稀有金属材料与工程
稀有金屬材料與工程
희유금속재료여공정
RARE METAL MATERIALS AND ENGINEERNG
2010年
2期
333-337
,共5页
熔融盐法%高密度%LiNi_(0.8)Co_(0.2-x)Al_xO_2%Co-Al共掺杂
鎔融鹽法%高密度%LiNi_(0.8)Co_(0.2-x)Al_xO_2%Co-Al共摻雜
용융염법%고밀도%LiNi_(0.8)Co_(0.2-x)Al_xO_2%Co-Al공참잡
molten-salt synthesis%high tap density%LiNi_(0.8)Co_(0.2-x)Al_xO_2%Co-Al co-doping
利用低共熔组成的0.38LiOH-0.62LiNO_3混合锂盐体系,与高密度前驱体Ni_(0.8)Co_(0.2-x)Al_x(OH)_2(0≤x≤0.15)在低温下自混合,无需前期研磨和后续洗涤,直接制备出高密度Co-Al共掺杂的锂离子电池正极材料LiNi_(0.8)Co_(0.2-x)Al_xO_2(0≤x≤0.15).X射线衍射分析结果表明,合成的LiNi_(0.8)Co_(0.2-x)Al_xO_2具有规整的层状α-NaFeO_2结构.扫描电镜显示产物颗粒均匀,LiNi_(0.8)Co_(0.15)Al_(0.05)O_2的振实密度达2.97 g·cm~(-3).电性能测试表明,在0.2 C放电倍率和3.0~4.3 V的电压范围内,LiNi_(0.8)Co_(0.15)Al_(0.05)O_2首次放电比容量达167.5 mAh·g~(-1),且具有良好的循环性能.
利用低共鎔組成的0.38LiOH-0.62LiNO_3混閤鋰鹽體繫,與高密度前驅體Ni_(0.8)Co_(0.2-x)Al_x(OH)_2(0≤x≤0.15)在低溫下自混閤,無需前期研磨和後續洗滌,直接製備齣高密度Co-Al共摻雜的鋰離子電池正極材料LiNi_(0.8)Co_(0.2-x)Al_xO_2(0≤x≤0.15).X射線衍射分析結果錶明,閤成的LiNi_(0.8)Co_(0.2-x)Al_xO_2具有規整的層狀α-NaFeO_2結構.掃描電鏡顯示產物顆粒均勻,LiNi_(0.8)Co_(0.15)Al_(0.05)O_2的振實密度達2.97 g·cm~(-3).電性能測試錶明,在0.2 C放電倍率和3.0~4.3 V的電壓範圍內,LiNi_(0.8)Co_(0.15)Al_(0.05)O_2首次放電比容量達167.5 mAh·g~(-1),且具有良好的循環性能.
이용저공용조성적0.38LiOH-0.62LiNO_3혼합리염체계,여고밀도전구체Ni_(0.8)Co_(0.2-x)Al_x(OH)_2(0≤x≤0.15)재저온하자혼합,무수전기연마화후속세조,직접제비출고밀도Co-Al공참잡적리리자전지정겁재료LiNi_(0.8)Co_(0.2-x)Al_xO_2(0≤x≤0.15).X사선연사분석결과표명,합성적LiNi_(0.8)Co_(0.2-x)Al_xO_2구유규정적층상α-NaFeO_2결구.소묘전경현시산물과립균균,LiNi_(0.8)Co_(0.15)Al_(0.05)O_2적진실밀도체2.97 g·cm~(-3).전성능측시표명,재0.2 C방전배솔화3.0~4.3 V적전압범위내,LiNi_(0.8)Co_(0.15)Al_(0.05)O_2수차방전비용량체167.5 mAh·g~(-1),차구유량호적순배성능.
Co-Al co-doped cathode material LiNi_(0.8)Co_(0.2-x)Al_xO_2 (0≤x≤0.15) was directly synthesized without artificial grinding and washing by a eutectic molten-salt mixture (0.38LiOH-0.62LiNO_3) method. According to this method, the eutectic molten-salt mixture was self-mixed with high tap density precursor Ni_(0.8)Co_(0.2-x)Al_x(OH)_2 thoroughly at low temperature and then sintered at a certain temperature. The tap-density of LiNi_(0.8)Co_(0.15)Al_(0.05)O_2 obtained is 2.97 g·cm~(-3). According to XRD and SEM, these LiNi_(0.8)Co_(0.2-x)Al_xO_2 materials have an order α-NaFeO_2 layer structure and regular morphology. The charge-discharge tests show that the LiNi_(0.8)Co_(0.15)Al_(0.05)O_2 has an initial discharge capacity as high as 167.5 mAh·g~(-1) and excellent capacity retention in the range from 3.0 V to 4.3 V at a specific current of 0.2 C.