comp. and ed .op和ed是什么意思思

中山大学化学与化学工程学院研究生导师介绍容敏智老师简介
基本情况容敏智,(RONG,MinZhi),男,1961年6月生,广东新会;博士,教授,高分子与专业和与专业博士生导师。现任中山大学与工程学院高分子与科学系副主任兼科学研究所副所长。联系方式&电话:+86-020-72(O)&传真:+86-020-&E-mail:cesrmz@mail.教育经历&83.7天津大学工程系高分子化工专业本科毕业,获学士学位。&86.4天津大学科学与工程系高分子专业硕士研究生毕业,获工学硕士学位。&94.3中山大学科学研究所博士研究生毕业,获理学博士学位。工作经历&91.2天津大学科学与工程系从事科研和教学工作。&1994.4~至今在中山大学科学研究所从事教学与科研工作。&1995年晋升为副教授。&1996年获硕士生导师资格。&2001年晋升为研究员。&2003年获博士导师资格,同时转为教授职称。&98.3在香港城市大学与科学系合作科研(高级访问学者)。&02.4在德国凯撒斯劳腾大学复合研究所合作科研(高级访问学者)。&2000.7~至今担任广东省复合学会秘书长。&2000.11~至今中国硅酸盐学会玻璃钢学会理事。&近几年在J.Polym.Sci.Polym.Chem、Polymer、Comp.Sci.Tech.,《高分子学报》等国际和国内权威刊物发表论文100余篇,大多被SCI收录并被多次正面引用(430余次)。&申请发明专利10项,4项已获授权。&参加编写专著6本,多次参加重要的国际国内学术会议。业务专长聚合物基纳米复合,功能性复合,智能,有机/无机纳米复合,高分子合成、共混物及树脂基复合的结构与性能,加工工艺及表征技术。聚合物网络的结构与性能,反应性共混及热固性树脂改性,聚合物的内耗理论等方面。讲授课程1.本科生课程:《高分子》,《高分子专业》,《高分子专业教学实验》,《今日》,《高分子加工实验与训练》;2.研究生课程:《高分子特性与复合》,《高性能聚合物及其复合》,《高分子科学进展》。科研方向1.高分子与复合。2.高分子与。3.高分子。4.聚合物基复合、有机/无机纳米复合、友好复合、智能和功能型复合。科研项目:1.高分子的高性能化与高功能化研究,广东省自然科学基金研究团队项目(01.12),核心成员之一。2.纳米粒子聚合物基复合中超细微分散、界面控制和性能,教育部重点科学技术项目(00.12),负责人。3.甚低含量纳米粒子增韧增强聚合物的研究,广东省自然科学基金项目(02.12),负责人。4.纳米无机粒子在塑料中的超细微分散,广东省自然科学基金博士启动基金项目(99.12),负责人。5.纳米无机粒子的表面涂敷与超细微分散,中科院所工程塑料国家重点实验室开发课题(98.7),负责人。6.纳米微粒/聚合物复合的阻尼特征及机制,中科院固体所内耗与固体缺陷开放研究实验室课题(97.11),负责人。7.聚合物共混物及增强复合界面阻尼机制的研究,中科院固体所内耗与固体缺陷开放研究实验室课题(96.12),负责人。近年:1.国家自然科学基金&长效型超细胶囊自愈合高分子复合的研究&(主持)2.广州市科技计划项目&高性能纳米SiO2/聚合物复合的力制备技术&(主持)3.广东省科技计划项目-重大专项&减摩耐磨纳米无机粒子/高分子复合&(主持)4.广东省自然科学基金重点项目&完全基于植物资源的纤维增强泡沫塑料&(主持)5.国家自然科学基金委员会-广东省联合基金&高分子复合的微损伤自愈合与耐久性研究&(主要成员)6.国家自然科学基金项目&减摩耐磨高分子复合中纳米填料高效利用的研究&(主持)7.广东省科技计划项目&十五&规划重大专项&非层状纳米粒子应力双渗逾结构及其增强增韧聚烯烃复合&(主持)8.广东省自然科学基金项目&甚低含量纳米粒子增韧增强聚合物的研究&(主持)9.广东省自然科学基金研究团队项目&高分子的高性能化与高功能化研究&(核心成员之一)10.教育部重点科学技术项目&纳米粒子聚合物基复合中超细微分散、界面控制和性能&(主持)11.国家杰出青年科学基金项目&高分子复合界面层各向异性结构与性能的关系&(主要成员)12.国家自然科学基金重点项目&填充型高分子导电复合多元逾渗效应及其相关功能&(主要成员)13.国家自然科学基金项目&自增强型全植物纤维高分子复合&(主要成员)14.教育部重点科学技术项目&聚合物基纳米金属粒子复合-粒子表面改性、二次结构与性能的关系研究&(主要成员)15.教育部骨干教师项目&全植物纤维复合&(主要成员)获奖情况1.1999年获得广东省医药科技进步一等奖;2.1999年获广东省科学技术进步三等奖;3.2006年获高等学校自然科学二等奖;4.2005年入选广东省&千百十人才工程&省级培养对象。论著一览论文:1.CaiLF,HuangXB,RongMZ,RuanWH,ZhangMQ,Fabricationofnanoparticle/polymercompositesbyinsitububblestretchingandreactivecompatibilization,Macromol.Chem.Phys.,),.2.CaiLF,HuangXB,RongMZ,RuanWH,ZhangMQ,Effectofgraftedpolymericfoamingagentonthestructureandpropertiesofnano-silica/polypropylenecomposites,Polymer,),.3.SreekalaMS,LehmannB,FriedrichK,RongMZ,Nanosilica-reinforcedpolypropylenecomposites:microstructuralanalysisandcrystallizationbehavior,InternationalJournalofPolymericMaterials,),577-594.4.ZhouHJ,RongMZ,ZhangMQ,FriedrichK,Effectsofreactivecompatibilizationontheperformanceofnano-silicafilledpolypropylenecomposites,JournalofMaterialsScience,),.5.LuoY,RongMZ,ZhangMQ,FriedrichK,SurfacefunctionalizationofSi3N4nanoparticlesbygraftpolymerizationofglycidylmethacrylateandstyrene,JournalofAppliedPolymerScience,),992-999.6.ZhaoB,FuRW,ZhangMQ,YangH,RongMZ,ZhengQ,Effectofsoftsegmentsofwaterbornepolyurethaneonorganicvaporsensitivityofcarbonblackfilledwaterbornepolyurethanecomposites,Polym.J.,),799-806.7.ZengW,ZhangMQ,RongMZ,ZhengQ,Gassensingconductivecompositescapableofsize-dependentmoleculardiscriminationandscreening,Smartmaterials&Structure,):.8.ZhouTH,RuanWH,YangJL,RongMZ,ZhangMQ,ZhangZ,Anovelrouteforimprovingcreepresistanceofpolymersusingnanoparticles,CompositesScienceandTechnology,-12):.9.ZengW,ZhangMQ,RongMZ,ZhengQ,Conductivepolymercompositesasgassensorswithsize-relatedmoleculardiscriminationcapability,SensorsandActuatorsB-Chemical,):118-126.10.ZhouTH,RuanWH,WangYL,MaiYL,RongMZ,ZhangMQ,Performanceimprovementofnano-silica/polypropylenecompositesthroughin-situgraftmodificationofnanoparticlesduringmeltcompounding,E-Polymers,2007,Art.No.058.11.ZhouHJ,RongMZ,ZhangMQ,RuanWH,FriedrichK,Roleofreactivecompatibilizationinpreparationofnanosilica/polypropylenecomposites,PolymerEngineeringandScience,):499-509.12.YinT,RongMZ,ZhangMQ,YangGC,Self-healingepoxycomposites-Preparationandeffectofthehealantconsistingofmicroencapsulatedepoxyandlatentcuringagent,CompositesScienceandTechnology,):201-212.13.WenHongRuan,YuLiangMai,XianHouWang,MinZhiRong,MingQiuZhang,Effectsofprocessingconditionsonpropertiesofnano-SiO2/polypropylenecompositesfabricatedbypre-drawingtechnique,CompositesScienceandTechnology,7&2756.14.YingLuo,MinZhiRong,MingQiuZhang,TribologicalBehaviorofEpoxyCompositesContainingReactiveSiCNanoparticles,J.Appl.Polym.Sci.,8&2619.15.周彤辉,阮文红,王跃林,容敏智,章明秋,原位接枝改性纳米二氧化硅/聚丙烯复合lI:性能测试,复合学报,),45-51.16.容敏智,卢殉,章明秋,剑麻增强氰乙基化木复合的研究,中山大学学报(自然科学版),),52-56.17.周红军,容敏智,章明秋,阮文红,纳米SiO/聚丙烯复合的反应性增容,高分子学报,8-164.18.容敏智,卢,章明秋,全植物纤维复合的降解性能研究,中国塑料,),64-68.19.陈仕国,户献雷,章明秋,容敏智,CB-g-WPU/WPU复合的制备与气敏响应性能,塑料工业,),12-16.20.陈兵,容敏智,羟基树脂接枝TDI改性微米SiO2及其在PU漆中的消光性能,涂料工业,),29-31.21.ZhangMingQiu,RongMinZhi,LuXun,Fullybiodegradablenaturalfibercompositesfromrenewableresources:All-plantfibercomposites,CompositesScienceandTechnology,-16),.22.ZhouHongJun,RongMinZhi,ZhangMingQiu,LehmannBjorn,FriedrichKlaus,Graftingofpoly(glycidylmethacrylate)ontonano-SiO2anditsreactivityinpolymers,PolymerJournal,),677-685.23.LiJunRong,XuJiaRui,ZhangMingQiu,RongMinZhi,ZhengQiang,TheroleofcrystallinephaseintriblockcopolymerPS-PEG-PSbasedgassensingmaterials,Polymer,),.24.WangJS,ChenXD,ZhangNQ,RongMZ,Polyurethane/polyolefinblends:Morphology,compatibilizationandmechanicalproperties,pos.,),1-11.25.ChenSG,HuJW,ZhangMQ,RongMZ,ZhengQ,Improvementofgassensingperformanceofcarbonblack/waterbornepolyurethanecomposites:Effectofcrosslinkingtreatment,SensorandActuatorsB-Chemical,),361-369.26.RuanWH,HuangXB,WangXH,RongMZ,ZhangMQ,Effectofdrawinginduceddispersionofnano-silicaonperformanceimprovementofpolypropylenebasednanocomposites,mun.,-585.27.FriedrichK,Sreekala,MS,LehmannB,容敏智,章明秋,纳米SiO2/聚丙烯复合的微观结构,复合学报,),44-50.28.FriedrichK,RongMZ,ZhangMQ,RuanWH,Preparationofnano-silica/polypropylenecompositesusingreactivecompatibilization,KeyEng.Mater.,-232.29.RongMZ,ZhangMQ,RuanWH.Surfacemodificationofnanoscalefillersforimprovingpropertiesofpolymernanocomposites:areview.Mater.Sci.Tech.-796.30.吴素平,容敏智,胡静,章明秋,丙烯酸化环氧大豆油泡沫塑料的研究,中国塑料,),59-63.31.周彤辉,阮文红,王跃林,容敏智,章明秋,原位接枝改性纳米二氧化硅/聚丙烯复合I:结构表征,复合学报,),71-76.32.LiJR,XuJR,ZhangMQ,RongMZ,Carbonblack/polystyrenecompositesascandidatesforgassensingmaterials,Carbon,),.33.RongMZ,ZhangMQ,ShiG,JiQL,WetzelB,FriedrichK,Graftpolymerizationontoinorganicnanoparticlesanditseffectontribologicalperformanceimprovementofpolymercomposites,TribologyInternational,),697-707.34.RongMZ,ZhangMQ,WangHB,ZengHM,Surfacemodificationofmagneticmetalnanoparticlesanditsinfluenceontheperformanceofpolymercomposites,J.Polym.Sci.Polym.Phys.,),.35.WuCL,ZhangMQ,RongMZ,LehmannB,FriedrichK,Functionalisationofpolypropylenebysolidphasegraftpolymerisationanditseffectonthemechanicalpropertiesofsilicananocomposites,PlasticsRubberandComposites,),445-450.36.DongXM,FuRW,ZhangMQ,QinZP,ZhangB,RongMZ,Effectsofprocessingonelectricresponseofcarbonblackfilledpoly(methylmethacrylate)compositesagainstorganicsolventvapors,PolymerJ.,),.37.ZhangMQ,RongMZ,Performanceimprovementofpolymersbytheadditionofgraftednano-inorganicparticles,ChineseJ.ofPolymerSci.,),587-602.38.DongXM,FuRW,ZhangMQ,ZhangB,RongMZ,Electricalresistanceresponseofcarbonblackfilledamorphouspolymercompositesensorstoorganicvaporsatlowvaporconcentrations,Carbon,-13),.39.WuCL,ZhangMQ,RongMZ,LehmannB,FriedrichK,Functionalisationofpolypropylenebysolidphasegraftpolymerisationanditseffectonmechanicalpropertiesofsilicananocomposites,PlasticsRubberandComposites,-3),71-76.40.HuJW,LiMW,ZhangMQ,ChengGS,RongMZ,novelmethodforpreparingpolyurethanebasedconductivecompositeswithlowpercolationthreshold,ChineseChemicalLett.,),.41.LuoY,RongMZ,ZhangMQ,FriedrichK,SurfacegraftingontoSiCnanoparticleswithglycidylmethacrylateinemulsion,J.ofPolym.Sci.Polym.Chem.,2004.42(15),.HouYH,ZhangMQ,RongMZ,Insitumeltgraftingincarbonblack/polyolefincompositesanditsinfluenceonconductiveperformance,PolymerInternational,),944-950.43.HouYH,ZhangMQ,RongMZ,Thermallyinducedperformancedecayinconductivepolymercomposites,PolymerComposites,),270-279.44.LuJ,ZhangMQ,RongMZ,YuSL,WetzelB,FriedrichK,Thermalstabilityoffrictionalsurfacelayerandweardebrisofepoxynanocompositesinrelationtothemechanismoftribologicalperformanceimprovement,J.ofMater.Sci.,),.45.RuanWH,ZhangMQ,RongMZ,FriedrichK,Mechanicalpropertiesofnanocompositesfromballmillinggraftednano-silica/polypropyleneblockcopolymer,p.,),257-267. 46.LuX,ZhangMQ,RongMZ,YueDL,YangGC,Thepreparationofself-reinforcedsisalfibercomposites,p.,),297-307.47.ShiG,ZhangMQ,RongMZ,WetzelB,FriedrichK,Slidingwearbehaviorofepoxycontainingnano-Al2O3particleswithdifferentpretreatments,Wear,-12),.48.LuX,ZhangMQ,RongMZ,YueDL,YangGC,Environmentaldegradabilityofself-reinforcedcompositesmadefromsisal,Comp.Sci.Tech.,),.49.RongMZ,ZhangMQ,LiangHC,ZengHM,Surfacederivatizationofnano-CdSclustersanditseffectontheperformanceofUSquantumdotsinsolventsandpolymericmatrices,Appl.Surf.Sci.,-4),176-190.50.RuanWH,ZhangMQ,RongMZ,FriedrichK,Polypropylenecompositesfilledwithin-situgraftingpolymerizationmodifiednano-silicaparticles,J.Mater.Sci.,),.51.RongMZ,ZhangMQ,PanSL,FriedrichK,Interfacialeffectsinpolypropylene-silicananocomposites,J.Appl.Polym.Sci.,),.52.ChenSG,HuJW,ZhangMQ,LiMW,RongMZ,Gassensitivityofcarbonblack/waterbornepolyurethanecomposites,Carbon,),645-651.53.RongMZ,ZhangMQ,PanSL,LehmannB,FriedrichK,Analysisoftheinterfacialinteractionsinpolypropylene/silicananocomposites,PolymerInternational,),176-183.54.容敏智,章明秋,潘顺龙,FriedrichK,表面接枝改性纳米二氧化硅填充聚丙烯的结晶行为,高分子学报,4-189.55.容敏智,章明秋,梁海春,曾汉民,原位表面修饰纳米CdS粒子的表面结构和光学性能,研究学报,3-351.56.容敏智,章明秋,梁海春,曾汉民,修饰纳米CdS/聚合物的界面相互作用与光学性能,研究学报,1-138.57.HuJW,LiMW,ZhangMQ,XiaoDS,ChengGS,RongMZ,Preparationofbinaryconductivepolymercompositeswithverylowpercolationthresholdbylatexblending,MacromolecularRapidCommunications,):889-893.58.马传国,容敏智,章明秋,聚合物基复合导热模型及其应用,宇航工艺,-4.59.WuCL,ZhangMQ,RongMZ,LehmannB,FriedrichK,Deformationcharacteristicsofnano-SiO2filledpolypropylenecomposites,Polymer&PolymerComposites,):559-562.60.LiJR,XuJR,ZhangMQ,RongMZ,Carbonblack/polystyrenecompositesascandidatesforgassensingmaterials,Carbon,):.61.RongMZ,ZhangMQ,ShiG,JiQL,WetzelB,FriedrichK,Graftpolymerizationontoinorganicnanoparticlesanditseffectontribologicalperformanceimprovementofpolymercomposites,TribologyInternational,):697-707.62.DongXM,FuRW,ZhangMQ,ZhangB,RongMZ,Carbonblackfilledpoly(2-ethylhexylmethacrylate)asacandidateforgassensingmaterial,J.Mat.Sci.Lett.,):.63.LehmannB,FriedrichK,WuCL,ZhangMQ,RongMZ,Improvementofnotchtoughnessoflownano-SiO2filledpolypropylenecomposites,J.Mat.Sci.Lett.,):.64.LuX,ZhangMQ,RongMZ,ShiGA,YangGC,All-plantfibercomposites.II:Waterabsorptionbehaviorandbiodegradabilityofunidirectionalsisalfiberreinforcedbenzylatedwood,2003,Polym.Compos.,24(3):367-379.65.ShiG,ZhangMQ,RongMZ,WetzelB,FriedrichK,FrictionandwearoflownanometerSi3N4filledepoxycomposites,Wear,-8):784-796.66.HouYH,ZhangMQ,RongMZ,Performancestabilizationofconductivepolymercomposites,J.Appl.Polym.Sci.,):.67.DongXM,FuRW,ZhangMQ,ZhangB,LiJR,RongMZ,Gassensingmaterialsfromcarbonblack/poly(methylmethacrylate)composites,Polym.&pos.,):291-299.68.DongXM,FuRW,ZhangMQ,ZhangB,LiJR,RongMZ,Anovelsensorfororganicsolventvaporsbasedonconductiveamorphouspolymercomposites:carbonblack/poly(butylmethacrylate),Polym.Bull.,-2):99-106.69.DongXM,FuRW,ZhangMQ,ZhangB,LiJR,RongMZ,Vapor-inducedvariationinelectricalperformanceofcarbonblack/poly(methylmethacrylate)compositespreparedbypolymerizationfilling,Carbon,):371-374.70.PrivalkoVP,ShumskyVF,PrivalkaEG,KaramanVM,WalterR,FriedrichK,ZhangMQ,RongMZ,Viscoelasticityandflowbehaviorofirradiationgraftednano-inorganicparticlefilledpolypropylenecompositesinthemeltstate,J.Mater.Proc.Tech.,-3),208-213.71.RongMZ,ZhangMQ,WangHB,ZengHM,Surfacemodificationofmagneticmetalnanoparticlesanditsinfluenceontheperformanceofpolymercomposites,J.Polym.Sci.Polym.Phys.,),.72.LiJR,XuJR,ZhangMQ,RongMZ,Electricalresponsetoorganicvaporofconductivecompositesfromamorphouspolymer/carbonblackpreparedbypolymerizationfilling,Macro.Mater.Eng.,),103-107.73.ZhangMQ,RongMZ,ZhangHB,FriedrichK,Mechanicalpropertiesoflownano-silicafilledhighdensitypolyethylenecomposites,Polym.Eng.Sci.,),490-500.74.LuX,ZhangMQ,RongMZ,ShiG,YangGC,Self-reinforcedmeltprocessablecompositesofsisal,Compo.Sci.Tech.,),177-186.75.RongMZ,ZhangMQ,LiangHC,ZengHM,Surfacemodificationandparticlessizedistributioncontrolinnano-CdS/polystyrenecompositefilm,Chem.Phys.,-3),267-276.76.HouYH,ZhangMQ,RongMZ,Carbonblack-filledpolyolefinsaspositivetemperaturecoefficientmaterials:Theeffectofinsitugraftingduringmeltcompounding,J.Polym.Sci.Polym.Phys.,),127-134.77.马传国,容敏智,章明秋,纳米碳酸钙及其表面处理对等规聚丙烯结晶行为的影响,高分子学报,1-386.78.石光,章明秋,容敏智,纳米AL2O3填充环氧树脂复合的摩擦学性能(学术论文),摩擦学学报,),211-215.79.唐明明,容敏智,章明秋等,AL2O3的表面处理及粒子尺寸对SBR导热橡胶性能的影响,合成橡胶工业,),104-107.80.ZhangMQ,RongMZ,PanSL,FriedrichK,Tensilepropertiesofpolypropylenefilledwithnanoscalecalciumcarbonateparticles,<pos.Lett.,):293-298.81.ZhangMQ,RongMZ,YuSL,WetzelB,FriedrichK,Effectofparticlesurfacetreatmentonthetribologicalperformanceofepoxybasednanocomposites,Wear,-10),.82.RongMZ,ZhangMQ,WangHB,ZengHM,Surfacemodificationofmagneticmetalnanoparticlesthroughirradiationgraftpolymerization,Appl.Surf.Sci.,-4),76-93.83.WetzelB,HaupertF,FriedrichK,ZhangMQ,RongMZ,Impactandwearresistanceofpolymernanocompositesatlowfillercontent,Polym.Eng.Sci.,),.84.JiQL,RongMZ,ZhangMQ,FriedrichK,Graftpolymerizationofvinylmonomersontonanosizedsiliconcarbideparticles,pos.,),531-539.85.RongMZ,ZhangMQ,LiuY,ZhangZW,YangGC,ZengHM,Mechanicalpropertiesofsisalreinforcedcompositesinresponsetowaterabsorption,pos.),407-426.86.LuX,ZhangMQ,RongMZ,ShiG,YangGC,All-plantfibercomposites.I:Unidirectionalsisalfiberreinforcedbenzylatedwood,<posites,),624-633.87.WuCL,ZhangMQ,RongMZ,FriedrichK,Tensileperformanceimprovementoflownanoparticlesfilled-polypropylenecomposites,Compos.Sci.Technol.,-11),.88.RongMZ,ZhangMQ,LiuY,ZhangZW,YangGC,ZengHM,Effectofstitchingonin-planeandinterlaminarpropertiesofsisal/epoxylaminates,<pos.Mater.,),.89.PrivalkoVP,KaramanVM,PrivalkoEG,WalterR,FriedrichK,ZhangMQ,RongMZ,Viscoelasticityandflowbehaviorofirradiationgraftednano-inorganicparticlefilledpolypropylenecompositesinthemeltstate,Sci.Technol.Adv.Mater.,.90.PrivalkoVP,KaramanVM,PrivalkoEG,WalterR,FriedrichK,ZhangMQ,RongMZ,Structureandthermoelasticityofirradiationgraftednano-inorganicparticlefilledpolypropylenecompositesinthesolidstate,J.MacromolecularScience-Physics,):487-505.91.LiangHC,XiangH,RongMZ,ZhangMQ,ZengHM,WangSF,GongQH,Self-organizationofCdSnanoparticlesinpolystyrenefilm,ChinesePhys.Lett.,),871-874.92.RongMZ,JiQL,ZhangMQ,FriedrichK,Graftpolymerizationofvinylmonomersontonanosizedaluminaparticles,Eur.Polym.J.,),.93.HouYH,ZhangMQ,RongMZ,YuG,ZengHM,Improvementofconductivenetworkqualityincarbonblack-filledpolymerblends,J.Appl.Polym.Sci.,),.94.ZengR,WangSF,LiangHC,RongMZ,etal.,Nanostructuredsilver/polystyrenecompositefilm:Preparationandultrafastthird-orderopticalnonlinearity,pos.,),291-298.95.RongMZ,ZhangMQ,LiuY,YanHM,YangCG,ZengHM,Interfacialinteractioninsisal/epoxycompositesanditsinfluenceonimpactperformance,Polym.Composite,),182-192.96.ZengR,RongMZ,ZhangMQ,LiangHC,ZengHM,Laserablationofpolymer-basedsilvernanocomposites(学术论文),Appl.Surf.Sci.,-4),239-247.97.ZhangMQ,RongMZ,YuSL,WetzelB,FriedrichK,Improvementoftribologicalperformanceofepoxybytheadditionofirradiationgraftednano-inorganicparticles,Macromol.Mater.Eng.,),111-115.98.RongMZ,ZhangMQ,WangHB,LiangHC,ZengHM,Magneticmetalnanoparticlesfilledpolymercomposites,ProceedingsoftheACNU&4,UniversityofNewSouthWales,Sydney,Australia,5(ISBN:).99.ZhangMQ,RongMZ,Frictionandwearperformanceofgraftednano-SiO2/epoxycomposites,ProceedingsoftheACNU-4,UniversityofNewSouthWales,Sydney,Australia,3(ISBN:).100.吴春蕾,章明秋,容敏智,纳米SiO2表面接枝聚合改性及其聚丙烯复合的力学性能,复合学报,),61-67.101.梁海春,容敏智,章明秋,曾汉民,微乳液法制备纳米银粒子的结构及其荧光现象研究,学报,),49-54.102.容敏智,章明秋,郑永祥,曾汉民,纳米SiO2增韧增强聚丙烯的界面效应与逾渗行为,复合学报,),1-4.103.吴春蕾,章明秋,容敏智,聚丙烯固相接枝苯乙烯和丙烯酸乙酯的研究,中国塑料,),48-52.104.李军荣,许家瑞,章明秋,容敏智,填充型聚合物基气敏导电复合,导报,),48-51.105.陈慧文,容敏智,章明秋,分子与纳米自组装的研究进展,导报,),59-61.106.马传国,容敏智,章明秋,导热高分子复合的研究与应用,工程,-45.107.卢询,章明秋,容敏智,剑麻纤维增强聚合物基复合,复合学报,),1-6.108.容敏智,章明秋,王红兵,纳米磁性粒子/聚合物复合的界面与特性控制,复合-生命、与高技术,天津大学出版社,2002,p203(ISBN7-).109.容敏智,章明秋,刘原,缝合天然纤维层板的平面和层间性能研究,复合-生命、与高技术,天津大学出版社,2002,p1085(ISBN7-).110.石光,章明秋,容敏智,纳米Al2O3/环氧树脂复合的制备及摩擦学性能的研究(学术论文),复合-生命、与高技术,天津大学出版社,2002,p213(ISBN7-).111.卢询,章明秋,容敏智,全植物纤维复合-I.剑麻纤维自增强复合的制备与力学性能研究(学术论文),复合-生命、与高技术,天津大学出版社,2002,p90(ISBN7-).112.卢询,章明秋,容敏智,全植物纤维复合-I.剑麻纤维自增强复合的酶降解性能研究(学术论文),复合-生命、与高技术,天津大学出版社,2002,p96(ISBN7-).著作:1.容敏智,聚合物粒子的生长,见:王乃昌等编,定向聚合,北京:工业出版社,62.M.Q.Zhang,M.Z.Rong,K.Friedrich,ProcessingandpropertiesofNon-layerednanoparticlereinforcedthermoplasticcomposites,In&HandbookofOrganic-InorganicHybridMaterialsandNanocomposites&,EditedbyHSNalwa,AmericanSciencePublishers,0.(ISBN:1--X)3.M.Q.Zhang,M.Z.Rong,K.Friedrich,NanoparticleReinforcedThermoplasticComposites,In:EncyclopediaofNanoscienceandNanotechnology,EditedbyH.S.Nalwa,AmericanScientificPublishers,2004,Vol.7,p125-160(ISBN:1-).4.M.Q.Zhang,M.Z.Rong,K.Friedrich,ApplicationofNon-LayeredNanoparticlesinPolymerModification,In:Polymercomposites-FromNano-toMacro-Scale,Ed.FriedrichK,FakirovS,andZhangZ,Springer,.(ISBN:0-387-24176-0)5.M.Q.Zhang,M.Z.Rong,B.Wetzel,K.Friedrich,WearResistantThermosettingPolymerBasedNanocoposites,In:Nanomaterials:NewResearch,Ed.B.M.Caruta,NovaSciencePublishers(ISBN1-).6.M.Q.Zhang,M.Z.Rong,K.Friedrich,Wearresistingpolymernanocomposites:preparationandproperties,In:PolymerNanocomposites,WoodheadPublishingLtd.,Ed.YMaiandZYu,(ISBN)7.M.Q.Zhang,M.Z.Rong,X.Lu,All-greencomposites,In:HandbookofEngineeringBiopolymers,Homopolymers,Blends,andComposites,HanserPublishers,Ed.S.Fakirvor,D.Bhattacharyya,2007(ISBN978-1-)相关成果专利:1.纳米无机粒子增韧增强塑料及其制备方法,发明专利,ZL(授权)。2.天然复合的制备方法,发明专利,ZL(授权)。3.原位接枝改性导电填料制造导电高分子复合,发明专利,申请号:(尚未授权)。4.低含量纳米银导电浆料及其制备方法,发明专利,申请号:(尚未授权)。5.球磨法原位接枝改性纳米无机粒子的方法,发明专利,申请号:.5(尚未授权)。
&&&&&&&&&&
&&&&&&&&&&
&&&&&&&&&&}

我要回帖

更多关于 comp是什么意思 的文章

更多推荐

版权声明:文章内容来源于网络,版权归原作者所有,如有侵权请点击这里与我们联系,我们将及时删除。

点击添加站长微信