工学博士
博士研究生
E-Mail:0dfb114b840bde5d1153fc076e8b398bfb41e16d6f0ccd16b4485f9ee14e286128801e28cec4c43ce23a8af2558c8d21e959524ff2ad700fd549901c04e3d987803e524938628f3bbe7ca876b74026e77945c68a6b2add3f65f9f3ee23446a470a6cb0d3007bc2bec5bb8e80925ebaa6b8a922449f140820550f9abdec03de97
Email : 0dfb114b840bde5d1153fc076e8b398bfb41e16d6f0ccd16b4485f9ee14e286128801e28cec4c43ce23a8af2558c8d21e959524ff2ad700fd549901c04e3d987803e524938628f3bbe7ca876b74026e77945c68a6b2add3f65f9f3ee23446a470a6cb0d3007bc2bec5bb8e80925ebaa6b8a922449f140820550f9abdec03de97
Key Words:Controllable morphology; Flower-like structure; Vanadium sulfide; Cathode materials; Rechargeable magnesium battery Issue:451 Translation or Not:no
Pre One:Engineering ultrahigh-specific-capacity α-Fe2O3 nanoparticles and Ni(OH)2/Co0.85Se nanostructures separately anchored on N-doped graphene nanotubes toward alkaline rechargeable battery
Next One:3D Honeycomb Nanostructure Comprised of Mesoporous N Doped Carbon Nanosheets Encapsulating Isolated Cobalt and Vanadium Nitride Nanoparticles as a Highly Efficient Electrocatalyst for the Oxygen Reduction Reaction