the microstructure and the properties of nickel diffusion layer were also investigated 同時,對擴散層的組織和性能進行了研究。
in addition, treating the cathode diffusion layer with ptfe can further enhance the cell performance 另外,通過對陰極擴散層的疏水處理,有效地改善了陰極水的排出,進一步提高了電池性能。
the studied domain consists of fluid channels, diffusion layers and catalyst layers of anode and cathode, and membrane 研究的區域包括陽極和陰極的流道、擴散層和催化層,以及中間的質子交換膜在內的整個電池。
for pc, the pulse diffusion layer only depends on the diffusion coefficient of cations and the pulse length, is not related to the concentration of the mass 單脈沖擴散層的厚度僅取決于陽離子擴散系數和脈沖導通時間,與溶液本體濃度無關。
the function of diffusion layer and hydrophobic layer is affected by channel and depends on the pore diameter, the porosity and the thickness of diffusion layer and catalyst layer 擴散層和疏水層對氣體作用的結果受流道影響,取決于孔徑、空隙率和厚度的變化。