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Insightful view on the active sites of Ni/NixP for hydrogen evolution reaction Journal article
Chen, M.P., Liu, D., Chen, Y.Y., Liu, L., Du, X.Y., Feng, J.X., Zhou, P.F., Zi, B.Y., Liu, Q.J., Lo, K.H., Chen, S., Wang, S.P., Ip, F. I., Pan, H.. Insightful view on the active sites of Ni/NixP for hydrogen evolution reaction[J]. Applied Materials Today, 2022, 26(101343).
Authors:  Chen, M.P.;  Liu, D.;  Chen, Y.Y.;  Liu, L.;  Du, X.Y.; et al.
Favorite | TC[WOS]:15 TC[Scopus]:15  IF:7.2/7.8 | Submit date:2022/07/27
Hydrogen Evolution Reaction  Ni/nixp Hybrids  Active Sites  In-situ Raman Spectroscopy  
Vertically-aligned 1T/2H-MS2 (M= Mo, W) nanosheets for surface-enhanced Raman scattering with long-term stability and large-scale uniformity Journal article
Chen, M.P., Ji, B., Dai, Z.Y., Du, X.Y., He, B.C., Chen, G., Liu, D., Chen, S., Lo, K.H., Wang, S.P., Zhou, B.P., Pan, H.. Vertically-aligned 1T/2H-MS2 (M= Mo, W) nanosheets for surface-enhanced Raman scattering with long-term stability and large-scale uniformity[J]. Appl. Sur. Sci., 2020, 146769-146769.
Authors:  Chen, M.P.;  Ji, B.;  Dai, Z.Y.;  Du, X.Y.;  He, B.C.; et al.
Favorite |   IF:6.3/5.9 | Submit date:2022/07/27
Vertically-aligned 1T/2H-MS2 (M= Mo  W) nanosheets for surface-enhanced Raman scattering with long-term stability and large-scale uniformity