Ti-doped nonstoichiometric LiFePO4, i.e. Li0.95Fe0.95Ti0.05PO4 was synthesized by solid-state reaction method. X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), Scanning electron microscope (SEM...Ti-doped nonstoichiometric LiFePO4, i.e. Li0.95Fe0.95Ti0.05PO4 was synthesized by solid-state reaction method. X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), Scanning electron microscope (SEM) and electrochemical charge and discharge tests were used to characterize the as-prepared sample. The results indicate that Li0.95Fe0.95Ti0.05PO4 used as the cathode material for lithium-ion battery exhibits improved cyclic stability and rate capability than those of undoped LiFePO4. 150 mAh·g-1 of discharge capacity was achieved at 0.1 C (17 mA ·g-1) at room temperature.展开更多
从唐菖蒲(Gladiolus gandavensis Van Houtte)球茎中分离得到23个化合物,应用波谱方法及与已知品对照的手段,将其鉴定为羽扇豆醇(1)、β-香树脂醇(2)、木栓酮(3)、木栓醇(4)、桦木醇(5)、(22E,24R)-24-methyl-5α-chol-esta-7,22-dien-3...从唐菖蒲(Gladiolus gandavensis Van Houtte)球茎中分离得到23个化合物,应用波谱方法及与已知品对照的手段,将其鉴定为羽扇豆醇(1)、β-香树脂醇(2)、木栓酮(3)、木栓醇(4)、桦木醇(5)、(22E,24R)-24-methyl-5α-chol-esta-7,22-dien-3β-ol(6)、(E)-对羟基肉桂酸甲酯(7)、豆甾醇(8)、羽扇豆酮(9)、3β,27-dihydroxylup-12-ene(10)、齐墩果酸(11)、桦木酸(12)、1-甲基-3,8-二羟基-6,7-二氧亚甲基蒽醌-2-羧酸甲酯(13)、1-甲基-3,8-二羟基-6-甲氧基蒽醌(14)、1,7-二羟基-3,6-二甲氧基蒽醌(15)、(E)-对羟基肉桂酸(16)、咖啡酸乙酯(17)、β-胡萝卜苷(18)、2β,3β-二羟基-齐墩果-12-烯-23,28-二羧酸(19)、2β,3β,16α-三羟基-齐墩果-12-烯-23,28-二羧酸(20)、2β,3β-二羟基-齐墩果-12-烯-23,28-二羧酸-3-O-β-D-吡喃葡萄糖苷(21)、2β,3β,16α-三羟基-齐墩果-12-烯-23,28-二羧酸-3-O-β-D-吡喃葡萄糖苷(22)和咖啡酸(23).展开更多
文摘Ti-doped nonstoichiometric LiFePO4, i.e. Li0.95Fe0.95Ti0.05PO4 was synthesized by solid-state reaction method. X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), Scanning electron microscope (SEM) and electrochemical charge and discharge tests were used to characterize the as-prepared sample. The results indicate that Li0.95Fe0.95Ti0.05PO4 used as the cathode material for lithium-ion battery exhibits improved cyclic stability and rate capability than those of undoped LiFePO4. 150 mAh·g-1 of discharge capacity was achieved at 0.1 C (17 mA ·g-1) at room temperature.
文摘从唐菖蒲(Gladiolus gandavensis Van Houtte)球茎中分离得到23个化合物,应用波谱方法及与已知品对照的手段,将其鉴定为羽扇豆醇(1)、β-香树脂醇(2)、木栓酮(3)、木栓醇(4)、桦木醇(5)、(22E,24R)-24-methyl-5α-chol-esta-7,22-dien-3β-ol(6)、(E)-对羟基肉桂酸甲酯(7)、豆甾醇(8)、羽扇豆酮(9)、3β,27-dihydroxylup-12-ene(10)、齐墩果酸(11)、桦木酸(12)、1-甲基-3,8-二羟基-6,7-二氧亚甲基蒽醌-2-羧酸甲酯(13)、1-甲基-3,8-二羟基-6-甲氧基蒽醌(14)、1,7-二羟基-3,6-二甲氧基蒽醌(15)、(E)-对羟基肉桂酸(16)、咖啡酸乙酯(17)、β-胡萝卜苷(18)、2β,3β-二羟基-齐墩果-12-烯-23,28-二羧酸(19)、2β,3β,16α-三羟基-齐墩果-12-烯-23,28-二羧酸(20)、2β,3β-二羟基-齐墩果-12-烯-23,28-二羧酸-3-O-β-D-吡喃葡萄糖苷(21)、2β,3β,16α-三羟基-齐墩果-12-烯-23,28-二羧酸-3-O-β-D-吡喃葡萄糖苷(22)和咖啡酸(23).