternational Journal of Hydrogen   Energy 41 (38), 16913-169261082016[45].   NiO/ZnO p–n heterostructures and their gas sensing properties for   reduced operating temperatureH Tian, H Fan, G Dong, L Ma, J MaRSC advances 6 (110), 109091-1090981082016[46].   Lorentz-type relationship of the temperature dependent dielectric   permittivity in ferroelectrics with diffuse phase transitionS Ke, H Fan, H Huang, HLW ChanApplied physics letters 93 (11)1062008[47].   Simple electrodeposition of MoO3 film on carbon cloth for   high-performance aqueous symmetric supercapacitorsN Zhao, H Fan, M Zhang, J Ma, Z Du, B   Yan, H Li, X JiangChemical Engineering Journal 390,   1244771052020[48].   Ag/BiPO 4 heterostructures: synthesis, characterization and their   enhanced photocatalytic propertiesY Zhang, H Fan, M Li, H TianDalton Transactions 42 (36),   13172-131781052013[49].   Highly dispersed PtO nanodots as efficient co-catalyst for   photocatalytic hydrogen evolutionC Wang, H Fan, X Ren, Y Wen, W WangApplied Surface Science 462, 423-4311042018[50].   A simple melamine-assisted exfoliation of polymeric graphitic carbon   nitrides for highly efficient hydrogen production from water under visible   lightL Ma, H Fan, M Li, H Tian, J Fang, G   DongJournal of Materials Chemistry A 3   (44), 22404-224121042015[51].   Solid state synthesis of tin-doped ZnO at room temperature:   characterization and its enhanced gas sensing and photocatalytic propertiesX Jia, H Fan, M Afzaal, X Wu, P   O’BrienJournal of hazardous materials 193,   194-1991032011[52].   Enhanced energy-storage performance and dielectric temperature   stability of (1-x)(0.65 Bi0. 5Na0. 5TiO3-0.35 Bi0. 1Sr0. 85TiO3)-xKNbO3   ceramicsB Hu, H Fan, L Ning, S Gao, Z Yao, Q   LiCeramics International 44 (9),   10968-10974982018[53].   Ultra-fast synthesis and enhanced photocatalytic properties of   alpha-Fe2O3/ZnO core-shell structureW Yan, H Fan, C YangMaterials letters 65 (11), 1595-1597982011[54].   Temperature‐stable dielectric and energy storage properties of   La(Ti0.5Mg0.5)O3‐doped (Bi0.5Na0.5)TiO3‐(Sr0.7Bi0.2)TiO3 lead‐free ceramicsN Zhao, H Fan, L Ning, J Ma, Y ZhouJournal of the American Ceramic   Society 101 (12), 5578-5585972018[55].   High sensitivity and ultra-low detection limit of chlorine gas sensor   based on In2O3 nanosheets by a simple template methodJ Ma, H Fan, W Zhang, J Sui, C Wang, M   Zhang, N Zhao, AK Yadav, ...Sensors and Actuators B: Chemical 305,   127456962020[56].   Giant electro-strain and enhanced energy storage performance of (Y0.   5Ta0. 5) 4+ co-doped 0.94 (Bi0. 5Na0. 5) TiO3-0.06 BaTiO3 lead-free ceramicsB Yan, H Fan, C Wang, M Zhang, AK   Yadav, X Zheng, H Wang, Z DuCeramics International 46 (1), 281-288952020[57].   Effect of sintering temperature on the structure and properties of   cerium-doped 0.94 (Bi0. 5Na0. 5) TiO3–0.06 BaTiO3 piezoelectric ceramicsL Liu, H Fan, S Ke, X ChenJournal of alloys and compounds 458   (1-2), 504-508952008[58].   Structure and piezoelectric properties of poly (vinylidene fluoride)   studied by density functional theoryZY Wang, HQ Fan, KH Su, ZY WenPolymer 47 (23), 7988-7996952006[59].   Duplex structure in K0. 5Na0. 5NbO3-SrZrO3 ceramics with   temperature-stable dielectric propertiesZ Liu, H Fan, S Lei, X Ren, C LongJournal of the European Ceramic   Society 37 (1), 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ceramicsS Ke, H Fan, H HuangJournal of electroceramics 22, 252-256892009[65].   Effect of Lead Content on the Structure and Electrical Properties of   Pb((Zn1/3Nb2/3)0.5(Zr0.47Ti0.53)0.5)O3 CeramicsH Fan, HE KimJournal of the American Ceramic   Society 84 (3), 636-638892001[66].   In2O3/SnO2 heterojunction microstructures: Facile room temperature   solid-state synthesis and enhanced Cl2 sensing performanceP Li, H Fan, Y CaiSensors and Actuators B: Chemical 185,   110-116882013[67].   Structure, Phase Transition Behaviors and Electrical Properties of Nd   Substituted Aurivillius Polycrystallines Na0.5NdxBi2.5–xNb2O9 (x =   0.1, 0.2, 0.3, and …C Long, H Fan, P RenInorganic Chemistry 52 (9), 5045-5054882013[68].   Electrospun nanofibers of ZnO/BaTiO3 heterostructures with enhanced   photocatalytic activityP Ren, H Fan, X WangCatalysis Communications 25, 32-35872012[69].   Optical and Tunable Dielectric Properties of K0.5Na0.5NbO3–SrTiO3 CeramicsZ Liu, H Fan, Y Zhao, G DongJournal of the 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