合金电镀应用广泛,但将超声波用于合金电镀的研究还不系统。以超声波与电沉积相结合制备Pd-Ni-P合金,通过扫描电镜(SEM)、能谱仪(EDX)、X射线衍射仪(XRD)等对Pd-Ni-P合金镀层的形貌、成分和组织结构进行了表征,采用循环伏安法研究了超...合金电镀应用广泛,但将超声波用于合金电镀的研究还不系统。以超声波与电沉积相结合制备Pd-Ni-P合金,通过扫描电镜(SEM)、能谱仪(EDX)、X射线衍射仪(XRD)等对Pd-Ni-P合金镀层的形貌、成分和组织结构进行了表征,采用循环伏安法研究了超声波对Pd-Ni-P合金电沉积的影响。结果表明:超声波作用使沉积层中Pd的含量增加,镀层表面更致密均匀;超声波振荡有利于溶液中离子的传质过程,主要是提高了Pd2+的沉积速率;在1.0 mol/L Na OH溶液中,超声波作用显著增强了Pd-Ni-P合金镀层的耐腐蚀性能,使腐蚀电位正移80 m V。展开更多
Codeposition mechanism of phosphorus with nickel on an Ni Ag alloy electrode has been investigated by means of in situ surface enhanced Raman spectroscopy(SERS) and electrochemical method to obtain new information abo...Codeposition mechanism of phosphorus with nickel on an Ni Ag alloy electrode has been investigated by means of in situ surface enhanced Raman spectroscopy(SERS) and electrochemical method to obtain new information about the phosphorus incorporation mechanism during electrodeposition of Ni P alloys.The intermediate,Ni(PH3)n,in the electrodeposition of Ni P alloy was detected with in situ surface Raman spectroscopy for the first time. The experimental results showed that in the solution without NiSO4,hypophosphite was reduced only to Ni phosphine compound,while in the case where NiSO4 coexisted in the solution,the Ni phosphine compound,as an intermediate,was oxidized by Ni2+to elemental phosphorus in alloys with nickel acting as the catalyst.展开更多
Different weights of amorphous Ni–P alloy with same P contents were electrodeposited on nickel plate with same area used as cathode for hydrogen evolution reaction(HER). The amorphous Ni–P alloy coatings were charac...Different weights of amorphous Ni–P alloy with same P contents were electrodeposited on nickel plate with same area used as cathode for hydrogen evolution reaction(HER). The amorphous Ni–P alloy coatings were characterized for their surface morphology and composition through Scanning electron microscopy(SEM) and Energy dispersive X-ray spectroscopy(EDS) techniques, X-ray photoelectron spectroscopy(XPS) and X-ray diffraction(XRD) analysis. The electrocatalytic activity for HER in alkaline medium is determined by linear scan voltammetry(LSV) and a relationship between HER activity and capacitance is established. The capacitance varies with the loading of the Ni–P on Ni plate but the activity for HER is directly proportional to the capacitance in alkaline and vice versa. 3#Ni–P/Ni containing 3.85 mg Ni–P alloy with highest capacitance performs the best catalytic activity. This work provides direct evidence to explore the capacitance influence on the electrocatalystic activity for the HER.展开更多
The electrodeposition mechanism of Ni-Mo alloys from ammoniacal citrate solution was investigated by means of steady-state polarization curves, impedance measurement and XPS analysis. XPS analysis showed the existence...The electrodeposition mechanism of Ni-Mo alloys from ammoniacal citrate solution was investigated by means of steady-state polarization curves, impedance measurement and XPS analysis. XPS analysis showed the existence of tetravalent molybdenum corresponding to MoO2 on the surface of some deposits. Probably, as an intermediate product, MoO2 was reduced by atomic hydrogen adsorpted on nickel. Electrochemical investigation indicated that [Nicit(NH3)2]-ion is the electro-active species of nickel, though nickel ion ekist mainly as[Nicit(NH3)3]- in ammoniacal citrate solution.展开更多
文摘合金电镀应用广泛,但将超声波用于合金电镀的研究还不系统。以超声波与电沉积相结合制备Pd-Ni-P合金,通过扫描电镜(SEM)、能谱仪(EDX)、X射线衍射仪(XRD)等对Pd-Ni-P合金镀层的形貌、成分和组织结构进行了表征,采用循环伏安法研究了超声波对Pd-Ni-P合金电沉积的影响。结果表明:超声波作用使沉积层中Pd的含量增加,镀层表面更致密均匀;超声波振荡有利于溶液中离子的传质过程,主要是提高了Pd2+的沉积速率;在1.0 mol/L Na OH溶液中,超声波作用显著增强了Pd-Ni-P合金镀层的耐腐蚀性能,使腐蚀电位正移80 m V。
文摘Codeposition mechanism of phosphorus with nickel on an Ni Ag alloy electrode has been investigated by means of in situ surface enhanced Raman spectroscopy(SERS) and electrochemical method to obtain new information about the phosphorus incorporation mechanism during electrodeposition of Ni P alloys.The intermediate,Ni(PH3)n,in the electrodeposition of Ni P alloy was detected with in situ surface Raman spectroscopy for the first time. The experimental results showed that in the solution without NiSO4,hypophosphite was reduced only to Ni phosphine compound,while in the case where NiSO4 coexisted in the solution,the Ni phosphine compound,as an intermediate,was oxidized by Ni2+to elemental phosphorus in alloys with nickel acting as the catalyst.
基金supported by the National Natural Science Foundation of China(Grant Nos.:21576032 and 21376283)
文摘Different weights of amorphous Ni–P alloy with same P contents were electrodeposited on nickel plate with same area used as cathode for hydrogen evolution reaction(HER). The amorphous Ni–P alloy coatings were characterized for their surface morphology and composition through Scanning electron microscopy(SEM) and Energy dispersive X-ray spectroscopy(EDS) techniques, X-ray photoelectron spectroscopy(XPS) and X-ray diffraction(XRD) analysis. The electrocatalytic activity for HER in alkaline medium is determined by linear scan voltammetry(LSV) and a relationship between HER activity and capacitance is established. The capacitance varies with the loading of the Ni–P on Ni plate but the activity for HER is directly proportional to the capacitance in alkaline and vice versa. 3#Ni–P/Ni containing 3.85 mg Ni–P alloy with highest capacitance performs the best catalytic activity. This work provides direct evidence to explore the capacitance influence on the electrocatalystic activity for the HER.
文摘The electrodeposition mechanism of Ni-Mo alloys from ammoniacal citrate solution was investigated by means of steady-state polarization curves, impedance measurement and XPS analysis. XPS analysis showed the existence of tetravalent molybdenum corresponding to MoO2 on the surface of some deposits. Probably, as an intermediate product, MoO2 was reduced by atomic hydrogen adsorpted on nickel. Electrochemical investigation indicated that [Nicit(NH3)2]-ion is the electro-active species of nickel, though nickel ion ekist mainly as[Nicit(NH3)3]- in ammoniacal citrate solution.