Al/α-PbO2/β-PbO2 composite electrodes doped with rare earth oxide (CeO2) were prepared by anodic oxidation method investigate the influence of nano-CeO2 dopants on the properties of Al/α-PbO2/β-PbO2-CeO2 electro...Al/α-PbO2/β-PbO2 composite electrodes doped with rare earth oxide (CeO2) were prepared by anodic oxidation method investigate the influence of nano-CeO2 dopants on the properties of Al/α-PbO2/β-PbO2-CeO2 electrodes and the impact of α-PbO2 as the intermediate layer. The results show that using α-PbO2 as the intermediate layer will benefit the crystallization of β-PbO2 and β-PbO2 is more suitable as the surface layer than α-PbO2. CeO2 dopants change the crystallite size and crystal structure, enhance the catalytic activity, and even change the deposition mechanism of PbO2. The doping of CeO2 in the PbO2 electrodes can enhance the electro-catalytic activity, which is helpful for oxygen evolution, and therefore reduce the cell voltage.展开更多
The α-PbO2 deposition layers were prepared on the surface of A1/Pb substrates by constant current electrosynthesis from an alkaline bath, and A1/Pb/α-PbO2 composite inert anode materials were obtained. The effects o...The α-PbO2 deposition layers were prepared on the surface of A1/Pb substrates by constant current electrosynthesis from an alkaline bath, and A1/Pb/α-PbO2 composite inert anode materials were obtained. The effects of the bath composition and bath temperature on the electrosynthesis of α-PbO2 were investigated by means of anodic polarization method, the phase structures and surface microstructures of AI/Pb and α-PbO2 deposition layers were tested by means of X-ray diffraction (XRD) and scanning electron microscopy (SEM), respectively. The experimental data have shown that the process of α-PbO2 formation have several stages. The appropriate conditions can effectively improve the formation rate of α-PbO2 and avoid the occurrence of oxygen evolution reaction. The α-PbO2 deposition layer obtained in alkaline bath possesses rhombic structure, and it is composed of well developed spherical unit cells.展开更多
阀控式铅酸蓄电池的安全可靠性高,成本低,但其循环寿命短。以4BS晶种用作电池正极添加剂,可显著提高电池的放电容量和循环寿命。笔者在12 V 2.3 Ah电池的正极板铅膏配方中添加4BS晶种(4BS晶种在铅膏所占质量分数为1%),使其1C高倍率放电...阀控式铅酸蓄电池的安全可靠性高,成本低,但其循环寿命短。以4BS晶种用作电池正极添加剂,可显著提高电池的放电容量和循环寿命。笔者在12 V 2.3 Ah电池的正极板铅膏配方中添加4BS晶种(4BS晶种在铅膏所占质量分数为1%),使其1C高倍率放电性能提高4.2%,循环寿命也得到延长。添加4BS晶种的正极板以α-PbO2形成的多孔骨架混合结构为主,更加利于H+、SO42-和水分子的迁移。电池充放电循环时,正极板发生α-PbO2先转化成PbSO4,再到β-PbO2的演变过程。电池循环寿命失效,本质上是正极活性物质(PAM)的多孔骨架结构逐渐消失,伴有不可逆硫酸盐化,导致板栅腐蚀、内阻增大、寿命终止。展开更多
基金Project(50964008)supported by the National Natural Science Foundation of ChinaProject(2010287)supported by Analysis and Testing Foundation of Kunming University of Science and Technology,China
摘要Al/α-PbO2/β-PbO2 composite electrodes doped with rare earth oxide (CeO2) were prepared by anodic oxidation method investigate the influence of nano-CeO2 dopants on the properties of Al/α-PbO2/β-PbO2-CeO2 electrodes and the impact of α-PbO2 as the intermediate layer. The results show that using α-PbO2 as the intermediate layer will benefit the crystallization of β-PbO2 and β-PbO2 is more suitable as the surface layer than α-PbO2. CeO2 dopants change the crystallite size and crystal structure, enhance the catalytic activity, and even change the deposition mechanism of PbO2. The doping of CeO2 in the PbO2 electrodes can enhance the electro-catalytic activity, which is helpful for oxygen evolution, and therefore reduce the cell voltage.
基金Project(20125314110011) supported by the Specialized Research Fund for the Doctoral Program of the Ministry of Education of ChinaProject(2014FA024) supported by the Key Project of Yunnan Province Applied Basic Research Plan of ChinaProject(51004056) supported by the National Natural Science Foundation of China
摘要The α-PbO2 deposition layers were prepared on the surface of A1/Pb substrates by constant current electrosynthesis from an alkaline bath, and A1/Pb/α-PbO2 composite inert anode materials were obtained. The effects of the bath composition and bath temperature on the electrosynthesis of α-PbO2 were investigated by means of anodic polarization method, the phase structures and surface microstructures of AI/Pb and α-PbO2 deposition layers were tested by means of X-ray diffraction (XRD) and scanning electron microscopy (SEM), respectively. The experimental data have shown that the process of α-PbO2 formation have several stages. The appropriate conditions can effectively improve the formation rate of α-PbO2 and avoid the occurrence of oxygen evolution reaction. The α-PbO2 deposition layer obtained in alkaline bath possesses rhombic structure, and it is composed of well developed spherical unit cells.
摘要阀控式铅酸蓄电池的安全可靠性高,成本低,但其循环寿命短。以4BS晶种用作电池正极添加剂,可显著提高电池的放电容量和循环寿命。笔者在12 V 2.3 Ah电池的正极板铅膏配方中添加4BS晶种(4BS晶种在铅膏所占质量分数为1%),使其1C高倍率放电性能提高4.2%,循环寿命也得到延长。添加4BS晶种的正极板以α-PbO2形成的多孔骨架混合结构为主,更加利于H+、SO42-和水分子的迁移。电池充放电循环时,正极板发生α-PbO2先转化成PbSO4,再到β-PbO2的演变过程。电池循环寿命失效,本质上是正极活性物质(PAM)的多孔骨架结构逐渐消失,伴有不可逆硫酸盐化,导致板栅腐蚀、内阻增大、寿命终止。