简介:
简介:Depositionoftwo-dimensional(2D)MoS2materialsonthetaperedfiberallowsvariousphotonicapplicationsincludingsaturableabsorbersandfour-wavemixing.Ethanolcatalyticdeposition(ECD)ofMoS2ontheopticaltaperedfiberwasproposedanddemonstratedinthiswork.Differentfromtheconventionalopticaldrivendepositionusingwaterororganicsolvent,theECDmethodutilizedthehighvolatilityoftheethanolsolvent,whichsignificantlyincreasedthemovementspeedoftheMoS2nanosheetsandthusboostedthedepositionrateandreducedtheminimumpowerthresholdtodrivethedeposition.WebelievetheECDmethodshouldbeabletobeappliedtoothersimilar2Dmaterialssuchasothertypesoftransitionmetalchalcogenides.
简介:Probingtheopticalpropertiesofmolybdenumdisulfide(MoS2)isvitaltoitsapplicationinplasmon-enhancedspectroscopy,catalysts,sensing,andoptoelectronicdevices.Inthispaper,wetheoreticallystudiedtheRamanandfluorescencepropertiesofmonolayerMoS2usingtip-enhancedspectroscopy(TES).Inthestrong-couplingTESsystem,theRamanandfluorescenceenhancementfactorscanbeturnedtoashighas4.5×108and3.3×103,respectively,byoptimizingthetip–MoS2-filmdistance.OurtheoreticalresultsnotonlyhelptodeeplyunderstandtheTESpropertiesofmonolayerMoS2,butalsoprovidebetterguidanceontheapplicationsofthenoveltwo-dimensionalmaterial.
简介:Theobjectiveofthisresearchistopreparespeciallydesignedsurfacetextureonhardsteelsurfacebyelectrochemicalmicromachining(EM)andtoincorporateelectrolessplatedAg/MoS2solidlubricantcoatingintothedimplesofEMtexturedsteelsurfacetoeffectivelyreducefrictionandwearofsteel-steelcontacts.ThefrictionandwearbehavioroftheAg/MoS2solidlubricantcoatingonEMtexturedsteelsurfacewasevaluatedinrelationtothesizeandspacingofthedimplesthereon.Themicrostructur...
简介:瞬间电容器的高频率CV曲线被学习了。氧化物层什么时候是厚的,被显示出半古典作品模型是到到古典模型的量模型和途径的好近似。这个结论提供我们一有效(半古典作品)包括量为机械效果建模为极端薄氧化物做参数抽取设备。这里,有效提取策略被设计,数字实验表明策略的有效性。
简介:摘要:二硫化钼(MoS2)因具有独特的层状结构以及较高的本征催化活性,被认为是可替代贵金属催化剂的材料之一。但是,2H-MoS2表现为半导体特性,其催化性能受到其导电能力及活性位点数目的制约。因此,本文通过Li离子插层化学剥离法对块状2H相MoS2进行改性,制备出了尺寸为几到几十纳米的双相(1T相与2H相)MoS2纳米片,并系统评价了改性后催化剂的析氢活性与稳定性。相比于块体MoS2,MoS2纳米片表现出更佳的析氢(HER)催化性能,在电流密度为10mAcm2下的过电位较前者降低了170 mV,这主要归因于1T-MoS2能够暴露更多的活性位点,且1T-MoS2的存在促使催化剂的导电性增加。
简介:基于金刚石钻头干钻时出现较高摩擦热的现象,采用MoS2作为胎体润滑剂,用电镀法制备MoS2-Ni复合胎体材料,以减小胎体的摩擦因数、降低摩擦热;并研究电镀工艺对MoS2复合镀层的显微硬度和低温低压下复合镀层对胎体摩擦性能的影响。结果表明:随镀液中MoS2浓度增大,镀层的显微硬度和胎体的摩擦因数降低,当MoS2浓度大于0.5g/L时,镀层的显微硬度和胎体的摩擦因数变化不大;随镀液pH增大,镀层显微硬度降低,胎体的摩擦因数先减小后增大,当镀液pH增大到4.0后,镀层的显微硬度变化不大,胎体摩擦因数达最小值;随镀液电流密度增大,镀层显微硬度和胎体摩擦因数先减小后增大,当电流密度增大到2.5A/cm2时,镀层的显微硬度和胎体摩擦因数达到最小值。摩擦磨损后的胎体材料形貌分析表明,控制好电镀工艺条件,可实现低温低压下MoS2-Ni复合材料对胎体的润滑作用。