By using a simply liquid phase method at a low temperature, rutile TiO 2 nanowhiskers were successfully prepared from TiCl 4 aqueous solution at 70 ℃ after aging for 11 d. The obtained TiO 2 nanowhiskers were charact...By using a simply liquid phase method at a low temperature, rutile TiO 2 nanowhiskers were successfully prepared from TiCl 4 aqueous solution at 70 ℃ after aging for 11 d. The obtained TiO 2 nanowhiskers were characterized by means of TEM,HRTEM and XRD. The results show that the nanowhiskers are rutile crystals growing along c-axis direction with a length of 100150 nm and a diameter 68 nm. The simple fabrication method of TiO 2 nanowhiskers will promote practical application of 1D TiO 2.展开更多
A novel coprecipitation-reduction process has been proposed for preparing highly selective Cu/ZnO/Al 2O 3 catalysts for methanol synthesis from CO 2 hydrogenation. Compared to the catalysts prepared by the conventiona...A novel coprecipitation-reduction process has been proposed for preparing highly selective Cu/ZnO/Al 2O 3 catalysts for methanol synthesis from CO 2 hydrogenation. Compared to the catalysts prepared by the conventional method, the new catalysts prepared via the new method exhibit much higher BET surface area and pore size, much smaller crystallite size and higher catalytic activity and selectivity in CO 2 hydrogenation to methanol. It is also found that the molar ratio of Cu + to Cu 0 on the surface of the catalyst obtained by coprecipitation-reduction is much higher than that on the reduced catalyst obtained by the conventional method, which could be crucial for its high activity and selectivity for catalytic hydrogenation of CO 2 to methanol.展开更多
A positive material LiNi1/6Co1/6Mn2/3O2 has been prepared by using solid-liquid phase method. A layer structure similar to LiMnO2 was shown by XRD analysis. The positive electrode of the material had a higher specific...A positive material LiNi1/6Co1/6Mn2/3O2 has been prepared by using solid-liquid phase method. A layer structure similar to LiMnO2 was shown by XRD analysis. The positive electrode of the material had a higher specific capacity, and the reversible specific capacity and irreversible capacity increased with the increase of charge cut-off voltage which has the optimum value of 4.4 V. The battery using the material had higher initial charge-discharge efficiency and better high rate discharge performance, and the cyclic life had also been improved obviously. At the same time, the battery was with excellent high and low temperature performance, and safe performance.展开更多
文摘By using a simply liquid phase method at a low temperature, rutile TiO 2 nanowhiskers were successfully prepared from TiCl 4 aqueous solution at 70 ℃ after aging for 11 d. The obtained TiO 2 nanowhiskers were characterized by means of TEM,HRTEM and XRD. The results show that the nanowhiskers are rutile crystals growing along c-axis direction with a length of 100150 nm and a diameter 68 nm. The simple fabrication method of TiO 2 nanowhiskers will promote practical application of 1D TiO 2.
文摘A novel coprecipitation-reduction process has been proposed for preparing highly selective Cu/ZnO/Al 2O 3 catalysts for methanol synthesis from CO 2 hydrogenation. Compared to the catalysts prepared by the conventional method, the new catalysts prepared via the new method exhibit much higher BET surface area and pore size, much smaller crystallite size and higher catalytic activity and selectivity in CO 2 hydrogenation to methanol. It is also found that the molar ratio of Cu + to Cu 0 on the surface of the catalyst obtained by coprecipitation-reduction is much higher than that on the reduced catalyst obtained by the conventional method, which could be crucial for its high activity and selectivity for catalytic hydrogenation of CO 2 to methanol.
文摘A positive material LiNi1/6Co1/6Mn2/3O2 has been prepared by using solid-liquid phase method. A layer structure similar to LiMnO2 was shown by XRD analysis. The positive electrode of the material had a higher specific capacity, and the reversible specific capacity and irreversible capacity increased with the increase of charge cut-off voltage which has the optimum value of 4.4 V. The battery using the material had higher initial charge-discharge efficiency and better high rate discharge performance, and the cyclic life had also been improved obviously. At the same time, the battery was with excellent high and low temperature performance, and safe performance.