上海第二工业大学学报
上海第二工業大學學報
상해제이공업대학학보
JOURNAL OF SHANGHAI SECOND POLYTECHNIC UNIVERSITY
2014年
4期
283-288
,共6页
燕溪溪%李奕怀%汪玲玲%吴敏昌%乔永民%王利军
燕溪溪%李奕懷%汪玲玲%吳敏昌%喬永民%王利軍
연계계%리혁부%왕령령%오민창%교영민%왕리군
锂离子电池%马铃薯淀粉%磷掺杂%高倍率充放电
鋰離子電池%馬鈴藷澱粉%燐摻雜%高倍率充放電
리리자전지%마령서정분%린참잡%고배솔충방전
s:lithium ion batteries%potato starch%phosphorus doping%high charge and discharge rate
为了提高硬炭材料在大电流下快速充放电性能,以马铃薯淀粉为原料、磷酸为掺杂剂,在N2气氛下1000?C热解制得马铃薯淀粉基炭材料。通过热重分析(TG, Thermal Gravimetric Analysis)、扫描电子显微镜(SEM, Scanning Electron Mcroscope)、X射线衍射仪(XRD, X-Ray Diffraction)等测试手段对所得样品进行了详细的表征。测试结果表明:在1000?C下,磷酸的掺杂对马铃薯淀粉热解碳有一定的影响,掺杂质量分数为2%的磷酸炭化得到的样品具有比较好的球形形貌和较大的嵌锂容量。恒流充放电结果显示出样品良好的大电流充放电性能和良好的倍率性能,10C放电时,样品可逆容量达到了0.1C放电(267.78 mA · h/g)时的42.1%,且0.1C放电时首次效率达到了59.61%。
為瞭提高硬炭材料在大電流下快速充放電性能,以馬鈴藷澱粉為原料、燐痠為摻雜劑,在N2氣氛下1000?C熱解製得馬鈴藷澱粉基炭材料。通過熱重分析(TG, Thermal Gravimetric Analysis)、掃描電子顯微鏡(SEM, Scanning Electron Mcroscope)、X射線衍射儀(XRD, X-Ray Diffraction)等測試手段對所得樣品進行瞭詳細的錶徵。測試結果錶明:在1000?C下,燐痠的摻雜對馬鈴藷澱粉熱解碳有一定的影響,摻雜質量分數為2%的燐痠炭化得到的樣品具有比較好的毬形形貌和較大的嵌鋰容量。恆流充放電結果顯示齣樣品良好的大電流充放電性能和良好的倍率性能,10C放電時,樣品可逆容量達到瞭0.1C放電(267.78 mA · h/g)時的42.1%,且0.1C放電時首次效率達到瞭59.61%。
위료제고경탄재료재대전류하쾌속충방전성능,이마령서정분위원료、린산위참잡제,재N2기분하1000?C열해제득마령서정분기탄재료。통과열중분석(TG, Thermal Gravimetric Analysis)、소묘전자현미경(SEM, Scanning Electron Mcroscope)、X사선연사의(XRD, X-Ray Diffraction)등측시수단대소득양품진행료상세적표정。측시결과표명:재1000?C하,린산적참잡대마령서정분열해탄유일정적영향,참잡질량분수위2%적린산탄화득도적양품구유비교호적구형형모화교대적감리용량。항류충방전결과현시출양품량호적대전류충방전성능화량호적배솔성능,10C방전시,양품가역용량체도료0.1C방전(267.78 mA · h/g)시적42.1%,차0.1C방전시수차효솔체도료59.61%。
In order to improve the rapid charge and discharge performance of hard carbon under a big electricity flow, a potato starch-based carbon material was made from the pyrolysis of raw materials, potato starch, at 1 000?C with phosphoric acid as the doping agent under N2 atmosphere. The potato starch-based carbon materials were detailedly characterized by thermal gravimetric analysis (TG), X-ray diffraction (XRD), and scan electron microscope (SEM) etc. The results indicated that the doping agent had a certain influence on the pyrolytic of potato starch and the sample with 2%mass fraction of phosphoric acid generated a better spherical shape and larger intercalated lithium capacity. Constant current charge and discharge experiment also showed a better performance of charge-discharge in large current condition and rate capability. The columbic efficiency at 0.1C reached 59.61%for the first time. Moreover, the reversible capacity at 10C could reach 42.1%of that at 0.1 C (267.78 m · Ah/g).