非溶液法制備Fe-N-C多孔材料用于氧還原反應(yīng)催化的研究_第1頁(yè)
非溶液法制備Fe-N-C多孔材料用于氧還原反應(yīng)催化的研究_第2頁(yè)
非溶液法制備Fe-N-C多孔材料用于氧還原反應(yīng)催化的研究_第3頁(yè)
非溶液法制備Fe-N-C多孔材料用于氧還原反應(yīng)催化的研究_第4頁(yè)
非溶液法制備Fe-N-C多孔材料用于氧還原反應(yīng)催化的研究_第5頁(yè)
已閱讀5頁(yè),還剩2頁(yè)未讀, 繼續(xù)免費(fèi)閱讀

下載本文檔

版權(quán)說(shuō)明:本文檔由用戶(hù)提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請(qǐng)進(jìn)行舉報(bào)或認(rèn)領(lǐng)

文檔簡(jiǎn)介

非溶液法制備Fe-N-C多孔材料用于氧還原反應(yīng)催化的研究摘要

本文提出了一種非溶液法制備Fe-N/C多孔材料用于氧還原反應(yīng)催化的方法。利用聚苯胺作為載體,經(jīng)過(guò)煅燒和氮化處理,結(jié)合球磨和超聲法制備了Fe-N/C材料。運(yùn)用掃描電子顯微鏡(SEM)、透射電子顯微鏡(TEM)、X射線衍射(XRD)、氮?dú)馕?脫附技術(shù)等手段對(duì)材料進(jìn)行表征。結(jié)果表明,制備的Fe-N/C多孔材料具有高比表面積(828.57m2/g)、多孔結(jié)構(gòu)、均勻的孔徑分布和良好的導(dǎo)電性能。同時(shí),氮原子和鐵原子有效地嵌入碳載體中,形成高度分散的Fe-N-C位點(diǎn)結(jié)構(gòu),能夠提供有效的催化中心,表現(xiàn)出優(yōu)異的氧還原反應(yīng)性能。本研究為高效制備原位形成高度分散的催化劑提供了新思路。

關(guān)鍵詞:Fe-N/C;非溶液法;多孔材料;氧還原反應(yīng);催化劑

Abstract

Inthispaper,anon-solventmethodforpreparingFe-N/Cporousmaterialsforcatalyzingoxygenreductionreactionsisproposed.TheFe-N/Cmaterialwaspreparedbyusingpolyanilineasacarrierandsubjectedtocalcinationandnitrogenationtreatment.Incombinationwithballmillingandultrasonictreatment,theFe-N/Cmaterialwasprepared.Thematerialwascharacterizedbyscanningelectronmicroscopy(SEM),transmissionelectronmicroscopy(TEM),X-raydiffraction(XRD),nitrogenadsorption/desorptiontechniquesandothers.TheresultsshowedthatthepreparedFe-N/Cporousmaterialhadahighspecificsurfacearea(828.57m2/g),aporousstructure,auniformporesizedistributionandgoodelectricalconductivity.Atthesametime,nitrogenandironatomswereeffectivelyembeddedinthecarboncarriertoformahighlydispersedFe-N-Csitestructure,whichcouldprovideeffectivecatalyticcenters,exhibitingexcellentoxygenreductionreactionperformance.Thisstudyprovidesanewideafortheefficientpreparationofhighdispersioncatalystsformedinsitu.

Keywords:Fe-N/C;non-solventmethod;porousmaterial;oxygenreductionreaction;catalysThedesignednon-solventmethodnotonlysimplifiedthesynthesisprocessbutalsoallowedfortheformationofahighlyporousstructurewithhighsurfaceareaandgoodelectricalconductivity.ThehighlydispersedFe-N-Csitestructurewasformedbyeffectivelyembeddingnitrogenandironatomsinthecarboncarrier,whichprovidedefficientcatalyticcentersfortheoxygenreductionreaction.TheobtainedFe-N/Ccatalystexhibitedexcellentoxygenreductionreactionperformancewithhighactivity,goodselectivity,anddurability.

Moreover,thenon-solventmethodcanbeeasilyscaledupandappliedtomassproduction,makingitapromisingmethodforthelarge-scalepreparationofhighlyactivecatalysts.Thisstudyprovidesanewapproachtodesigninghighlyefficientcatalysts,whichcancontributetothedevelopmentoffuelcellsandotherenergy-relatedapplications.

Inconclusion,thenon-solventmethodisapromisingapproachforthein-situformationofhighlydispersedFe-N/Ccatalystswithexcellentoxygenreductionreactionperformance,whichcanhavepotentialapplicationsinvariousenergyconversionsystems.FurtherstudiesontheoptimizationofthesyntheticprocessandtheunderstandingofthereactionmechanismcanhelptoachieveevenbettercatalyticperformanceInadditiontothedevelopmentofFe-N/Ccatalysts,otherenergy-relatedapplicationshavebeenactivelyexploredinrecentyears.Onepromisingareaisthedevelopmentoffuelcells.Fuelcellsaredevicesthatconvertchemicalenergyintoelectricalenergywithoutcombustion,resultinginhighefficiencyandlowemissions.However,fuelcellperformanceisstilllimitedbytheavailabilityofefficientanddurablecatalysts,particularlyfortheoxygenreductionreaction(ORR)atthecathode.

Fe-N/Ccatalystshavebeenproposedasanalternativetothecommonlyusedplatinum-basedcatalystsduetotheirhighactivityandlowcost.RecentstudieshaveshownthatFe-N/CcatalystscanachieveORRactivitycomparabletoplatinum-basedcatalysts,andcanexhibitgoodlong-termstabilityandelectrochemicalstability.Furthermore,Fe-N/Ccatalystscanbepreparedusingabundantandrenewablefeedstocks,makingthemasustainableandscalablealternativetoplatinum.

Inadditiontofuelcells,Fe-N/Ccatalystshavealsobeenexploredinotherenergyconversionsystems,suchaslithium-oxygenbatteriesandmicrobialfuelcells.Lithium-oxygenbatteriesareapromisingtechnologyfornext-generationenergystorage,buttheirperformanceislimitedbythesluggishORRkineticsatthecathode.Fe-N/CcatalystshavebeenshowntoenhancetheORRactivityinlithium-oxygenbatteries,resultinginhighercapacityandefficiency.Microbialfuelcellsaredevicesthatconvertthechemicalenergyoforganicmatterintoelectricalenergyusingmicroorganismsascatalysts.Fe-N/Ccatalystshavebeendemonstratedtoimprovetheperformanceofmicrobialfuelcellsbyfacilitatingtheelectrochemicaltransferofelectronsbetweenthemicroorganismsandtheelectrode.

Overall,thedevelopmentofFe-N/Ccatalystsandotherenergy-relatedapplicationsisapromisingareaforadvancingsustainableandefficientenergyconversiontechnologies.FurtherresearchisneededtooptimizetheperformanceanddurabilityofFe-N/Ccatalysts,understandtheirunderlyingreactionmechanisms,andexploretheirpotentialinawiderangeofenergyapplicationsInadditiontoFe-N/Ccatalysts,othertypesofcatalystshavealsobeendevelopedforenergy-relatedapplications,suchasmetal-organicframeworks(MOFs)andcarbonnanotubes(CNTs).MOFsarehybridmaterialscomposedofmetalionsormetalclusterslinkedbyorganicligands,andhavebeenstudiedascatalystsforenergystorageandconversionapplicationssuchaselectrocatalysisandfuelcells.CNTsareatypeofcarbonmaterialwithuniquestructuralandelectronicpropertiesthatmakethempromisingcandidatesforvariousenergyapplications,includingenergystorage,solarenergyconversion,andelectrocatalysis.

Energystorageisanotherimportantareaforthedevelopmentofsustainableandefficientenergyconversiontechnologies.Batteriesandsupercapacitorsaretwocommontypesofenergystoragedevicesthathavebeenextensivelystudiedinrecentyears.Lithium-ionbatteries(LIBs)arewidelyusedinportableelectronicsandelectricvehiclesduetotheirhighenergydensityandlongcyclelife.However,thelimitedavailabilityandhighcostoflithiumresourceshavemotivatedthesearchforalternativebatterychemistries.Sodium-ionbatteries(SIBs)areattractingincreasingattentionasapotentiallow-costandsustainablealternativetoLIBs,andresearcheffortsarefocusedondevelopingefficientandstablecathodematerialsforSIBs.

Supercapacitors,alsoknownasultracapacitors,areanothertypeofenergystoragedevicethatcanstoreandreleaseenergyquicklyandefficiently.Theyareusedinapplicationsthatrequirehighpowerdensityandfastcharge-dischargecycles,suchaselectricvehicles,renewableenergysystems,andportableelectronics.Thecapacitanceofsupercapacitorsdependsonthesurfaceareaoftheelectrodematerials,whichhasledtothedevelopmentofvariouscarbon-basedmaterialswithhighsurfaceareaandexcellentconductivity,suchasgraphene,CNTs,andmesoporouscarbon.

Inconclusion,thedevelopmentofsustainableandefficientenergyconversiontechnologiesiscrucialforthetransitiontoalow-carboneconomyandthemitigationofclimatechange.Fe-N/Ccatalystsandotheradvancedmaterialshave

溫馨提示

  • 1. 本站所有資源如無(wú)特殊說(shuō)明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請(qǐng)下載最新的WinRAR軟件解壓。
  • 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請(qǐng)聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶(hù)所有。
  • 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁(yè)內(nèi)容里面會(huì)有圖紙預(yù)覽,若沒(méi)有圖紙預(yù)覽就沒(méi)有圖紙。
  • 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
  • 5. 人人文庫(kù)網(wǎng)僅提供信息存儲(chǔ)空間,僅對(duì)用戶(hù)上傳內(nèi)容的表現(xiàn)方式做保護(hù)處理,對(duì)用戶(hù)上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對(duì)任何下載內(nèi)容負(fù)責(zé)。
  • 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請(qǐng)與我們聯(lián)系,我們立即糾正。
  • 7. 本站不保證下載資源的準(zhǔn)確性、安全性和完整性, 同時(shí)也不承擔(dān)用戶(hù)因使用這些下載資源對(duì)自己和他人造成任何形式的傷害或損失。

評(píng)論

0/150

提交評(píng)論