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个人简介

导师简历: 1.教育经历 2000.9-2004.6武汉工程大学,获无机非金属材料科学与工程专业学士学位; 2004.9-2006.6江苏大学,获材料学专业硕士学位; 2006.9-2009.6江苏大学,获材料学专业博士学位。 2.工作经历 2009-至今扬州大学副教授,硕士研究生导师 期间: 2013-2014美国佐治亚理工学院和托莱多大学,国家公派访问学者

研究领域

研究方向:负热膨胀功能材料

研究内容: 负热膨胀材料是一种具有特殊性能的新型功能材料,在航空航天、光学、微电子和微机械等领域具有巨大的潜在应用价值。目前课题组其相关研究主要集中在该系列材料的陶瓷、薄膜、粉体超细化、低温制备和相关复合材料,系统分析负热膨胀的制备工艺、成分、结构和性能的关系,考察不同系列负热膨胀材料的负热膨胀性能规律及其机理,并测试其相应力学、光学和介电等性能。开发设计负热膨胀材料和其复合材料的相关器件,为其今后的应用和研究提供所需的基础理论和技术数据。 科研项目: 1、国家自然科学基金项目“基于同步辐射的A2-xScxMo3O12(A=Al,Fe,Cr,In)相变调控及负膨胀性能与机理研究”,项目编号:51602280; 2、国家自然科学基金项目“AM2O8(A=Zr,Hf;M=W,Mo)薄膜的制备和负热膨胀性能研究”,项目编号:51102207; 3、江苏省高校基金项目“Sc2M3O12(M=W,Mo)薄膜制备与性能研究”项目编号:14KJB430025 专利技术 [1]刘红飞,程晓农,等。一种负热膨胀材料ZrW2O8薄膜的制备方法(射频磁控溅射法)(申请号:200810156933.4) [2]程晓农,刘红飞,等。一种负热膨胀材料ZrW2O8薄膜的制备方法(脉冲激光沉积法)(申请号:200810156934.9) [3]程晓农,张志萍,徐桂芳,刘红飞,等。一种可控热膨胀材料ZrW2O8/ZrO2复合材料的制备方法(申请号:200810156929.8)

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[1]HongfeiLiu,WeikangSun,XiangXie,LuYang,ZhipingZhang,MinZhou,XianghuaZeng,XiaobingChen,AdjustablethermalexpansionpropertiesinZr2MoP2O12/ZrO2ceramiccomposites,Front.Chem.6:347,2018. [2]ZhipingZhang,WeikangSun,QianZheng,HongfeiLiu*,MinZhou,WeiWang,XiaobingChen,TuningthephasetransitiontemperatureofCr2(MoO4)3byA-sitesubstitutionofscandium,CeramicsInternational,https://doi.org/10.1016/j.ceramint.2018.08.329. [3]HongfeiLiu*,WeikangSun,ZhipingZhang,MinZhou,XiangdongMeng,XianghuaZeng,Tailorablethermalexpansionandhygroscopicpropertiesofcerium-substitutedY2W3O12,CeramicsInternational,751:49-55,2018. [4]ZhipingZhang,WeikangSun,HongfeiLiu*,GuanhuaXie,XiaobingChen,XianghuaZeng,SynthesisofZr2WP2O12/ZrO2compositeswithadjustablethermalexpansion,Front.Chem.5:105,2017. [5]ZhipingZhang,LuYang,Qinyizhu,QianZheng,HongfeiLiu*,MinZhou,XianghuaZeng,XiaobingChen,PhasetransitionandnegativethermalexpansionpropertiesinisovalentlysubstitutedIn2−xScx(MoO4)3ceramics,CeramicsInternational,43:12013-12017,2017. [6]HongfeiLiu*,LuYang,ZhipingZhang,KunminPan,FangZhang,HonghuiCheng,XianghuaZeng,XiaobingChen,Preparationandoptical,nanomechanical,negativethermalexpansionpropertiesofSc2W3O12thinfilmgrownbypulsedlaserdeposition,CeramicsInternational,42:8809-8814,2016. [7]ZhipingZhang,LuYang,HongfeiLiu*,KunminPan,WeiWang,XianghuaZeng,XiaobingChen,PreparationandnegativethermalexpansionpropertiesofY2W3O12thinfilmsgrownbypulsedlaserdeposition,CeramicsInternational,42:18902-18906,2016. [8]LindsayYoung,PabloTorricoAlvarez,HongfeiLiu,CoraLind*,ExtremelylowtemperaturecrystallizationintheA2M3O12familyofnegativethermalexpansionmaterials,EuropeanJournalofInorganicChemistry,8:1251-1256,2016. [9]HongfeiLiu*,ZhipingZhang,JianMa,ZhuJun,XianghuaZeng,EffectofisovalentsubstitutiononphasetransitionandnegativethermalexpansionofIn2-xScxW3O12ceramics,CeramicsInternational,41:9873-9877,2015. [10]HongfeiLiu*,ZhipingZhang,KunminPan,JianMa,LuYang,XianghuaZeng,EffectsofsubstratetemperatureandoxygenpressureinpulsedlaserdepositedZrW1.5Mo0.5O8thinfilms,CeramicsInternational,41:11918-11921,2015. [11]HongfeiLiu,etal,ZrW1.5Mo0.5O8薄膜的制备及其负热膨胀性能研究,真空科学与技术学报,2015,35(4):439-443。 [12]HongfeiLiu,GangWang,ZhipingZhang,KunminPan,XianghuaZeng.SynthesisofnegativethermalexpansionHfW2O8thinfilmusingpulsedlaserdeposition,CeramicsInternational,201440:13855–13859. [13]HongfeiLiu,etal,PhasetransitionandnegativethermalexpansioninIn2W3O12ceramics,JournaloftheChineseCeramicSociety,2014,42(9):1116-1120. [14]HongfeiLiu,etal,Synthesis,phasetransitionandnegativethermalexpansionpropertyofHfW2O8ceramics,JournaloftheChineseCeramicSociety,2014,42(9):718-722. [15]HongfeiLiu,KunminPan,QuJin,etal.NegativethermalexpansionandshiftinphasetransitiontemperatureinMo-substitutedZrW2O8thinfilmspreparedbypulsedlaserdeposition,CeramicsInternational,201440:3873–3878. [16]HongfeiLiu,ZhipingZhang,WeiZhang,etal.SynthesisandnegativethermalexpansionpropertiesofYb2−xLaxW3O12(0≤x≤2),CeramicsInternational,201339:2781-2786. [17]HongfeiLiu,XiaocenWang,ZhipingZhang,etal,SynthesisandthermalexpansionpropertiesofY2−xLaxMo3O12(x=0,0.5,2),CeramicsInternational,201238(8):6349-6352. [18]HongfeiLiu,WeiZhang,ZhipingZhang,etal.SynthesisandnegativethermalexpansionpropertiesofsolidsolutionsYb2−xLaxW3O12(0≤x≤2),CeramicsInternational,201238(4):2951-2956. [19]HongfeiLiu,ZhipingZhang,WeiZhang,etal.EffectsofHClconcentrationonthegrowthandnegativethermalexpansionpropertyoftheZrW2O8nanorods,CeramicsInternational,201238(2):1341-1345. [20]HongfeiLiu,ZhipingZhang,WeiZhang,etal.NegativethermalexpansionZrW2O8thinfilmspreparedbypulsedlaserdeposition,Surface&CoatingsTechnology,2011,205:5073-5076. [21]HongfeiLiu,ZhipingZhang,WeiZhang,etal.GrowthandstressdistributionsofnegativethermalexpansionZrW2O8FilmsdepositedbyRFmagnetronsputtering,JournalofVacuumScienceandTechnology,201131(3):253-257. [22]HongfeiLiu,XiaonongCheng,ZhipingZhang,etal.PreparationandpropertiesofnegativethermalexpansionZrW2O8thinfilmsdepositedbyradiofrequencymagnetronsputtering.PhysicaStatusSolidiB,2008,245(11):2509-2513. [23]HongfeiLiu,ZhipingZhang,XiaonongCheng,etal.SynthesisandpropertiesofnegativethermalexpansionZrW2O8thinfilmsdepositedbypulsedlaserdeposition.JournaloftheChineseCeramicSociety.2009,37(5):755-758. [24]HongfeiLiu,ZhipingZhang,XiaonongCheng,etal.ThermalexpansionofZrO2-ZrW2O8compositespreparedusingco-precipitationroute,InternationalJournalofModernPhysicsB,2009,23(6):1449-1454. [25]HongfeiLiu,ZhipingZhang,XiaonongCheng,etal.ZrW2O8/ZrO2filmgrowthanditscompositetargetfabrication,JournalofVacuumScienceandTechnology,200929(6):686-689. [26]HongfeiLiu,XiaonongCHENG,JuanYang,etal.PreparationandCharacterizationofNucleus/ShellTiO2/HAPComplexNanophotocatalyst,JournalofMaterialsScience&Technology,2007,23(01):55-60。 [27]HongfeiLiu,ZhipingZhang,XiaonongCheng,etal.Effectsofpost-depositionannealingonZrW2O8thinfilmsbyradiofrequencymagnetronsputtering,RareMetalMaterialsandEngineering,2009,38(7):1284-1287. [28]HongfeiLiu,ZhipingZhang,XiaonongCheng,etal.EffectsofpreparationmethodonmicrostructureandthermalexpansionpropertyofZrO2-ZrW2O8composites,JournalofFunctionalMaterials,2008,39(10):1673-1676. [29]HongfeiLiu,XiaonongCheng,ZhipingZhang,etal.GrowthandcharacteristicsofZrW2O8filmsbyrfmagnetronsputteringofdifferentceramiccompositetarget,JournalofVacuumScienceandTechnology,2008,28(6):498-502.

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