期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
活塞环材料 被引量:13
1
作者 邱复兴 《内燃机配件》 2004年第1期3-14,共12页
本文较全面介绍了钢、铸铁活塞环材料的机械性能、金相组织 ,材料的使用性能、热稳定性、线膨胀系数、热导率 ,活塞环材料的磨合性、耐磨性、减磨性、抗熔着磨损性、耐蚀性 ,环的断裂等 ,介绍了钢的可绕性、铸铁的铸造性能、热处理对材... 本文较全面介绍了钢、铸铁活塞环材料的机械性能、金相组织 ,材料的使用性能、热稳定性、线膨胀系数、热导率 ,活塞环材料的磨合性、耐磨性、减磨性、抗熔着磨损性、耐蚀性 ,环的断裂等 ,介绍了钢的可绕性、铸铁的铸造性能、热处理对材料性能的影响 ,材料的机加工性能及可表面处理性等。供活塞环设计、制造。 展开更多
关键词 内燃机 活塞环 物铸铁 合成铸铁 密流球化 可表面处理性 膜基界面结合强度
下载PDF
Bimetal-organic framework-derived carbon nanocubes with 3D hierarchical pores as highly efficient oxygen reduction reaction electrocatalysts for microbial fuel cells 被引量:1
2
作者 Neng Chen Zihan Meng +3 位作者 Rui Wang Shichang Cai Weibin Guo Haolin Tang 《Science China Materials》 SCIE EI CAS CSCD 2021年第12期2926-2937,共12页
Noble metal-free and highly efficient electrocatalytic materials with hierarchically porous structures continue to be studied for the oxygen reduction reaction(ORR) in microbial fuel cells(MFCs). We report bimetal-org... Noble metal-free and highly efficient electrocatalytic materials with hierarchically porous structures continue to be studied for the oxygen reduction reaction(ORR) in microbial fuel cells(MFCs). We report bimetal-organic framework(bi-MOF)-derived nanocubic Swiss cheese-like carbons with a novel three-dimensional hierarchically porous structure(3D Co-N-C) prepared by utilizing cetyltrimethylammonium bromide(CTAB) as a structure-directing agent to control the formation of a nanocubic skeleton, and silica spheres as a template to form a mesoporous structure. The elemental composition and chemical morphology of this material can be tuned through the Zn/Co ratio to optimize its ORR catalytic activity. The optimized 3D Co-N-C displays excellent ORR catalytic performance(half-wave potential as high as 0.754 V vs. reversible hydrogen electrode and diffusion-limiting current density of 5.576 mA cm^(-2)) in 0.01 mol L^(-1) phosphate-buffered saline(PBS electrolyte),showing it can compete with the commercial 20 wt% Pt/C catalysts. The catalytic capability and long-term durability of 3D Co-N-C as an air-filled cathode electrocatalyst in an MFC device are tested, showing that the 3D CoNC-MFC can reach a high power density of 1257 mW m^(-2) and provide a competitive voltage during a periodic feeding operation for 192 h;these values are much higher than those of the Pt/C-MFC. 展开更多
关键词 Co-N-doped carbon structure-oriented approach 3D hierarchically porous nanocubes oxygen reduction reaction microbial fuel cells
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部