financial support from the National Science Foundation of China(51671094,21606189);China Postdoctoral Science Foundation(2017M612174);Shandong Provincial Natural Science Foundation(ZR2015BQ011);the Science and Technology Project of University of Jinan(XKY1826)。
Developing of high-performance and low-cost electrocatalysts is of great significance to reduce the overpotential and accelerated the reaction rate of oxygen evolution in water splitting and related energy conversion ...
financially supported by the National Key Research and Development Program of China (2017YFA0402800);the National Natural Science Foundation of China (51772285);the National Synchrotron Radiation Laboratory at USTC.
Electrochemical water splitting into hydrogen and oxygen is a promising strategy for future renewable energy conversion devices.The oxygen evolution reaction(OER)is considered as the bottleneck reaction in an overall ...
supported by the National Natural Science Foundation of China(21421001,21573115);the Natural Science Foundation of Tianjin(17JCYBJC17100)
The large-scale synthesis of efficient nonprecious bifunctional electrocatalysts for overall water splitting is a great challenge for future renewable energy conversion systems. Herein, Ni2P nanosheet arrays directly ...
Financial supports from NSFC(21273105);MSTC(2013AA031703);NSFJC(BK20140596);the fundamental research funds for central universities
The Ni2P/MgAlO catalysts with different MgO/Al2O3 ratios were prepared by the phosphidation of corresponding Ni/MgAlO catalysts with triphenylphosphine in liquid phase. It was found that the MgO/Al2O3 ratio affected t...
supports from NSFC (21273105);MSTC (2013AA031703);NSFJC (BK20140596)
The 80%Ni2P/Al2O3 catalysts were prepared by the phosphidation of corresponding 80%Ni/Al2O3 with triphenylphosphine in liquid phase and compared with the 60%Ni2P/Al2O3 for hydrotreating reactions. Both the60%Ni2P/Al2O...