There have been few reports concerning the hydrothermal synthesis of silicon anode materials. In this manuscript, starting from the very cheap silica sol, we hydrothermally prepared porous silicon nanospheres in an au...There have been few reports concerning the hydrothermal synthesis of silicon anode materials. In this manuscript, starting from the very cheap silica sol, we hydrothermally prepared porous silicon nanospheres in an autoclave at 180 ℃. As anode materials for lithium-ion batteries (LIBs), the as-prepared nano-silicon anode without any carbon coating delivers a high reversible specific capacity of 2,650 mAh·g^-1 at 0.36 A·g^-1 and a significant cycling stability of about 950 mAh·g^-1 at 3.6 A·g^-1 during 500 cycles.展开更多
通过大田试验,在轻度镉-铅复合污染菜地向小白菜叶面喷施不同浓度的硅溶胶、铈溶胶及硅铈复合溶胶,研究其对产量、品质、抗氧化酶活性及Cd、Pb吸收的影响。结果表明,喷施硅铈溶胶均能促进小白菜生长,增加小白菜生物量和提高维生素C、可...通过大田试验,在轻度镉-铅复合污染菜地向小白菜叶面喷施不同浓度的硅溶胶、铈溶胶及硅铈复合溶胶,研究其对产量、品质、抗氧化酶活性及Cd、Pb吸收的影响。结果表明,喷施硅铈溶胶均能促进小白菜生长,增加小白菜生物量和提高维生素C、可溶性糖的含量,降低亚硝酸盐的含量;显著增强抗氧化系统保护酶(SOD、POD)活性和降低小白菜地下部、地上部中镉、铅的含量及累积量。在不同浓度的施硅和施铈处理中,喷施0.50 g kg-1SiO2处理和0.20 g kg-1CeO2处理在增产、提升品质和缓解重金属对小白菜毒害上效果最佳,喷施硅铈复合溶胶虽效果显著,但与单独施硅、施铈相比无明显提高。展开更多
Silicon carbide (SiC) ceramic with YAG (Y3Al5O12) additive added by sol-gel method was liquid-phase sintered at different sintering temperatures, and the sintering mechanism and microstructural characteristics of resu...Silicon carbide (SiC) ceramic with YAG (Y3Al5O12) additive added by sol-gel method was liquid-phase sintered at different sintering temperatures, and the sintering mechanism and microstructural characteristics of resulting silicon carbide ceramics were analyzed by X-ray diffraction (XRD), scanning electron microscopy (SEM) and elemental distribution of surface (EDS). YAG (yttrium aluminum garnet) phase formed before the sintering and its uniform distribution in the SiC/YAG composite powder decreased the sintering temperature and improved the densification of SiC ceramic. The suitable sintering temperature was 1860 °C with the specimen sintered at this temperature having superior sintering and mechanical properties, smaller crystal size and fewer microstructure defects. Three characteristics of improved toughness of SiC ceramic with YAG added by sol-gel method were microstructural densification, main-crack deflection and crystal ‘bridging’.展开更多
文摘There have been few reports concerning the hydrothermal synthesis of silicon anode materials. In this manuscript, starting from the very cheap silica sol, we hydrothermally prepared porous silicon nanospheres in an autoclave at 180 ℃. As anode materials for lithium-ion batteries (LIBs), the as-prepared nano-silicon anode without any carbon coating delivers a high reversible specific capacity of 2,650 mAh·g^-1 at 0.36 A·g^-1 and a significant cycling stability of about 950 mAh·g^-1 at 3.6 A·g^-1 during 500 cycles.
文摘通过大田试验,在轻度镉-铅复合污染菜地向小白菜叶面喷施不同浓度的硅溶胶、铈溶胶及硅铈复合溶胶,研究其对产量、品质、抗氧化酶活性及Cd、Pb吸收的影响。结果表明,喷施硅铈溶胶均能促进小白菜生长,增加小白菜生物量和提高维生素C、可溶性糖的含量,降低亚硝酸盐的含量;显著增强抗氧化系统保护酶(SOD、POD)活性和降低小白菜地下部、地上部中镉、铅的含量及累积量。在不同浓度的施硅和施铈处理中,喷施0.50 g kg-1SiO2处理和0.20 g kg-1CeO2处理在增产、提升品质和缓解重金属对小白菜毒害上效果最佳,喷施硅铈复合溶胶虽效果显著,但与单独施硅、施铈相比无明显提高。
基金Project (No. 2004C31044) supported by the Science & TechniqueProject of Zhejiang Province, China
文摘Silicon carbide (SiC) ceramic with YAG (Y3Al5O12) additive added by sol-gel method was liquid-phase sintered at different sintering temperatures, and the sintering mechanism and microstructural characteristics of resulting silicon carbide ceramics were analyzed by X-ray diffraction (XRD), scanning electron microscopy (SEM) and elemental distribution of surface (EDS). YAG (yttrium aluminum garnet) phase formed before the sintering and its uniform distribution in the SiC/YAG composite powder decreased the sintering temperature and improved the densification of SiC ceramic. The suitable sintering temperature was 1860 °C with the specimen sintered at this temperature having superior sintering and mechanical properties, smaller crystal size and fewer microstructure defects. Three characteristics of improved toughness of SiC ceramic with YAG added by sol-gel method were microstructural densification, main-crack deflection and crystal ‘bridging’.