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时间:2020-03-26
《PANI磁粉的合成、表征及氧传递作用.pdf》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、物理化学学~(WuliHuaxueXuebao)NovemberActaPhys.一Chim.Sin.2011,27(11),2625-26312625[Article]www.whxb.pku.edu.cnNd2Fe,4B,PANl磁粉的合成、表征及氧传递作用史继诚徐洪峰卢璐傅杰(大连交通大学环境与化学工程学院,辽宁大连116028)摘要:经球磨和原位聚合法合成了NdFe,B/PANI磁粉,采用X射线衍射(XRD)、傅里叶变换红外(FTlR)光谱、扫描电镜(SEM)、振动样品磁强计(VSM)对样品进行了表征,用电化学三电极体系和锌空电池考
2、察了NdFe14B/PANI材料在氧传递中的作用.结果表明:NdFe,B/PANI是一维片状纳米材料,电导率O.54S·cm~,内禀矫顽力和剩余磁化强度为149.57kA·m~、20.27A·m·kg:NdFeB/PANI负载密度为0.40mg·cm时,磁性电极的双电层电容增大,传荷电阻减小,磁性锌空电池的极化电流较大:负载密度为3.60mg·cm时,磁性电极的双电层电容减小,传荷电阻增大,磁性锌空电池的极化电流较小.NdFeB/PANI负载密度小于O.89mg·cm时,微磁场促进氧的传质,提高锌空电池的放电性能:高于3.56mg·cm时,
3、微磁场抑制氧的传质,降低锌空电池的放电性能:NdFe,B/PANI中的PANI提高锌空电池的放电性能.关键词:磁场:双电层电容:传荷电阻:氧传递:锌空电池中图分类号:0646SynthesisandCharacterizationofNd2Fe14B/PANIandItsFunctionduringtheOxygenTransferProcessSHIJi—ChengXUHong-FengLULuFUJiefCollegeofEnvironmentalandChemicalEngineering,DalianJiaotongUniversi
4、ty,Dalian116028,LiaoningProvince,R.China)Abstract:Nd2Fe14B,PANImagneticpowderwaspreparedbyballmillingandin-situpolymerization.ThesampleswerecharacterizedbyX.raypowderdifraction(XRD),Fouriertransforminfrared(FTIR)spectroscopy,scanningelectronmicroscopy(SEM),andvibratingsamp
5、lemagnetometer(VSM).ThefunctionofNd2Fe14B/PANlintheoxygentransferprocesswasdeterminedusinganelectrochemicalthreeelectrodesystemandazincairbattery.TheresultsshowedthalNd2Fe,B,PAN1wasaone-dimensionallamellarnanostructuredmaterialwithanelectricalconductivityof0.54S·cm~。anintr
6、insiccoerciveforceof149.57kA·m~,andaresiduaImagnetizationof20_27A·m·kg~.Fora0.40mg·cm~Nd2Fe14B/PANlloaddensitythemagneticelectrodereachedahigherdoubleelectriclayercapacitance,asmallerchargetransferresistancethananonmagneticelectrodeandthepolarizationcurrentofthemagneticzin
7、cairbatteryalsoincreased.Fora3.60mg·cmloaddensitytheresultswerecontrarytothoseofthe0.40mg·cmloaddensitytest.WefoundthatthemicromagneticfieldpromotedtheoxygentransferprocessandimprovedthezincairbatteryperformancewhentheNd2Fe14B,PANIIoaddensitywasIessthan0.89mg·cm~.Ataloadde
8、nsityhigherthan3_56mg·cm~,themicromagneticfieldinhibitedoxygentransferandreducedthezincai
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