以 L i2 CO3 和 NH4 VO3 为原料 ,低温合成了 L i1+ x V3 O8.通过对中间产物的热分析 ,选定了低温合成 L i1+ x V3 O8的适宜煅烧温度为 30 0℃ .研究表明 ,L i1+ x V3 O8,原料 L i/ V摩尔比应大于1∶ 3.以 Li1+ x V3 O8作为正极材料 ,...以 L i2 CO3 和 NH4 VO3 为原料 ,低温合成了 L i1+ x V3 O8.通过对中间产物的热分析 ,选定了低温合成 L i1+ x V3 O8的适宜煅烧温度为 30 0℃ .研究表明 ,L i1+ x V3 O8,原料 L i/ V摩尔比应大于1∶ 3.以 Li1+ x V3 O8作为正极材料 ,金属锂为负极组装了模拟电池 ,高、低温合成材料具有较高的放电容量和放电电压 .XRD、SEM分析结果说明低温合成样品的结晶度低、粒径较小 .展开更多
A new isopolyoxovanadate [Ni(1,10′-phen) 3] 2 [V Ⅳ 2V Ⅴ 8O 26] was hydrothermally synthesized and structurally characterized by the single crystal X-ray diffraction. The compound crystallizes in orthorhombic system...A new isopolyoxovanadate [Ni(1,10′-phen) 3] 2 [V Ⅳ 2V Ⅴ 8O 26] was hydrothermally synthesized and structurally characterized by the single crystal X-ray diffraction. The compound crystallizes in orthorhombic system, space group Pbcn with a=1.362 9(3) nm, b=2.215 6(4) nm, c= 2.571 2(4) nm, V=7.764(2) nm 3, Z=4, R=0.040 3, wR 2=0.044 6. The compound exhibits an unusual empty ellipsoidal cage, which is constructed by eight {V ⅤO 4} tetrahedra and two {V ⅣO 5} square pyramids via corner-sharing modes. The chiral [Ni(1,10′-phen) 3] 2+ complexes act as the counter cations.展开更多
文摘以 L i2 CO3 和 NH4 VO3 为原料 ,低温合成了 L i1+ x V3 O8.通过对中间产物的热分析 ,选定了低温合成 L i1+ x V3 O8的适宜煅烧温度为 30 0℃ .研究表明 ,L i1+ x V3 O8,原料 L i/ V摩尔比应大于1∶ 3.以 Li1+ x V3 O8作为正极材料 ,金属锂为负极组装了模拟电池 ,高、低温合成材料具有较高的放电容量和放电电压 .XRD、SEM分析结果说明低温合成样品的结晶度低、粒径较小 .
文摘A new isopolyoxovanadate [Ni(1,10′-phen) 3] 2 [V Ⅳ 2V Ⅴ 8O 26] was hydrothermally synthesized and structurally characterized by the single crystal X-ray diffraction. The compound crystallizes in orthorhombic system, space group Pbcn with a=1.362 9(3) nm, b=2.215 6(4) nm, c= 2.571 2(4) nm, V=7.764(2) nm 3, Z=4, R=0.040 3, wR 2=0.044 6. The compound exhibits an unusual empty ellipsoidal cage, which is constructed by eight {V ⅤO 4} tetrahedra and two {V ⅣO 5} square pyramids via corner-sharing modes. The chiral [Ni(1,10′-phen) 3] 2+ complexes act as the counter cations.