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60.Xue,E.-K†.,Wang,W*.,Huang,S.-F†.,Lu,G.-M†.,2019.DetritalzirconU-Pb-Hfisotopesandwhole-rockgeochemistryofneoproterozoic-cambriansuccessionsintheCathaysiaBlockofSouthChina:Implicationsonpaleogeographicreconstructioninsupercontinent.PrecambrianResearch331,105348.
59.HuangS.F†.,Wang,W*.,ManojPandit,ZhaoJ.H.,LuG.M†.,XueE.K†.,2019.NeoproterozoicS-typegranitesinthewesternJiangnanOrogenicBelt,SouthChina:Implicationsforpetrogenesisandgeodynamicsignificance.Lithos,342-343,45-58
58.LiuK†.,LuG.M†.,WangZ.Z.,HuangS.F†.,XueE.K†.,Wang,W*.,2019.ThePaleoproterozoicbimodalmagmatismintheSWYangtzeBlock:ImplicationsforinitialbreakupoftheColumbiasupercontinent.Lithos,332-333,23-38
57.Liu,Z.-R.R.,Zhou,M.-F.,Williams-Jones,A.E.,Wang,W.,Gao,J.-F.,2019.DiageneticmobilizationofTiandformationofbrookite/anataseinearlyCambrianblackshales,SouthChina.ChemicalGeology.Inpress:10.1016/j.chemgeo.2018.12.022
56.Cui,X.Z.,Wang,J.,Sun,Z.M.,Wang,W.,Deng,Q.,Ren,G.M.,Liao,S.Y.,Huang,M.D.,Chen,F.L.,2019.EarlyPaleoproterozoic(ca.2.36Ga)graniticmagmatisminpost–collisionalsetting:implicationoftheYangtzeBlockofSouthChinaintheColumbiasupercontinent.JournalofAsianEarthSciences.169,308-322
55.Li,Q.W.,Zhao,J.H.,Wang,W.,2019.Ca.2.0GamaficdikesintheKonglingComplex,SouthChina:ImplicationsforthereconstructionofColumbia.JournalofAsianEarthSciences,169,323-335.
54.Lu,G†.,Wang,W*.,Ernst,R.E.,Söderlund,U.,Lan,Z†.,Huang,S†.,Xue,E†.,2019.PetrogenesisofPaleo-MesoproterozoicmaficrocksinthesouthwesternYangtzeBlockofSouthChina:Implicationsfortectonicevolutionandpaleogeographicreconstruction.PrecambrianResearch,322,66-84
53.HuangS.F†.,WangW*.,2019.TheoriginoftheFanjingshanmafic-ultramaficrocks,westernJiangnanOrogen,SouthChina:implicationsforPGEfractionationandmineralization.JournalofEarthScience.30,258-271
52.Wang,W*.,Cawood,P.A.,PanditM.K.,ZhaoJ.H.,ZhengJ.P.2019.NoCollisionbetweenEasternandWesternGondwanaattheirnorthernextent.Geology,47,308-312
51.Wang,W*.,Cawood,P.A.,PanditM.K.,ZhouM.F.,ZhaoJ.H.,2019.Evolvingpassive-andactive-margintectonicsofthePaleoproterozoicAravalliBasin,NWIndia.GeologicalSocietyofAmericanBulletin,131,3/4,426-443
50.王伟,卢桂梅,黄思访,薛尔堃,2019.扬子陆块古-中元古代地质演化与Columbia超大陆重建.矿物岩石地球化学通报,第38卷,第1期,30-52页。(侯德封获奖者论文)
49.HuangS.F†.,WangW*.,2019.TheoriginoftheFanjingshanmafic-ultramaficrocks,westernJiangnanOrogen,SouthChina:implicationsforPGEfractionationandmineralization.JournalofEarthScience.Inpress,doi:10.1007/s12583-018-0984-0
48.Qi,L.,Xu,Y.J.,Cawood,P.A.,Wang,W.,Du,Y.S.,2019.Implicationsof770 MaRhyoliticTuffs,easternSouthChinaCratoninconstrainingthetectonicsettingoftheNanhuaBasin.Lithos,324-325,842-858
47.Xiang,L.,Zheng,J.P.,Siebel,W.,Griffin,W.,Wang,W.,O'Reilly,S.,Li,Y.H.,Zhang,H.,2018.UnexposedArcheancomponentsandcomplexpost-Archeanaccretion/reworkingprocessesbeneaththesouthernYangtzeBlockrevealedbyzirconxenocrystsfromPaleozoiclamproites,SouthChina.PrecambrianResearch,316,174-196
46.Huang,S.F†.,Wang,W*.,Zhao,J.H.,Zheng,J.P.,2018.A-typemagmatisminpost-collisionalsetting:petrogenesisandgeodynamicsignificanceofthe~850MaDonglinggranitoidsinSouthChina,Lithos,318-319,176-193
45.Zhao,J.H.,Pandit,M.K.,Wang,W.,Xia,X.P.,2018.NeoproterozoictectonothermalevolutionofNWIndia:Evidencefromgeochemistryandgeochronologyofgranitoids.Lithos,316-317,330-346
44.Wang,W*.,Cawood,P.A.,PanditM.K.,XiaX.P.,ZhaoJ.H.,2018.Coupledcrustalevolutionandsupercontinentcycle:insightsfrominsituU-Pb,OandHfisotopesindetritalzircon,NWIndia,AmericanJournalofScience,318,989-1017
43.Guo,J.W,ZhengJ.P.,Ping,X.Q.,WanY.S.,Li,Y.H,Wu,Y.B,Zhao,J.H,Wang,W.,2018.Paleoproterozoicporphyriesandcoarse-grainedgranitesmanifestingaverticalhierarchicalstructureofArcheancontinentalcrustbeneaththeYangtzeCratonPrecambrianResearch318,288-305
42.LiuH,Zhao,J.H,Cawood,P.A,Wang,W.,2018.SouthChinainRodinia:ConstrainsfromtheNeoproterozoicSuixanvolcano-sedimentarygroupofSouthQinlingBelt.PrecambrianResearch314,170-193
41.Wang,W*.,Bolhar,R.,Zhou,M.-F.,Zhao,X.-F.,2018.EnhancedterrestrialinputintoPaleoproterozoictoMesoproterozoiccarbonatesinthesouthwesternSouthChinaBlockduringthefragmentationoftheColumbiasupercontinent.PrecambrianResearch313,1-17.
40.Luo,B.J.,Liu,R.,Zhang,H.F.,Zhao,J.H.,Yang,H.,Xu,W.C.,Guo,L.,Zhang,L.Q.,Tao,L.,Pan,F.B.,Wang,W.,Zhong,G.,Hui,S.,2018.Neoproterozoiccontinentalback-arcriftdevelopmentintheNorthwesternYangtzeBlock:EvidencefromtheHannanintrusivemagmatism.GondwanaResearch59,27-42
39.deWall,H.,Pandit,M.K.,Donhauser,I.,Schöbel,S.,Wang,W.,Sharma,K.K.,2018.EvolutionandtectonicsettingoftheMalani–NagarparkarIgneousSuite:ANeoproterozoicSilicic-dominatedLargeIgneousProvinceinNWIndia-SEPakistan.JournalofAsianEarthSciences160,136-158.
38.Wang,W*.,Zeng,M.-F.,Zhou,M.-F.,Zhao,J.-H.,Zheng,J.-P.,Lan,Z.-F.,2018.Age,provenanceandtectonicsettingofNeoproterozoictoearlyPaleozoicsequencesinsoutheasternSouthChinaBlock:ConstraintsonitslinkagetowesternAustralia-EastAntarctica.PrecambrianResearch.309,290-308.
37.Chen,W.T.,Sun,W.H.,Zhou,M.F.,Wang,W.,2018.Ca.1050Maintra-continentalrift-relatedA-typefelsicrocksinthesouthwesternYangtzeBlock,SouthChina.PrecambrianResearch.309,22-24.
36.Wang,W*.,Pandit,M.K.,Zhao,J.-H.,Chen,W.-T.,Zheng,J.-P.,2018.Slabbreak-offtriggeredlithosphere-asthenosphereinteractionataconvergentmargin:TheNeoproterozoicbimodalmagmatisminNWIndia.Lithos296-299,281-296.
35.Wang,W*.,Zhao,J.H.,Zhou,M.,Pandit,M.K.,Zheng,J.P.,2018.Depositionalage,provenanceandtectonicsettingoftheMeso-andNeoproterozoicsequencesinSEYangtzeBlock,China:ImplicationsonProterozoicsupercontinentreconstructions.PrecambrianResearch.309,231-247
34.Wang,W*.,Cawood,P.A.,Zhou,M.F.,Pandit,M.K.,Xia,X.P.,Zhao,J.H.,2017.Low-δ18OrhyolitesfromtheMalaniIgneousSuite:apositivetestforSouthChinaandNWIndialinkageinRodinia.GeophysicalResearchLetters44,10298-10305.
33.Wang,W*.,Cawood,P.A.,Zhou,M.F.,Pandit,M.K.,Chen,W.T.,2017.ZirconU-PbageandHfisotopeevidenceforEoarcheancrustalremnant,andcrustalgrowthandreworkingrespondtosupercontinentalcyclesinNWIndia.JournalofGeologicalSociety174,759-772.
32.Sun,Q.Y,Zhou,Y.Y,Wang,W.,Li,C.,Zhao,T.P,2017.FormationandevolutionofthePaleoproterozoicmeta-maficandassociatedsupracrustalrocksfromtheLushanTaihuaComplex,southernNorthChinaCraton:InsightsfromzirconU-Pbgeochronologyandwhole-rockgeochemistry.PrecambrianResearch303,428-444.
31.Sun,Q.Y,Zhou,Y.Y,Zhao,T.P,Wang,W.,2017.GeochronologyandgeochemistryofthePaleoproterozoicYinyugouGroupinthesouthernNorthChinaCraton:Implicationsforprovenanceandtectonicevolution.PrecambrianResearch296,120-147.
30.Cawood,P.A.,Zhao,G.C.,Yao,J.L.,Wang,W.,Xu,Y.J.,Wang,Y.J.,2017.ReconstructingSouthChinainPhanerozoicandPrecambriansupercontinents.EarthScienceReviews.
29.Hu,R.,Wang,W*.,Li,S.Q.,Yang,Y.Z.,Chen,F.K.,2016.SedimentaryenvironmentofEdiacaransequencesofSouthChina:traceelementandSr-Ndisotopeconstraints.TheJournalofGeology124,769–789.(correspondingautho)
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22.WangW.,ZhaoJ.H.,ZhouM-F.,YangS.H.,ChenF.K.2014.Neoproterozoicmafic-ultramaficintrusionsintheFanjingshanregion,SouthChina:ImplicationsforsubductionrelatedmagmatismintheJiangnanFoldBelt.JournalofGeology,122,455-473.
21.WangWandZhouM-F.2014.ProvenanceandtectonicsettingofthePaleo-toMesoproterozoicDongchuanGroupinthesouthwesternYangtzeBlock,SouthChina:implicationforthebreakupofsupercontinentColumbia.Tectonophysics,v.610,p.110-127.
20.Li,X.Y.,Zheng,J.P.,Sun,M.,Pan,S.-K.,Wang,W.,Xia,Q.-k.,2014.TheCenozoiclithosphericmantlebeneaththeinteriorofSouthChinaBlock:ConstraintsfrommantlexenolithsinGuangxiProvince.Lithos210-211,14-26.
19.Zhou,M.-F.,Zhao,X.-F.,Chen,W.T.,Li,X.-C.,Wang,W.,Yan,D.-P.,Qiu,H.-N.,2014.ProterozoicFe-CumetallogenyandsupercontinentalcyclesofthesouthwesternYangtzeBlock,southernChinaandnorthernVietnam.Earth-ScienceReviews1396,59-82.
18.Chen,W.T.,Sun,W.-H.,Wang,W.,Zhao,J.-H.,andZhou,M.-F.,2014,“Grenvillian”intra-platemaficmagmatisminthesouthwesternYangtzeBlock,SWChina:PrecambrianResearch,v.242,p.138-153.
17.Wang,WandZhou,M.F.,2013.Petrologicalandgeochemicalconstraintsonprovenance,paleoweatheringandtectonicsettingoftheNeoproterozoicsedimentarybasinintheeasternJiangnanOrogen,SouthChina.JournalofSedimentaryResearch,v.83,p.974-993
16.Wang,W.,Zhou,M.F.,Yan,D.P.,Li,L.,Malpas,J.,2013.Detritalrecordofactive-marginsedimentationanditsimplicationintectonicevolution:constraintsfromU-PbdatingandHfisotopeofdetritalzirconsfromthePrecambriansedimentarysequencesintheeasternJiangnanOrogen,SouthChina.PrecambrianResearch,253.1-19.
15.Wang,B.-Q.,Wang,W.,Chen,W.-T.,Gao,J.-F.,Zhao,X.-F.,Yan,D.-P.,Zhou,M.-F.,2013.ConstraintsofdetritalzirconU-PbagesandHfisotopesontheprovenanceoftheTriassicYidunGroupandtectonicevolutionoftheYidunTerrane,EasternTibet.SedimentaryGeology,289,74-98
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