博海这些成果激励作者进一步设计用于太阳能分解水和其它能量转换体系的催化剂。 纳米纤维素也成功的应用在了很多领域,拾贝比如:能源存储、环境科学、建筑科学、柔性电子设备、水处理等等。研究人员利用细菌纤维素膜作模板,机械浸入LLZO前驱体溶液中,机械LLZO负载在细菌纤维素骨架网络中,经过煅烧后,细菌纤维素被移除,剩下了LLZO骨架膜,然后与聚合物电解质PEO-LiTFSI混合,做成有机无机混合的固态电解质。 此外,飞升纤维丝、半纤维素和木质素的交互结构,造就了木材优越的机械性能。参考文献:博海[1]M.Zhu,J.Song,T.Li,A.Gong,Y.Wang,J.Dai,Y.Yao,W.Luo,D.Henderson,L.Hu,HighlyAnisotropic,HighlyTransparentWoodComposites,Advancedmaterials,28(2016)5181-5187.[2]J.Song,C.Chen,S.Zhu,M.Zhu,J.Dai,U.Ray,Y.Li,Y.Kuang,Y.Li,N.Quispe,Y.Yao,A.Gong,U.H.Leiste,H.A.Bruck,J.Y.Zhu,A.Vellore,H.Li,M.L.Minus,Z.Jia,A.Martini,T.Li,L.Hu,Processingbulknaturalwoodintoahigh-performancestructuralmaterial,Nature,554(2018)224-228.[3]C.Chen,J.Song,S.Zhu,Y.Li,Y.Kuang,J.Wan,D.Kirsch,L.Xu,Y.Wang,T.Gao,Y.Wang,H.Huang,W.Gan,A.Gong,T.Li,J.Xie,L.Hu,ScalableandSustainableApproachtowardHighlyCompressible,Anisotropic,LamellarCarbonSponge,Chem,4(2018)544-554.[4]T.Li,J.Song,X.Zhao,Z.Yang,G.Pastel,S.Xu,C.Jia,J.Dai,C.Chen,A.Gong,F.Jiang,Y.Yao,T.Fan,B.Yang,L.Wågberg,R.Yang,L.Hu,Anisotropic,lightweight,strong,andsuperthermallyinsulatingnanowoodwithnaturallyalignednanocellulose,ScienceAdvances,4(2018)eaar3724.[5]C.Jia,C.Chen,Y.Kuang,K.Fu,Y.Wang,Y.Yao,S.Kronthal,E.Hitz,J.Song,F.Xu,B.Liu,L.Hu,FromWoodtoTextiles:Top-DownAssemblyofAlignedCelluloseNanofibers,Advancedmaterials,30(2018)e1801347.[6]W.Kong,C.Wang,C.Jia,Y.Kuang,G.Pastel,C.Chen,G.Chen,S.He,H.Huang,J.Zhang,S.Wang,L.Hu,Muscle-InspiredHighlyAnisotropic,Strong,Ion-ConductiveHydrogels,Advancedmaterials,30(2018)e1801934.[7]C.Wang,S.Wang,G.Chen,W.Kong,W.Ping,J.Dai,G.Pastel,H.Xie,S.He,S.Das,L.Hu,Flexible,Bio-CompatibleNanofluidicIonConductor,ChemistryofMaterials,30(2018)7707-7713.[8]M.Zhu,Y.Li,F.Chen,X.Zhu,J.Dai,Y.Li,Z.Yang,X.Yan,J.Song,Y.Wang,E.Hitz,W.Luo,M.Lu,B.Yang,L.Hu,PlasmonicWoodforHigh-EfficiencySolarSteamGeneration,AdvancedEnergyMaterials,8(2018)1701028.[9]H.Liu,C.Chen,H.Wen,R.Guo,N.A.Williams,B.Wang,F.Chen,L.Hu,Narrowbandgapsemiconductordecoratedwoodmembraneforhigh-efficiencysolar-assistedwaterpurification,JournalofMaterialsChemistryA,6(2018)18839-18846.[10]T.Li,H.Liu,X.Zhao,G.Chen,J.Dai,G.Pastel,C.Jia,C.Chen,E.Hitz,D.Siddhartha,R.Yang,L.Hu,ScalableandHighlyEfficientMesoporousWood-BasedSolarSteamGenerationDevice:LocalizedHeat,RapidWaterTransport,AdvancedFunctionalMaterials,28(2018)1707134.[11]C.Wang,L.Zhang,H.Xie,G.Pastel,J.Dai,Y.Gong,B.Liu,E.D.Wachsman,L.Hu,Mixedionic-electronicconductorenabledeffectivecathode-electrolyteinterfaceinallsolidstatebatteries,NanoEnergy,50(2018)393-400.[12]Y.Zhang,C.Wang,G.Pastel,Y.Kuang,H.Xie,Y.Li,B.Liu,W.Luo,C.Chen,L.Hu,3DWettableFrameworkforDendrite-FreeAlkaliMetalAnodes,AdvancedEnergyMaterials,8(2018)1800635.[13]Y.Liu,Y.Qiao,Y.Zhang,Z.Yang,T.Gao,D.Kirsch,B.Liu,J.Song,B.Yang,L.Hu,3Dprintedseparatorforthethermalmanagementofhigh-performanceLimetalanodes,EnergyStorageMaterials,12(2018)197-203.[14]Z.Liu,C.Yue,C.Chen,J.Xiang,F.Hu,D.Lee,D.Shin,S.Sun,L.Hu,T.Song,Aself-bufferingstructureforapplicationinhigh-performancesodium-ionbatteries,EnergyStorageMaterials,15(2018)242-248.[15]Y.Kuang,C.Chen,G.Pastel,Y.Li,J.Song,R.Mi,W.Kong,B.Liu,Y.Jiang,K.Yang,L.Hu,ConductiveCelluloseNanofiberEnabledThickElectrodeforCompactandFlexibleEnergyStorageDevices,AdvancedEnergyMaterials,8(2018)1802398.[16]W.Luo,J.Hayden,S.-H.Jang,Y.Wang,Y.Zhang,Y.Kuang,Y.Wang,Y.Zhou,G.W.Rubloff,C.-F.Lin,L.Hu,HighlyConductive,LightWeight,Robust,Corrosion-Resistant,Scalable,All-FiberBasedCurrentCollectorsforAqueousAcidicBatteries,AdvancedEnergyMaterials,8(2018)1702615.[17]H.Xie,C.Yang,K.K.Fu,Y.Yao,F.Jiang,E.Hitz,B.Liu,S.Wang,L.Hu,Flexible,Scalable,andHighlyConductiveGarnet-PolymerSolidElectrolyteTemplatedbyBacterialCellulose,AdvancedEnergyMaterials,8(2018)1703474.[18]Y.Li,T.Gao,Y.Yao,Z.Liu,Y.Kuang,C.Chen,J.Song,S.Xu,E.M.Hitz,B.Liu,R.J.Jacob,M.R.Zachariah,G.Wang,L.Hu,InSituChainmailCatalystAssemblyinLow-Tortuosity,HierarchicalCarbonFrameworksforEfficientandStableHydrogenGeneration,AdvancedEnergyMaterials,8(2018)1801289.[19]S.Xu,C.Chen,Y.Kuang,J.Song,W.Gan,B.Liu,E.M.Hitz,J.W.Connell,Y.Lin,L.Hu,Flexiblelithium–CO2batterywithultrahighcapacityandstablecycling,EnergyEnvironmentalScience,11(2018)3231-3237.[20]H.Song,S.Xu,Y.Li,J.Dai,A.Gong,M.Zhu,C.Zhu,C.Chen,Y.Chen,Y.Yao,B.Liu,J.Song,G.Pastel,L.Hu,HierarchicallyPorous,Ultrathick,BreathableWood-DerivedCathodeforLithium-OxygenBatteries,AdvancedEnergyMaterials,8(2018)1701203.本文由材料人专栏科技作者一诺供稿,博海编辑部编辑。【引语】推出大牛速览专栏:拾贝主要撰写材料领域内的知名人物,让大家快速了解各位大牛的研究进展。 在过去的一年里,机械胡老师在固态电解质[11]、机械锂金属负极[12,13]、钠离子电池[14]等研究上取得了不错的成果,尤其是木头纳米纤维素在电池及催化领域的应用更是让人耳目一新。这种超强木头刷新了木材在工程上的应用,飞升胡老师之后会不会考虑用超强木材造汽车呢?让我们期待一下~[2]继超强木头的开发之后,飞升胡老师又成功的将木头做成高弹性的木炭海绵。 而且纳米纤维带有负电荷,博海这种水凝胶还可以用作纳米流体导管实现类似生物肌肉组织的离子选择性传输功能。 虽然用蒸汽、拾贝氨水或冷轧预处理木材,将其致密化,可以大大提高木材的机械性能,但是致密化程度并不能满足现有技术对木材机械性能的要求。(f)1.4Ag-1下,机械Ni-MOF的充电-放电循环图。 飞升(b-d)NixSy@CoS的TEM图像。博海(f)β-NiS电极的CV曲线。 拾贝相关成果以Nickel-basedmaterialsforsupercapacitors为题发表在MaterialsToday上。(d,机械e,f)NH4NiPO4·H2O/Ni泡沫的元素Mapping图、CV曲线、CP曲线;(g)电流密度与质量比容量关系图。 |
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