简介:以2-苯基喹啉4-羧酸为原料,用丙烯酸羟乙酯(HEA)酯化制备了荧光化合物2-苯基喹啉-4羧酸-丙烯酸-乙二醇二酯(PQFAED)。采用IR、EA、1HNMR、吸收光谱及荧光光谱表征了PQFAED的结构,分析了硝基爆炸物(TNT)对该化合物的荧光猝灭作用。结果表明,PQFAED对TNT有较好的荧光响应,可作为爆炸物检测的传感材料。
简介:以前曾指出由3,3’,4,4’-联苯基四羧酸二酐(BPDA)和1,2-双(4-氨基苯氧基)苯(亦称三苯基醚邻苯二酚二胺(TPEC))衍生的聚酰亚胺具有优异的拉伸性能和良好的热性能。本文对由BPDA、TPEC及其它芳香族二胺制备的共聚酰亚胺的性能做了初步评价。由BPDA和各种芳香族二胺制备的均聚酰亚胺通常具有良好的机械性能和热性能。然而,它们不溶于现有的各种有机溶剂中。在某些条件下,用BPDA与等摩尔TPEC和其它芳香族二胺混合物可以制备可有机溶解的BPDA型共聚酰亚胺。这些共聚酰亚胺可以形成坚韧的薄膜,它们具有较高的模量和强度。多数情况下,也具有较高的断裂伸长率。
简介:采用机械球磨技术制备了MgH2-10%Al2O3(质量分数)储氢复合体系,通过XRD、SEM、DSC-TG等检测手段考查了微量Al2O3陶瓷颗粒掺杂对MgH2体系组织结构及解氢性能的影响,并对其相关机理进行了分析.结果表明:机械球磨可有效细化MgH2颗粒;在微量Al2O3陶瓷颗粒与机械球磨的协同作用下,MgH2颗粒的细化效果更为显著;相对于纯MgH2球磨体系而言,微量Al2O3的掺杂有效降低了MgH2体系的解氢温度(降低近50℃),且其解氢速率也有所提高;MgH2-Al2O3储氢复合体系解氢性能的改善主要源于Al2O3陶瓷颗粒对MgH2体系的组织细化效应.
简介:Anovelfluorescentprobe9-(4-(1,2-diamine)benzene-N1-phenyl)acridine(DABPA)wassynthesizedforthedetectionofnitricoxide(NO)andcharacterizedbyIR,1H-NMRandEI-MSspectroscopy.Basedonaphotoelectrontransfermechanism,thefluorescenceintensitiesofDABPAwereinvestigatedwiththedifferentconcentrationsofNO.Undertheoptimalexperimentalconditions,thefluorescenceintensityofDABPAhadagoodlinearrelationship(R2=0.9977)withNOconcentrationintherangefrom1×10-7to1.5×10-6mol/Lwithadetectionlimitof1×10-8mol/L.ThecytotoxicityinducedbyDABPAwasevaluatedbytheMTT(3-(4,5-dimethylthiazol-2-yl)-2,5diphenyltetrazoliumbromide)assayforbiologicalapplication.Furthermore,theprobeDABPAhadalsobeensuccessfullyappliedtoreal-timeimageNOproducedinPC12cellsinthepresenceofL-arginine.
简介:刚化学方法在水性和无水介质中合成聚(2-氯苯胺)(P2ClAn)、聚呋喃(PFu)传导性均聚物及复合物并研究丁艇性能。聚合物及其复合物的特征通过了红外光谱、紫外一可见光吸收光谱、热重分析、示差扫描址热法、扫描电镜、磁化率、电导牢测试。研究发现PFu/P2ClAn复合物的热稳定性比P2ClAn/PFu复合物和各自均聚物的要好。按照Gouy等级测试的方法,均聚物及其复合物的传导性机理本质上是极化子和双极化子。研究发现复合物电导率和磁化率值的大小受其客体聚合物含量的影响。P2CLAn/PFu(ω(PFu)=55.8%)电导率为3.21×10^-3S/CM,比各自聚合物的要高(σPFu=1.44×10^-5/CM,σP2CIAn=1.32×10^-5S/CM)。改变复合物合成顺序可以改变电导率、形态特征和热性能。
简介:Aone-pot,solvent-thermalprocesswasusedtocreatetheultrafineZnFe2O4nanoparticlesphotocatalyst.Duringthesolvent-thermalprocess,theinsituself-formingNaClnotonlyservedasa"cage"toconfinetheiondiffusion,butalsoactedasamicroreactorfornanocrystallitegrowth.Anaverageparticlesizeof~10nmandahigh-specificsurfaceareaof~112.9m2/gwereobservedfortheultrafineZnFe2O4nanoparticlesOwingtothesynergisticeffectofultrafineparticlesize,thefullutilizationofthevisiblelightregionandhighconductionband(CB)position,ultrafineZnFe2O4photocatalystdisplayedanefficientphotocatalyticCO2reductionundervisiblelightillumination.Besides,theultrafineZnFe2O4photocatalystshowedhighproductionselectivityforCH3CHOandC2H5OHgenerationinaqueousCO2/NaHCO3solution.Thisworkmayprovideanewideaforthesynthesisofnewhigh-efficiencyphotocatalysts.
简介:Sodiumparanitrophenolatedihydrate(NPNa·2H2O)isanexcellentsemiorganicnonlinearoptical(NLO)material,crystallizesbothinwaterandmethanolwithhighdegreeoftransparency.Goodopticalqualitysinglecrystalsofdimensionupto18mmx6mmx3mmareobtainedbyisothermalsolventevaporationtechnique.Thesolubilityofthecrystalindifferentsolventswasmeasuredgravimetrically.ThesinglecrystalsofNPNa·2H2Oshowvariationinphysicalpropertiesandgrowthrateindifferentsolvents.Methanolorethanolsolutionyieldscrystalsofbipyramidalshapewithclearmorphology.However,methanolgrowncrystalisexhibitingimprovedhardnessparametersandpossessesexcellentthermalstabilityascomparedtowatergrowncrystals.TheeffectsofsolventonhardnessparameteralongwiththermalandopticalpropertiesofNPNa·2H2Owasrevealedinthispaper.
简介:LiMn2O4wassynthesizedrapidlybymicrowaeheating.Theproductphasesofthemicrowavesynthesisandconventionalsolid-statesynthesiswerecomparativelyinvesitigated.Thecapacityofmicrowavesynthesisproductdecreasesrelativelyslow.Thelithiumioncanbeinsertedintoandextractedfromthespinelframeworkstructurefluentlyaftercycling.Butthecapacityoftheconventionalsolid-statesynthesisproductismoreremarkablylowered.Thespinelframeworkstructurewasdestroyedwhichhinderedthelithiumionfrominsertingandextracting.Theinfluentialfactorsoftheprocessparametersarediscussedsuchasheatpreservationtime,pre-heatingat400℃for24handcoupledagent.
简介:一篇小说荧光灯为H2PO4-基于碳dots/Fe3+被设计并且制作合成。碳点被一个确定的一个壶综合热水的方法并且由传播电子显微镜,X光检查衍射计,紫外力的吸收分光计和荧光分光光度计描绘了。碳dots/Fe3+合成被碳点和FeCl3,的水的混合获得,它的荧光性质被荧光分光光度计描绘。碳点的荧光被水的Fe3+阳离子熄灭,导致碳dots/Fe3+的低荧光紧张合成。在另一方面,H2PO4-由化学反应减少了Fe3+的集中并且提高了碳dots/Fe3+的荧光合成。Stern-Volmer方程被介绍描述在合成的碳dots/Fe3+和H2PO4-,和好线性(R2=0.997)在H20.4-12公里的PO4-集中。
简介:ZnMn2为抵抗随机存取存储器(RRAM)的O4电影被磁控管劈啪作响与不同设备结构制作。I-V特征,抵抗切换行为,耐力和ZnMn2O4电影被调查。ZnMn2象底部电极的O4电影,使用的希腊语的第二十三个字母和磅,展出双极的抵抗切换(BRS)行为处于低抵抗状态(LRS)处于高抵抗状态(HRS)和细丝传导机制由space-charge-limited传导(SCLC)统治了机制,但是ZnMn2用底部电极展出双极、单极的抵抗切换行为的n-Si的O4电影在幼虫由Poole-Frenkel(P-F)传导机制控制了Ag/ZnMn2O4/p-Si设备拥有最好的耐力和保留特征,交换周期的稳定的重复的数字在是超过1000,保留时间比106秒长。然而,最高的RHRS/R104的LRS比率和最低V在和V离开3.0的,V在Ag/ZnMn2O4/Pt设备。不过Ag/ZnMn2O4/n-Si设备也拥有最高的RHRS/R104,的LRS比率但是V在,V离开,RHRS和R象差的耐力一样的LRS,并且保留特征。
简介:Inthisstudy,theeffectofmulti-walledcarbonnanotubes(MWCNTs)additiveonthedehydridingpropertiesoftheZn(BH4)2/NaCIcompositepreparedbyhighenergyballmillingwereinvestigated.X-raydiffraction(XRD),Fouriertransforminfraredspectroscopy(FTIR)resultsdemonstratedthatZn(BH4)2wasproducedfrommechanochemicalreactionbetweenZnCI2andNaBH4.Comparedwiththeundopedsample,10wt%MWCNTseffectivelyloweredthedecompositiontemperatureofZn(BH4)2by15℃.Thecomplexreleased3.6wt%hydrogenwithin250sat100℃andtotallyreleased4.5wt%hydrogenwithin2500s,indicatingithasaconsiderablepotentialasahydrogenstoragematerial.