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造孔剂含量对粉末轧制制备多孔镍板性能的影响
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作者 尹全中 李小强 +3 位作者 梁永仁 李荣 任尚远 康志新 《粉末冶金工业》 CAS 北大核心 2024年第3期34-39,共6页
实验以碳酸氢铵(NH4HCO3)为造孔剂,通过粉末轧制技术制备了孔隙率为22.2%~52.4%的多孔镍板。研究了造孔剂含量对多孔镍板组织性能的影响。结果表明:随着造孔剂含量的增加,多孔镍板的孔隙率逐渐增大,相对透气系数也逐渐增大,而抗拉强度... 实验以碳酸氢铵(NH4HCO3)为造孔剂,通过粉末轧制技术制备了孔隙率为22.2%~52.4%的多孔镍板。研究了造孔剂含量对多孔镍板组织性能的影响。结果表明:随着造孔剂含量的增加,多孔镍板的孔隙率逐渐增大,相对透气系数也逐渐增大,而抗拉强度逐渐降低。当造孔剂含量为20%时,多孔镍板的孔隙率为40.7%,相对透气系数为10.79 m^(3)/(h·kPa·m^(2)),抗拉强度为135 MPa;当造孔剂含量为40%时,多孔镍板的孔隙率为52.4%,相对透气系数为41 m^(3)/(h·kPa·m^(2)),抗拉强度降低至51 MPa。 展开更多
关键词 粉末轧制技术 造孔剂含量 多孔镍板 组织性能
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Highly active porous nickel-film electrode via polystyrene microsphere template-assisted composite electrodeposition for hydrogen-evolution reaction in alkaline medium 被引量:1
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作者 Yinliang Cao Haijing Liu +1 位作者 Xin Bo Feng Wang 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第3期501-507,共7页
A highly porous nickel-film electrode with satisfactory mechanical strength was prepared by a facile vertical template-assisted composite electrodeposition method using polystyrene(PS) microspheres templates, with the... A highly porous nickel-film electrode with satisfactory mechanical strength was prepared by a facile vertical template-assisted composite electrodeposition method using polystyrene(PS) microspheres templates, with the aim of improving the electrocatalytic activity for the hydrogen-evolution reaction(HER). During the composite electrodeposition process, the hydrophobic PS microspheres were highly dispersed in the electrolyte with the help of a surfactant, and then co-deposited with Ni to form the film electrode. After removing the PS templates by annealing, a porous Ni film containing large amount of uniformly dispersed pores with narrow size distribution was obtained, and then applied as the electrode for the HER in an alkaline medium. As evidenced by the electrochemical analysis, the porous Ni film electrode exhibits higher catalytic activity as compared to a dense Ni film electrode and is superior to a Ni/Ru O2/Ce O2 commercial electrode. The effect of temperature on the catalytic properties of the porous Ni film electrode was also investigated; the activation energy was calculated as 17.26 k J/mol. The enhanced activity toward the HER was attributed to the improved electrochemical surface area and mass transportation facilitated by the high porosity of the synthesized Ni film electrode. 展开更多
关键词 porous film electrode NICKEL ELECTRODEPOSITION electrocatalytic activity hydrogen evolution reaction
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