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个人简介

林旭锋,男,博士,教授,博士生导师;任教于中国石油大学(华东)理学院化学系。主要从事与石油、天然气、生物质等碳基能源原料增值转化以及与节能、环保过程相关的纳米催化剂制备、催化性能与反应机理的理论与实验研究,具体包含: (1)发展新型催化材料制备方法,实现催化活性组分的原子级分散,为提高催化活性以及研究构效关系打下基础;并将相关催化剂用于碳基能源分子的催化转化性能研究。 (2)发展催化剂活性组分的后续修饰加工法,改变活性组分的催化稳定性,以及产物选择性,从而为发展更高效、节能化工生产、环保过程奠定技术基础。 (3)利用量子化学第一性原理的方法,研究设计途径的动力学与热力学曲线特征,判断催化反应体系的反应机理,为开发高性能催化材料打下理论基础;通过理论与实验联合研究,认识催化剂活性位结构。 联系方式: Email:hatrick2009@upc.edu.cn(优先使用) QQ:260291732 教育经历: 2003/9-2007/9,香港大学,物理化学,博士,导师:Prof.DavidL.Phillips 2000/9-2003/7,厦门大学,物理化学,硕士,导师:田中群院士 1996/9-2000/7,厦门大学,化学,学士 工作经历: 2016/1-至今,中国石油大学(华东),理学院化学系,教授 2009/9-2015/12,中国石油大学(华东),理学院化学系(2011年前为化学化工学院化学系),副教授 2007/10-2009/08,西北大学(美国),催化中心(能源过程的催化研究所),博士后 主持或参加科研项目情况: 1、国家自然科学基金面上项目,21576291、用于轻烷烃脱氢的单金属中心铬催化剂:制备、结构及构效关系、2016/01-2019/12、77万元、主持。 2、国家自然科学青年基金,21003159、双功能催化剂用于多元醇和单糖的加氢脱氧催化反应研究、2011/01-2013/12、21万元、主持。 3、山东省自然基金面上项目,ZR2014BM002、单金属中心铬基催化剂的制备及其对轻烷烃脱氢的催化机理研究、2014/12-2017/12、17万元、主持。 4、教育部留学归国人员科研启动基金,糖/多元醇的催化氢化脱氧反应的机理研究和催化剂开发;2010/12-2013/12、3万元、主持。 5、中国石油大学(华东)自主创新、15CX05052A、单一位钒催化剂上的小分子烷烃脱氢:催化剂制备与反应机理、2015/09-2018/09、10万元、主持。 6、中国石油大学(华东)自主创新、11CX04068A、新型过渡金属催化剂上小分子烷烃氧化脱氢反应机理研究;2011/04-2013/03、6万元、主持。 7、山东省自然基金青年基金,气相沉积法构建负载型亚纳米级过渡金属催化剂;ZR2012BQ020、2012/07-2015/07、5万元、参与(位次2/5)。 8、国家油气重大专项项目,海上稠油热采复合增效技术研究,2016.01~2020.12;参与(位次3/17);总经费:269.87万元。 9、中石油重大科技专项,FDS-2硫化型柴油加氢催化剂制备技术开发与工业应用,2010.01~2014.12,参与(位次13/17);总结费:1046万元。 授权发明专利: 1、林旭锋等,一种用于甘油加氢制正丙醇的双层组合催化剂,授权号:ZL20131071729.1。 2、林旭锋等,负载型镍催化剂的气相沉积制备方法,授权号:ZL201410176576.3。 3、林旭锋等,负载型铁催化剂的气相沉积制备方法,授权号:ZL201410176407.X。 4、林旭锋等,负载型钯催化剂的制备方法,授权号:ZL201410185405.7。 5、林旭锋等,负载型铂催化剂的铂颗粒稳定化处理方法,授权号:ZL201410186209.1。 6、林旭锋等,乙烷氧化脱氢制乙烯的装置及方法,授权号:ZL201410193452.6。 获奖情况: 科研成果奖励: 青岛西海岸新区科学技术奖自然科学奖三等奖,有机小分子增值转化的催化体系设计、制备与催化机理研究(编号:Z2015-3-1-1),1/2,2016.05;厅局级。 教学成果奖励: 基于物理化学混合教学模式的资源构建与教改实践,中国石油大学(华东)教学成果二等奖,5/7,2017.11;厅局级 获得荣誉: 2013.9,中国石油大学(华东)优秀教师; 2013.12,中国石油大学(华东)工会积极分子; 2010.12,中国石油大学(华东)大学生科技节优秀指导教师; 2010.1,中国石油大学(华东)化学化工学院优秀班主任。

研究领域

主要从事与石油、天然气、生物质等碳基能源原料增值转化以及与节能、环保过程相关的纳米催化剂制备、催化性能与反应机理的理论与实验研究

近期论文

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2016~present (1)SiO2-ModifiedPt/Al2O3forOxidativeDehydrogenationofEthane:APreparationMethodforImprovedCatalyticStability,EthyleneSelectivity,andCokingResistance YanyanXi,JianmeiXiao,XufengLin*,WeiningYan,ChuangyeWang,ChenguangLiu Industrial&EngineeringChemistryResearch2018,57,10137-10147 (2)Surfaceconcentrationorsurfaceexcess,whichonedominatesthesurfacetensionofmulticomponentmixtures? ChuangyeWang,Xueling,Wang,FengLiu,ZhiyangJiang,XufengLin Coll.Poyl.Sci.2018,296,89-93. (3)Methaneactivationonnickeloxideclusterswithaconcertedmechanism:adensityfunctionaltheorystudyoftheeffectofsilicasupport YanyanXi,BiliChen,XufengLin*,ChuangyeWang,HuiFu J.Mol.Model.2016,22,R79. (4)Thesubstituenteffectofthepentafluorophenylgroupsonruthenium-porphyrin-catalyzedintramolecularamidationofsulfamateester:ADFTstudy XufengLin*,BiliChen,YanyanXi,ChuangyeWang,HuiFu Comp.Theo.Chem.2016,1080,1-9. (5)Theeffectofasilicasupport:adensityfunctionaltheorystudyoftheC-Hbondactivationofethaneonanickeloxidecluster XufengLin*,BiliChen,Yanyan,Xi,DavidL.Phillps,WenyueGuo J.Phys.Org.Chem.2016,29,134-144. (6)Adensityfunctionaltheorystudyontheeffectofsilicasupport:Methaneactivationonnickeloxideclustersthrougharadicalmechanism YanyanXi,BiliChen,XufengLin*,HuiFu,ChuangyeWang Comp.Theo.Chem.2016,1076,65-73. (7)Surfacestructureofaqueousionicsurfactantsolutionsandeffectsofsolventtherein-acomputersimulationstudy ChuangyeWang,ZhiyangJiang,LingXu,AitingKan,HuiFu,XufengLin, Coll.Poly.Sci.2016,294,575-581. 2011-2015 (1)Molecularstructureofionicsurfactantsolutionsurfaceandeffectsofcounter-iontherein-ajointinvestigationbysimulationandexperiment ChuangyeWang,Yajie,Tan,ZhiyangJiang,XufengLin,SongqingHu, Coll.Poly.Sci.2015,293,3479-3486. (2)UsingneutralimpactcollisionionscatteringspectroscopyandangularresolvedX-rayphotoelectronspectroscopytoanalyzesurfacestructureofsurfactantsolutions ChuangyeWang,AitingKan,ZhenLiu,GuodongZhang,XufengLin,HuiFu, Coll.Poly.Sci.2015,293,1655-1666. (4)Areactionmechanismofmethanecouplingonasilicasupportedsingle-sitetantalumcatalyst X.F.Lin*,Y.Y.Xi.G.D.Zhang.D.L.Phillips,W.Y.Guo Organometallics,2014,33,2172−2181. (5)HydrogenolysisofGlycerolbytheCombinedUseofZeoliteandNi/Al2O3asCatalysts:ARouteforAchievingHighSelectivityto1‑ropanol X.F.Lin*,Y.H.Lv,Y.Y.Xi,Y.Y.Qu,D.L.Phillips,C.G.Liu Energy&Fuels,2014,28,3345−3351. (6)Alumina-supportedFecatalystpreparedbyvapordepositionanditscatalyticperformanceforoxidativedehydrogenationofethane L.Y.Xu,X.F.Lin*,Y.Y.Xi,X.M.Lu,C.G.Liu MaterialsResearchBulletin,2014,59,254-260. (7)Acidcatalyzedfirstdehydrationofglycerolatthesecondarysite:theeffectofglycerolconformation X.F.Lin*,Y.Y.Qu,Y.Y.Xi,C.G.Liu, JournalofTheoreticalandComputationalChemistry,2014,13,1450016-1~1450016-15. (8)ControllablesynthesisofZnxCd1-xSnanowireswithtunableopticalproperties X.F.Lin,Y.Y.Xi,D.L.Lin ActaPhys.-Chim.Sin.2014,30,576-582. (9)Acombinedexperimentalandcomputationalstudyonthecatalyticdehydrationofglycerolonmicroporouszeolites:Aninvestigationofthereactionmechanismandacroleinselectivity X.F.Lin*,Y.H.Lv,Y.Y.Qu,G.D.Zhang,Y.Y.Xi,D.L.Phillips,C.G.Liu, Phys.Chem.Chem.Phys.,2013,15,20120. (10)Thefirstdehydrationandthecompetingreactionpathwaysofglucosehomogeneouslyandheterogeneouslycatalyzedbyacids X.F.Lin*,Y.Y.Qu,Y.H.Lv,Y.Y.Xi,D.L.Phillips,C.G.Liu, Phys.Chem.Chem.Phys.,2013,15,2967. (11)Unravelingthereactionmechanismfornickel-catalyzedoxidativedehydrogenationofethanebyDFT:TheC-Hbondactivationstepanditsfollowingpathways X.F.Lin*,Y.Y.Xi,J.Sun, J.Phys.Chem.C,2012,116,3503. (12)Acomputationalstudyonthecompetingintramolecularamidationandaziridinationreactionscatalyzedbydirhodiumtetracarboxylate X.F.Lin*,Y.Y.Xi,J.Sun ComputationalandTheoreticalChemistry,2012,999,74. (13)Theoreticalstudyonthehypervalentlambda(3)-bromanestrategyforBaeyer-Villigeroxidationofbenzaldehydeandacetaldehyde:rearrangementmechanism H.Fu,S.W.Xie,A.P.Fu,X.F.Lin,H.Zhao,T.X.Ye, OrganicandBiomolecularChemistry,2012,10,6333. (14)Computationalinterpretationofthestereoselectivityforadirhodiumtetracarboxylate-catalyzedamidationreaction X.F.Lin*,J.Sun,Y.Y.Xi,BoPang, ComputationalandTheoreticalChemistry,2011,963,284. (15)HowracemicsecondaryalkylelectrophilesproceedtoenantioselectiveproductsinNegishicross-couplingreactions X.F.Lin*,J.Sun,Y.Y.Xi,D.L.Lin Oragnometallics,2011,30,3284. 2010andbefore (1)OxidativedehydrogenationofethanewithoxygencatalyzedbyK-Yzeolitesupportedfirst-rowtransitionmetals X.F.Lin,K.R.Poeppelmeier,E.Weitz, AppliedcatalysisA-General,2010,381,114. (2)Oxidativedehydrogenation(ODH)ofethanewithO2asoxidantonselectedtransitionmetal-loadedzeolites X.F.Lin,C.A.Hoel,W.M.H.Sachtler,K.R.Poeppelmeier,E.Weitz, JournalofCatalysis,2009,265,54. (3)ADFTStudyontheMechanismofRh2(II,II)-CatalyzedIntramolecularAminationofCarbamates X.F.Lin,C.Y.Zhao,C.M.Che,Z.F.Ke,D.L.Phillips, Chem.AsianJ.2007,2,1101. (4)Surface-enhancedRamanscatteringintheultravioletspectralregion:UV-SERSonrhodiumandrutheniumelectrodes B.Ren,X.F.Lin,Z.L.Yang,G.K.Liu,R.F.Aroca,B.W.Mao,Z.Q.Tian, J.Am.Chem.Soc.2003,125,9598. (5)Electrochemicalandsurface-enhancedRamanspectroscopicstudiesontheadsorptionandelectrooxidationofC1moleculesonaroughenedRhelectrode X.F.Lin,B.Ren,Z.Q.Tian, J.Phys.Chem.B2004,108,981. (6)Reactionmechanismandstereoselectivityofruthenium-Porphyrin-catalyzedintramolecularamidationofsulfamateester:ADFTcomputationalstudy X.F.Lin,C.M.Che,D.L.Phillips, J.Org.Chem.,2008,73,529. (7)Densityfunctionaltheorystudyofwater-assisteddeprotonationoftheC8-intermediateinthereactionofthe2-FluorenylnitreniumionwithguanosinetoformaC8adduct Z.Guo,X.F.Lin,C.Y.Zhao,D.L.Phillilps, JournalofMolecularStructure-Theochem,2008,848,119. (8)Densityfunctionaltheorystudiesofnegishialkyl-alkylcross-couplingreactionscatalyzedbyamethyiterpyridyl-Ni(I)complex, X.F.Lin,D.L.Phillips, J.Org.Chem.,2008,73,3680 (9)ModelingSN2reactionsinmethanolsolutionbyabinitiocalculationofnucleophilesolvent-substrateclusters X.F.Lin,C.Y.Zhao,D.L.Phillips, J.Org.Chem.,2005,70,9279. (10)Water-catalyzedO-HInsertion/HIeliminationreactionsofisodihalomethanes(CH2X-I,whereX=Cl,Br,I)withwaterandthedehalogenationofdihalomethanesinwater-solvatedenvironments X.F.Lin,X.G.Guan,W.M.Kwok.C.Y.Zhao,Y.Du,Y.L.Li,D.L.Phillips, J.Phys.Chem.A,2005,109,981. (11)Water-catalyzeddehalogenationreactionsoftheisomerofCBr4anditsreactionproductsandacomparisontoanalogousreactionsoftheisomersofdi-andtrihalomethanes C.Y.Zhao,X.F.Lin,W.M.Kwok,X.G.Guan,Y.Du,D.Q.Wang,K.F.Hung,D.L.Phillips, Chem.Euro.J.,2005,11,1093. (12)AnabinitiostudyofthereactionsofCH2X-X(X=Cl,Br,I)isopolyhalomethaneswithnCH3OH X.F.Lin,C.Y.Zhao,D.L.Phillips, MolecularSimulation,2005,31,483. (13)AbinitioinvestigationoftheO-Y(Y=CH3,H)insertion/HIeliminationreactionsofCH2I-IwithCH3OHandH2O:comparisonofmethanolandwatercatalyzedreactions X.F.Lin,C.Y.Zhao,D.L.Phillips, Chem.Phys.Lett.2004,397,488. (14)UltravioletphotolysisofCH2I2inmethanol:O-HinsertionandHIeliminationreactionstoformadimethoxymethaneproduct X.G.Guan,X.F.Lin,W.M.Kwok,Y.Du,Y.L.Li,C.Y.Zhao,D.Q.Wang,D.L.Phillips J.Phys.Chem.A2005,109,1247 (15)Surface-enhancedRamanspectroscopywithultravioletexcitation X.F.Lin,B.Ren,Z.L.Yang,G.K.Liu,Z.Q.Tian, J.RamanSpectrosc.2005,36,606. (16)Electrochemicallyroughenedrhodiumelectrodeasasubstrateforsurface-enhancedRamanspectroscopy B.Ren,X.F.Lin,J.W.Yan,B.W.Mao,Z.Q.Tian, J.Phys.Chem.B2003,107,899. (17)Optimizingdetectionsensitivityonsurface-enhancedRamanscatteringoftransition-metalelectrodeswithconfocalRamanmicroscopy B.Ren,X.F.Lin,Y.X.Jiang,P.G.Cao,Y.Xie,Q.J.Huang,Z.Q.Tian, Appl.Spectrosc.2003,57,419. (18)Aninvestigationoftheadsorptionofpyrazineandpyridineonnickelelectrodesbyinsitusurface-enhancedRamanspectroscopy Q.J.Huang,X.F.Lin,Z.L.Yang,J.W.Hu,Z.Q.Tian, J.Electroanal.Chem.2004,563,121. (19)ProbingdifferentadsorptionbehaviorofCOonPtatsolid/liquidandsolid/gasinterfacesbyRamanspectroscopywithathree-phaseRamancell B.Ren,L.Cui,X.F.Lin,Z.Q.Tian, Chem.Phys.Lett.2003,376,130. (20)Surface-enhancedRamanscatteringfromtransitionmetalswithspecialsurfacemorphologyandnanoparticleshape Z.Q.Tian,Z.L.Yang,B.Ren,J.F.Li,Y.Zhang,X.F.Lin,J.W.Hu,D.Y.Wu, FaradayDiscussions2006,132,159 (21)ConfocalmicroprobeRamanspectroscopyforinvestigatingtheelectrochemicalinterface B.Ren,F.M.Liu,X.F.Lin,Z.Q.Tian, Chin.J.Electrochem.2001,7,41 (22)RhasaUbiquitousSubstratesforsurfaceenhancedRamanspectroscopy B.Ren,X.F.Lin,Z.Q.Tian, Chin.J.Electrochem.2001,7,55 (23)InsituRamanspectroscopicstudiesonthereductionofthesurfaceoxidesofrhodiumatsolid/liquidandsolid/gasinterfaces X.F.Lin,B.Ren,Y.Y.Liao,W.Y.Hu,Z.Q.Tian, Chin.J.LightScattering2002,14,111. 发表教学论文 1、非化学专业物理化学课中的情境创设——以油气储运专业为例,林旭锋,王芳珠,杨国华,化学教育,2015年第18期。

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