Ru Sn binary oxide is one of the most frequently used anode coating material in electrochemical industry, but its composition distribution and microstructure are not homogeneous, so the nanoscale RuO 2 SnO 2 binary ox...Ru Sn binary oxide is one of the most frequently used anode coating material in electrochemical industry, but its composition distribution and microstructure are not homogeneous, so the nanoscale RuO 2 SnO 2 binary oxide was prepared for improvement by a sol gel technique. The morphology, microstructure, crystal structure and other properties of the new oxide were studied by EPMA, DTA,XRD,TEM, and electrochemical analysis. The results showed that the Ru Sn oxide nanomaterial has excellent electrocatalytical properties.展开更多
It was first reported that bovine hemoglobin electrocatulytically reduced the oxygen in acidic condition. The method was developed to fabricate bovine hemoglobin modified electrode by polyethyleneimine/ glutaldehyde i...It was first reported that bovine hemoglobin electrocatulytically reduced the oxygen in acidic condition. The method was developed to fabricate bovine hemoglobin modified electrode by polyethyleneimine/ glutaldehyde intermediary. The electrode can electrocatalytically reduce oxygen in acidic condition, too. The new electrode fabricating method suits for modifiers with amino-group.展开更多
文摘Ru Sn binary oxide is one of the most frequently used anode coating material in electrochemical industry, but its composition distribution and microstructure are not homogeneous, so the nanoscale RuO 2 SnO 2 binary oxide was prepared for improvement by a sol gel technique. The morphology, microstructure, crystal structure and other properties of the new oxide were studied by EPMA, DTA,XRD,TEM, and electrochemical analysis. The results showed that the Ru Sn oxide nanomaterial has excellent electrocatalytical properties.
文摘It was first reported that bovine hemoglobin electrocatulytically reduced the oxygen in acidic condition. The method was developed to fabricate bovine hemoglobin modified electrode by polyethyleneimine/ glutaldehyde intermediary. The electrode can electrocatalytically reduce oxygen in acidic condition, too. The new electrode fabricating method suits for modifiers with amino-group.