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可穿戴储能纺织材料的研究进展 Title:ResearchProgressonWearableEnergyStorageTextileMaterials Abstract: Withtherapiddevelopmentofwearabletechnology,thedemandforwearableenergystoragedeviceshasbeenincreasing.Wearableenergystoragetextilematerials,whichintegrateenergystoragecapabilitiesintotextilesubstrates,haveemergedasapromisingsolutiontomeetthisdemand.Thispaperaimstoprovideanoverviewoftheresearchprogressmadeinthefieldofwearableenergystoragetextilematerials.Thediscussionincludesvarioustypesofenergystoragemechanisms,fabricationmethods,andpotentialapplicationsofthesematerials.Additionally,challengesandfutureresearchdirectionsarealsohighlighted. Introduction: Wearabletechnologyhasexperiencedsignificantgrowthinrecentyears,drivenbyadvancementsinelectronics,sensortechnology,andcommunicationsystems.However,thelimitedpowersupplyinwearabledeviceshasbeenamajorconstraintfortheiroperationandpracticality.Conventionalbatteriesareoftenbulkyanduncomfortabletowear,limitingthedesignpossibilitiesanduserexperience.Therefore,theintegrationofenergystoragecapabilitiesintotextileshasgainedsignificantattention,leadingtothedevelopmentofwearableenergystoragetextilematerials. TypesofWearableEnergyStorageTextileMaterials: Severaltypesofwearableenergystoragetextilematerialshavebeenexplored,includingsupercapacitors,batteries,andhybridsystems.Supercapacitorshaveattractedconsiderableinterestduetotheirhighpowerdensity,fastcharging,andlongcyclelife.Fabricatingsupercapacitorsintotextilematerialsusuallyinvolvesthedepositionofelectrodematerialsonflexiblesubstrates,suchasconductivetextilesorcarbonnanotube-basedyarns.Batteries,suchaslithium-ionbatteries,havealsobeenincorporatedintotextilesbyintegratingnanomaterials,likenanowiresornanoparticles,intothefabricstructure.Hybridsystems,whichcombinedifferentenergystoragemechanisms,haveshownpromisingresultsintermsofbothenergydensityandpoweroutput. FabricationMethods: Thereareseveralfabricationmethodsemployedtocreatewearableenergystoragetextilematerials.Themostcommonapproachesinclud

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