论文部分内容阅读
Enhanced stability of Pt nanoparticles on carbon supports
【机 构】
:
The State Key Laboratory of Power Transmission Equipment & System Security and New Technology,Colleg
【出 处】
:
第五届世界氢能技术大会(WHTC2013)
【发表日期】
:
2013年9期
其他文献
Electronic and dehydrogenation properties of TiB2 cluster-doped NaAlH4 (101) surface:A first-princip
The crystal structures,electronic and dehydrogenation properties of TiB2 cluster-doped NaAlH4 (101) surface have been investigated by the first principles DFT method.In the TiB2 cluster-doped NaAlH4 (
Improved de/hydrogenation properties of CeCl3+KH co-doped sodium aluminum hydride prepared by reacti
Sodium aluminum hydride (NaAlH4) is a suitable medium for solid-state hydrogen storage due to its relatively high hydrogen capacity (5.6 wt.%) and moderate temperature (100~150 ℃) and pressure (≤120 b
Preparation of H2-permeable palladium membranes on porous stainless steel substrate modified by alum
会议
A passive and self-adaptive direct methanol fuel cell (DMFC) directly fed with 20 M of methanol is developed to ensure a high energy density of the DMFC.By using a polypropylene based pervaporation fi
会议
Methanol tolerant Pt-based oxygen reduction reaction (ORR) electrocatalyst are highly desirable for the direct methanol fuel cell (DMFC).[1] In this study,we report the synthesis of carbon-supported P
Preparation of PtRu black electrocatalysts via sacrification of magnesia particle for methanol oxida
So far,synthesis of PtRu black catalyst with high alloying degree and small particle size still remains a big challenge for the practical application in the DMFC.In this work,PtRu black catalysts were
Improved reversible dehydrogenation properties of the 2LiBH4-MgH2 composite by milling with metal-fr
The LiBH4-MgH2 reactive hydride composite is a promising hydrogen storage material due to the combined high hydrogen capacity and significant reduced reaction enthalpy.However,the sluggish de/rehydrog
Hydrogen embrittlement of 304L austenitic stainless steel after catholically hydrogen charging: Effe
The effect of plastic pre-deformation on hydrogen embrittlement of 304L austenitic stainless steel was investigated by tensile testing.A group of flat tensile specimens were firstly strained to 3%,6%,